| 4 Quantum Electronics |
| 4.1 Quantum Optics and Atom Optics |
| March 28 10:00`10:30 |
| 28a-SJ-@/ III |
| | 1 | Quantum beat in luminescence | Muroran Inst. of Tech. 1, NTT MI Labs. 2@Ryuzi Yano 1, Hiroyuki Shinojima 2, Kazuo Nakagawa 1 |
| | 2 | Observation and control of coherent transient of water vapor at 0.55 THz frequency | Muroran Inst. of Tech. 1, NTT MI Labs. 2@Ryuzi Yano 1, Hiroyuki Shinojima 2, Kazuo Nakagawa 1 |
| |
3`11 10:30`13:00 (4.6 Laser Spectroscopy and
Instrumentation) |
| 4.2 Photonic Nanostructures
- Design, Fabrication and Physics |
| March 27 9:30`18:15 |
| 27a-ZB-@/ III |
| | 1 | Influence of arraying accuracy for particle-assembled terahertz wave photonic crystals | Tohoku Univ. 1@*Takagi Kenta 1, Kanno Hutoshi 1, Kawasaki Akira 1 |
| | 2 | Control of polarization properties of vertical waveguides in three-dimensional photonic crystals | Kyoto Univ. 1@*Kawashima Shoichi 1, Ishizaki Kenji 1, Noda Susumu 1 |
| ’ | 3 | Controlling Photonic Bandgap Region of Three-Dimensional Photonic Crystals | Kyoto Univ. 1@*Ishizaki Kenji 1, Kawashima Shoichi 1, Sun Qi 1, Noda Susumu 1 |
| | 4 | Investigation on fabrication processes of 3D photonic crystals by using ICP dry etching technique | NCRC, Univ. of Tokyo1, OITDA2, Hitachi CRL3@*Kazuhiko Hosomi1 2 3, Hiroji Yamada2, Shoichi Akamatsu1 2, Misuzu Sagawa1 2 3, Toshio Katsuyama1 2, Yasuhiko Arakawa1 |
| ’ | 5 | Fabrication of Three-Dimensional Photonic Crystals Using Double-Angled Etching Technique (III) | Kyoto Univ. 1@*Takahashi Shigeki 1, Nakamori Takeshi 1, Noda Susumu 1 |
| | 6 | Analysis of Three-Dimensional Photonic Crystals Fabricated by Double-Angled Etching Technique (II) | Kyoto Univ. 1@*Takahashi Shigeki 1, Nakamori Takeshi 1, Noda Susumu 1 |
| | | Break 11:00`11:15 | |
| | 7 | Transmission resonances through quasiperiodic subwavelength hole array | Physics Dept. Univ. of Utah 1, ECE Dept. Univ. of Utah 2@*Matsui Tatsunosuke 1, Agrawal Amit 2, Nahata Ajay 2, Vardeny Z.Valy 1 |
| | 8 | Transmission resonances through gdesignedh aperiodic subwavelength hole array | ECE Dept. Univ. of Utah 1, Physics Dept. Univ. of Utah 2@Agrawal Amit 1, *Matsui Tatsunosuke 2, Vardeny Z.Valy 2, Nahata Ajay 1 |
| | 9 | Organization of hydrophobic gold nanorods | Graduate School of Engineering,Nagoya Uni. 2) Science and Technology, Keio Uni. 3) Ecotopia Science Inst., Nagoya Uni.@*Koji Mitamura@1,Toyoko Imae@2, Nagahiro Saito@1, Osamu Takai@1, 3 |
| £ | 10 | Nanofabricating Thin LiNbO3 by Focused Ion Beam Aiming at Photonic Devices |
Corporate R&D Laborotories, Pioneer Corporation
1, Nation Institute for Materials Science 2@Xijun Li1,Atsusi Watanabe1,Kazuya
Terabe2,Hideki Hatano2,Kenji Kitamura2 |
| ’ | 11 | 2D nonlinear LiNbO3 Τ(2) photonic crystals in the UV light region by periodical 2D Τ(2) engineering | RIKEN 1, Tokyo Inst. of Tech. 2@*Shin-ichiro Inoue 1, 2, Kosuke Watanabe 2, Yoshinobu Aoyagi 2, 1 |
| | | Lunch 12:30`13:30 | |
| 27p-ZB-@/ III |
| | 1 | Lasing characteristic of photonic crystal nanocavities with InAs quantum dots |
NTT Basic Research Labs. 1, Arizona State Univ.
2@Takehiko Tawara 1, Hidehiko Kamada 1, Yong-Hang Zhang 1,2, Nicholas Cade
1, Takasumi Tanabe 1, Hideki Gotoh 1, Ding Ding 2, Shane Johnson 2, Eiichi
Kuramochi 1, Masaya Notomi 1, Hidetoshi Nakano 1 |
| | 2 | Room-temperature CW lasing in photonic crystal point-shift nanolasers with ultimately small modal volume | Yokohama Nat'l Univ.@Nozaki Kengo 1, *Kita Shota 1, Baba Toshihiko 1 |
| ’ | 3 | Observation of near-thresholdless operation by optimizing Q factor in photonic crystal nanolaser | Yokohama Nat'l Univ. 1@*Nozaki Kengo 1, Kita Shota 1, Baba Toshihiko 1 |
| | 4 | Temporal coherence of a photonic crystal nanocavity laser | IIS 1, CINQIE 2, RCAST Univ. of Tokyo 3@*Nomura Masahiro 1,2, Iwamoto Satoshi 1,2,3, Kumagai Naoto 1,2, Arakawa Yasuhiko 1,2,3 |
| | 5 | A Consideration of Wavelength Chirping in Photonic Crystal Slab Microlasers | Yokohama Nat'l Univ. 1@*Watanabe Hideki 1,Nozaki Kengo 1,Baba Toshihiko 1 |
| ’ | 6 | High-Power Single-Mode Operation of Surface-Emitting Two-Dimensional Photonic-Crystal Laser | Kyoto Univ. 1,ROHM Co.,Ltd. 2@*Kashiwagi Junichi 1,Kunishi Wataru 1,2,Ohnishi Dai 1,2,Miyai Eiji 1,Sakai Kyosuke 1,Kurosaka Yositaka 1,Imada Masahiro 1,Noda Susumu 1 |
| ’ | 7 | Lattice shapes and vertical optical confinement in 2D surface-emitting laser | Kyoto Univ. 1, ROHM Co.,Ltd. 2@Yoshitaka Kurosaka 1, Eiji Miyai 1, Kyosuke Sakai 1, Dai Ohnishi 1,2, Wataru Kunishi 1,2, Junichi Kashiwagi 1, Susumu Noda 1 |
| | 8 | Proposal refractive index sensor utilizing photonic crystal nanolaser array | Yokohama Nat'l Univ.@*Kita Shota 1, Nozaki Kengo 1, Baba Toshihiko 1 |
| | | Break 15:30`15:45 | |
| ’ | 9 | Couple-wave Analysis for Two-dimensional Photonic-crystal Laser V - Hole Filling Factor and Threshold Gain - | Kyoto Univ. 1, ROHM Co.,Ltd. 2@Kyosuke Sakai 1, Eiji Miyai 1, Yoshitaka Kurosaka 1, Junichi Kashiwagi1, Kouji Otsuka 1, Dai Ohnishi 1,2, Wataru Kunishi1,2, and Susumu Noda 1 |
| ’ | 10 | Unit Cell Structure Design for Increase of Light Emitting Area of Two-dimensional Photonic-Crystal Laser | Kyoto Univ.1, RHOM Co.Ltd.@Otsuka Koji 1,Miyai Eiji 1,Sakai Kyosuke 1,Kurosaka Yoshitaka 1, Kunishi wataru 1,2,Ohnishi Dai 1,2,Noda Susumu 1 |
| | 11 | TE-TM-mode mixing and possibility of lasing operation at the non-band-edge region in a photonic-crystal laser | Kyoto Univ. 1, ROHM Co. Ltd. 2@Miyai Eiji 1, Sakai Kyosuke 1, Kurosaka Yoshitaka 1, Kashiwagi Jun-ichi 1, Otsuka Koji 1, Kunishi Wataru 1,2, Ohnishi Dai 1,2, Noda Susumu 1 |
| | 12 | Control of the Band Structure of Two-dimensional Photonic-crystal Laser for Double-hole Unit Cell Structure | Kyoto Univ. 1,ROHM Co. Ltd. 2@*Koji Otsuka 1,Miyai Eiji 1,Sakai Kyosuke 1,Kurosaka Yoshitaka 1,Kunishi wataru 1,2,Ohnishi Dai 1,2,Noda Susumu 1,2 |
| | 13 | Photonic crystal nanolaser integrated with passive waveguide | Yokohama Nat'l Univ.@*Nozaki Kengo 1, Kita Shota 1, Baba Toshihiko 1 |
| | 14 | Active/Passive Integrated Photonic Crystal Slab - Improvement of Coupling Efficiency | Yokohama Nat'l Univ. 1@*Watanabe Hideki 1,Baba Toshihiko |
| | 15 | Evaluation of Two-Dimensional Photonic Crystal lasers by Optical Absorption Measurement | Kyoto Univ. 1, OMRON Corp R&D h.q. 2@Uetsuji Yasuhito 1,2, Imamoto Hiroshi 1,2, Aoyama Shigeru 2, Miyai Eiji 1, Kurosaka Yoshitaka 1, Asano Takashi 1, Noda Susumu 1 |
| ’ | 16 | Focal spot properties of doughnut-beams generated by two-dimensional photonic-crystal laser | Kyoto Univ. 1, ROHM Co., Ltd. 2@*Kitamura Kyoko 1, Sakai Kyosuke 1, Miyai Eiji 1, Kurosaka Yoshitaka 1, Kashiwagi Junichi 1, Otsuka Koji 1, Kunishi Wataru 1,2, Ohnishi Dai 1,2, Noda Susumu 1 |
| ’ | 17 | Quantum cascade light emitting devices with photonic crystal -Design and fabrication of the device structures | RCAST 1, IIS 2, CINQIE 3, Univ. of Tokyo@*Yuki Wakayama 1, Aniwat Tandaechanurat 1, Naoto Kumagai 2, Satomi Ishida 1, Satoshi Iwamoto 1-3, Yasuhiko Arakawa 1-3 |
| ’ | 18 | Theoretical analysis on three-layer-stacked two-dimensional photonic crystal slab for thermal radiation illuminant | Kyoto Univ. 1, ALPS ELECTRIC CO.,LTD 2@*Mochizuki Keita 1, Asano Takashi 1, Kitagawa Hitoshi 1,2, Noda Susumu 1 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| March 28 9:30`18:30 |
| 28a-ZB-@/ III |
| | 1 | Fabrication of a guided resonance filter using a movable photonic crystal slab | Tohoku Univ. 1@*Kanamori Yoshiaki 1,Kitani Takashi 1,Hane Kazuhiro 1 |
| | 2 | Double pulse generator based on photonic crystal | AIST Photonics 1, Univ. of Tsukuba 2@*Noritsugu Yamamoto 1, Jun-ichiro Sugisaka 1,2, Hirofumi Shimada 1,2, Makoto Okano 1, Kazuhiro Komori 1 |
| | 3 | Topology optimization of asymmetric Y-junction for 2D photonic crystal waveguides | U. Tsukuba 1, AIST 2 , NIMS 3@*Y. Watanabe 1, N. Ikeda 1,2, Y. Sugimoto 1,3, Y. Takata 1, Y. Kitagawa 1, A. Mizutani 1, N. Ozaki 1, and K. Asakawa 1 |
| ’ | 4 | Fabrication of two-dimensional photonic crystal directional coupler switch with wide bandwidth and short switching length(2) -Measurement of difference of wavenumbers of directional coupler by introduction of high coupling efficient coupling structure- | AIST Photonics 1, Inst. Appl. Phys. Univ. of Tsukuba 2, CREST JST 3@*Jun-ichiro Sugisaka 1 2, Noritsugu Yamamoto 1, Makoto Okano 1, Kazuhiro Komori 1 3, Masahide Itoh 2, Toyohiko Yatagai 2 |
| | 5 | Polarization-diversity Operation in 2D PC Device | Kyoto Univ. 1@*Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
| | 6 | Two-dimensional rhombic-lattice grating coupler for oblique incidence in the integrated photonic crystal waveguide | U. Tsukuba 1, AIST 2, Ghent U. 3, NIMS 4@*A. Mizutani 1, N. Ozaki 1, Y. Takata 1, N. Ikeda 1,2, Y. Watanabe 1, F. V. Laere 3, R. Baets 3, Y. Sugimoto 1,4, K. Asakawa 1 |
| | | Break 11:00`11:15 | |
| | 7 | Observation of Light Propagation Characteristics Through Photonic Crystal Superlens (V) -Image Transfer | Yokoham Nat'l Univ. 1@*Tomohiko Asatsuma 1, Takashi Matsumoto 1, Toshihiko Baba 1 |
| | 8 | Observation of Light Deflection Characteristics Through Photonic Crystal Superprism on SOI Substrate (II) -Optimization of I/O Interfaces | Yokohama Nat'l Univ.@Matsumoto Takashi 1,Asatsuma Tomohiko 1,Baba Toshihiko 1 |
| | 9 | Wavelength Demultiplexer Based on Photonic Crystal Superprism and Superlens (III) -Optimized Length of Superlens | Yokohama Natfl Univ.@Matsumoto Takashi 1,Asatsuma Tomohiko 1,Baba Toshihiko 1 |
| £ | 10 | Mechanical-Contact-Based Submicron-Si-Waveguide Optical Switch | Tohoku Univ. 1@*Bulgan Erdal 1,Kanamori Yoshiaki 1,Hane Kazuhiro 1 |
| | 11 | Low Sidelobe and Polarization-Insensitive Si Photonic Wire AWG | Yokohama Nat'l Univ. 1@*Sasaki Kosuke 1,Ishii Toshiyuki 1, Baba Toshihiko 1 |
| | | Lunch 12:30`13:30 | |
| 28p-ZB-@/ III |
| | 1 | Fabrication and evaluation of Si-microdisks. | ARL Musashi Institute of Technology 1,HORIBA Ltd 2@*Ikegami yuta 1,Jinsong Xia 1,Yasushi Nakata 2,Shiraki Yasuhiro 1 |
| | 2 | Observation of light-emission properties in silicon based photonic crystals | Kyoto Univ. 1@Masayuki Fujita 1, Takashi Asano 1, Susumu Noda 1 |
| | 3 | Enhancement of photoluminescence from crystalline silicon by introducing photonic crystal nanoavities | RCAST & IIS, Univ. of Tokyo 1, CINQIE, Univ. of Tokyo 2, Fundamental and Environmental Res. Labs., NEC Corp 3@Satoshi Iwamoto 1,2, Akiko Gomyo 3, Yasuhiko Arakawa 1,2 |
| £ | 4 | Light emission from triangular-shaped photonic crystal microcavities with Ge quantum dots | Musashi Inst. of Technology 1, Kyoto Univ. 2, Tohoku Univ. 3 @*Jinsong Xia 1, Masayuki Fujita 2, Koudai Nemoto 1, Ikegami Yuta 1, Noritaka Usami 3, Susumu Noda 2, Yasuhiro Shiraki 1 |
| | 5 | Spontaneous Emission Control of Silicon Quantum Dots by Three-Dimensional Photonic Crystal Structures with Controlled Defects |
QNERC & Dept. of Physical Electronics, Tokyo Tech.
1, Dept. of Electrical & Electronic Eng., Tokyo Univ. of A&T 2, SORST-JST
3 @*Daihei Hippo 1,3, Kei Urakawa 2, Yoshishige Tsuchiya 1,3, Hiroshi Mizuta
1,3, Nobuyoshi Koshida 2,3, Shunri Oda 1,3 |
| | 6 | Control of spontaneous emission life time of GaAs by an Au particles | Univ.Tokyo 1,SORST JST 2@*Yamamoto Takumi 1,Kawazoe Tadashi 2,Ohtsu Motoichi 1,2 |
| | 7 | Purcell effect of H1-type photonic crystal nano-cavity | NEC 1, AIST 2, JST-SORST 3@*S. Kono 1, M. Shirane 1, N. Ikeda 2, Y. Sugimoto 2, S. Ohkouchi 1,2, A. Tomita 1,3 |
| ’ | 8 | Observation of interaction between 2D photonic-crystal nanocavity and quantum dots |
Kyoto Univ. 1@*Yamaguchi Makoto 1,Menaka Zoysa
1,Asano Takashi 1,Wolfgang Stumpf 1,Fujita Masayuki 1,Noda Susumu 1 |
| | 9 | Coupling of a single quantum dot and a single-defect photonic-crystal nanocavity | NEC corp. 1, AIST 2, Univ. of Tsukuba 3, JST-SORST 4@*Shirane Masayuki 1, Kono Shunsuke 1, Ikeda Naoki 2,3, Ohkouchi Shunsuke 1, Sugimoto Yoshimasa 2,3, Tomita Akihisa 1,4 |
| | 10 | Optical Properties of Hybrid-type Pillar Microcavities with Quantum Dots | NTT BRL 1, Tokai Univ. 2, NTT PH Labs 3@*Yamaguchi Takao 1,2, Tawara Takehiko 1, Gotoh Hideki 1, Kamada Hidehiko 1, Okamoto Hiroshi 3, Nakano Hidetoshi 1, Mikami Osamu 2 |
| | | Break 16:00`16:15 | |
| | 11 | Consideration of emission controlled by tow-dimensional photonic crystal nanocavity |
Kyoto Univ. 1@*Yamaguchi Makoto 1,Menaka Zoysa
1,Asano Takashi 1,Wolfgang Stumpf 1,Fujita Masayuki 1,Noda Susumu 1 |
| | 12 | Entangled photon pair generation from a quantum dot in a photonic nanocavity: numerical analysis | NEC Corp. 1, IIS 2, RCAST 3, CINQIE 4, Univ. of Tokyo @Shirane Masayuki 1, Kono Shunsuke 1, Yorozu Shinichi 1, Arakawa Yasuhiko 2,3,4 |
| | 13 | Fabrication and characterization of photonic crystal nanocavity with degenerated cavity modes for generating entangled photon pairs using quantum dots |
RCAST 1, IIS 2, CINQIE 3, NEC 4@*Ota Yasutomo 1,
Nomura Masahiro 2, Kumagai Naoto 2, Watanabe Katsuyuki 2, Ishida Satomi
1, Iwamoto Satoshi 1,2,3, Shirane Masayuki 3,4, Kono Shunsuke 3,4, Yorozu
Shinichi 3,4, Arakawa Yasuhiko1,2,3 |
| | 14 | Optical properties of nitride semiconductor photonic crystal nanocavities | CINQIE Univ. of Tokyo 1, RCAST Univ. of Tokyo 2, IIS Univ. of Tokyo 3@*Munetaka Arita 1,3, Satoshi Kako 1,3, Satomi Ishida 1,2, Satoshi Iwamoto 1-3, Yasuhiko Arakawa 1-3 |
| | 15 | Design and fabrication of SiC-based 2D photonic crystal slab structures |
Kyoto Univ.1, Sungkyunkwan Univ.2@*Bong-Shik Song
1,2, Sang-Uk Par 1, Yoshinori Tanaka1, Takashi Asano 1, and Susumu Noda
1 |
| | 16 | Light Propagating Properties in Magnetophotonic Crystals | Yokohama City Univ. 1@Nishino Reina 1,Yamada Shigeki 1 |
| | 17 | Analysis of diffraction repetition effect on light extraction in photonic-crystal organic light-emittng diodes (2) | Kyoto Univ. 1, Pioneer 2@*Matsubara Ippei 1, Ishihara Kuniaki 1, Fujita Masayuki 1, Asano Takashi 1, Noda Susumu 1, Ohata Hiroshi 2, Hirasawa Akira 2, Miyaguchi Satoshi 2 |
| | 18 | Fabrication of organic light-emitting diodes with two-dimensional photonic crystals formed on HSQ film by nano-imprinting | Kyoto Univ. 1, Pioneer 2@*Ishihara Kuniaki 1, Fujita Masayuki 1, Asano Takashi 1, Noda Susumu 1, Ohata Hiroshi 2, Hirasawa Akira 2, Miyaguchi Satoshi 2 |
| ’ | 19 | Optical properties of plasmonic crystals coated with organic molecular J-aggregate films | Fuji Film corp. 1, Southampton Univ. 2@Sugawara Yoshihiro 1, Kelf Tim 2, Baumberg Jeremy 2, Abdelsalam Mamdouh 2, Bartlett Philip 2 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| March 29 9:30`17:30 |
| 29a-ZB-@/ III |
| | 1 | Observation of polarization-discriminated spectra of a fiber-microsphere system (II) | RIES,Hokkaido Univ. 1@*Konishi Hidenori 1,Takashima Hidesato 1,Fujiwara Hideki 1,Takeuchi Sigeki 1,Sasaki Keiji 1 |
| ’ | 2 | Investigation of Ultra-high Q Multistep Heterostructure Nanocavity | Kyoto Univ. 1@Hagino Hiroyuki 1,Takahashi Yasushi 1,Tanaka Yoshinori 1,Asano Takashi 1,Noda Susumu 1, |
| | 3 | Waveguide Length Dependence of Q factor of Multistep Heterostructure Nanocavity | Kyoto Univ.@Takahashi Yasushi 1, Tanaka Yoshinori 1, Hagino Hiroyuki 1, Asano Takashi 1, Noda Susumu 1 |
| | 4 | FDTD Analysis of Oxide-Cladding Type 2D Photonic Crystal | Osaka Univ. 1@*Nakaya Yosuke 1, Mitamura Takashi 1, Morifuji Masato 1, Momose Hideki 1, Kondow Masahiko 1 |
| | 5 | Design of High-Q Air-slot Photonic Crystal Nanocavity | Institute of Physics, Univ. Tokyo 1,NTT Basic Res. Labs. 2,JST-CREST 3@*Yamamoto Takayuki 1,2,Notomi Masaya 3,Taniyama Hideaki 3,Kuramochi Eiichi 3, Yoshikawa Yutaka 1,2,Torii Yoshio 1,2, Kuga Takahiro 1,2 |
| | 6 | Radiation force of an air-slot width-modulated photonic crystal slabs | NTT Basic Res. Labs. 1, Inst. of Physics Univ. Tokyo 2@Taniyama Hideaki 1, Notomi Masaya 1, Kuramochi Eiichi 1, Yamamoto Takayuki 2, Yoshikawa Yutaka 2 |
| | | Break 11:00`11:15 | |
| | 7 | Design of Multi Heterostructure Nanocavity with Q Factor of One Billion | Kyoto Univ. 1@*Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
| | 8 | Investigation of Stimulated Raman Scattering in 2D Photonic Crystal Nanocavity | Kyoto Univ. 1, Matsushita Electric Works, Ltd. 2@*Hitomichi Takano 2, Takashi Asano 1, Susumu Noda 1 |
| | 9 | Aligning microcavity resonances in silicon photonic-crystal slabs using laser-pumped thermal tuning | Stanford Univ., Semiconductor Device Research Center, Matsushita Electric Industrial Co., Ltd.@*K. Yamanaka, M. L. Povinelli, J. Pan, L. Scaccabarozzi, Y. Huo, S. Sandhu, S. Fan, M. M. Fejer, J. S. Harris |
| | 10 | On-off ratio of a bistable response in photonic crystal microcavities | AIST 1, Fujitsu Labs. Ltd. 2@*Kawashima Hitoshi 1, Ikeda Naoki 1, Tanaka Yu 2, Sugimoto Yoshimasa 1, Hasama Toshifumi 1, Ishikawa Hiroshi 1 |
| | 11 | Optical bistability in 2D photonic crystal hetero waveguides | AIST Ultrafast Photonic Devices Lab.1, Univ. of Tsukuba2, FUJITSU Labs. Ltd.3@N. Ikeda1,2, H. Kawashima1, Y. Tanaka3, Y. Sugimoto1,2, T. Hasama1, K. Asakawa2, H. Ishikawa1 |
| | | Lunch 12:30`13:30 | |
| 29p-ZB-@/ III |
| | 1 | Photon trapping, pulse delaying, and dynamic tuning of the Q using ultra-high-Q photonic crystal optical nanocavities | NTT Basic Research Labs.@*Takasumi Tanabe, Eiichi Kuramochi, Akihiko Shinya, Hideaki Taniyama, and Masaya Notomi |
| | 2 | Dynamic Q factor control of 2D photonic crystal nanocavities(4) | Kyoto Univ. 1@*Nagashima Takuji 1, Sugiya Tomoaki 1, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
| | 3 | Observation of self phase modulation in AlGaAs photonic-crystal-slab line defect waveguides | Chitose Inst of Sci & Techn 1, Fujitu Lab 2, AIST 3, Univ. of Tsukuba 4@Oda Hisaya 1, Inoue Kuon 1, Tanaka Yu 2, Ikeda Naoki 3, Sugimoto Yoshimasa 3 4, Ishikawa Hiroshi 3, Kitagawa Yoshinori 4, Ozaki Nobuhiko 4, Asakawa Kiyoshi 4 |
| | 4 | Optical nonlinearity-induced phase shift in quantum dots embedded in a photonic crystal waveguide | Univ. of Tsukuba 1, AIST 2, NIMS 3@*Nobuhiko Ozaki 1, Yoshinori Kitagawa 1, Yoshiaki Takata 1, Naoki Ikeda 1,2, Yoshinori Watanabe 1, Akio Mizutani 1, Yoshimasa Sugimoto 1,3, Kiyoshi Asakawa 1 |
| | 5 | Wavelength conversion in 2D photonic crystal waveguide | Kyoto Univ. 1@*Nagashima Takuji 1, Jeremy Upham 1, Sugiya Tomoaki 1, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
| | 6 | Increase in delay time and dispersion of multiple 1D coupled-defect-type photonic crystals (4) | Univ. Tokyo NCRC 1, OITDA 2, Hitachi CRL 3@Misuzu Sagawa 1,2,3, Sigeo Goto 1,2,3, Toshiki Sugawara2,3, Kazuhiko Hosomi 1,2,3, Toshio Katsuyama 1,2, Yasuhiko Arakawa 1 |
| | 7 | Long coupled resonator optical waveguides formed by large number of ultrahigh-Q photonic crystal resonators | NTT Basic Research Laboratories 1, CREST-JST 2@*Kuramochi Eiichi 1 2, Tanabe Takasumi 1 2, Taniyama Hideaki 1 2, Kato Masao 1 2, Notomi Masaya 1 2 |
| | | Break 15:15`15:30 | |
| | 8 | Fundamental Characteristics of Optical Group Delay Device by Chirped Photonic Crystal Waveguides (VI) - Reduction in Influence of Resonance - | Yokohama Nat'l Univ. 1@*Mori Daisuke 1, Hirokazu Sasaki 1, Kubo Syosaku 1, Kawasaki Takashi 1, Baba Toshihiko 1 |
| | 9 | Fundamental Characteristics of Optical Group Delay Device by Chirped Photonic Crystal Waveguides (VII) - Increase in Delay Time - | Yokohama Nat'l Univ. 1@*Sasaki Hirokazu 1, Mori Daisuke 1, Baba Toshihiko 1 |
| | 10 | Time-domain measurement of the slow light in Photonic crystal coupled-waveguide | NTT Basic Labs. 1, National Chung Tung Univ. 2@Kato Masao 1, Huang Shinh 1,2, Kuramochi Eiichi, Notomi Masaya 1 |
| | 11 | Measurement of Group Delay in Photonic Crystal Coupled Waveguides | Yokohama Nat'l Univ@*Kawasaki Takashi 1, Mori Daisuke 1, Baba Toshihiko 1 |
| | 12 | Investigation of Low-Group-VeLocity and Low-Dispersion Photonic Crystal Waveguides(II)\Band Engineering by Adjustment of Innermost Holes | Yokohama Nat'l Univ. 1@*Kubo Shousaku 1, Mori Daisuke 1, Baba Toshihiko 1 |
| | 13 | Low group-velocity-dispersion design for a hetero group-velocity structure in a photonic crystal waveguide | U. Tsukuba 1, AIST 2, NIMS 3@*Y. Kitagawa 1, N. Ozaki 1, Y. Watanabe 1, Y. Takata 1, N. Ikeda 1,2, A. Mizutani 1, Y. Sugimoto 3, K. Asakawa 1 |
| | 14 | Estimation of Slow Light Tuning in Active Photonic Crystal Waveguide by Carrier Injection | Yokohama Nat'l Univ. 1@*Watanabe Hideki 1,Nakada Takeharu 1,Baba Toshihiko 1 |
| | 15 | Fabrication of semiconductor three layer photonic crystal line defect waveguide with reduced radiation loss | Yokohama Nat'l Univ. 1@*Nakada Takeharu 1,Watanabe Hideki 1,Baba Toshihiko 1 |
| 4.3 Laser Devices and Materials |
| March 27 9:00`17:35 |
| 27a-J-@/ III |
| | 1 | Optical amplification of vacuum ultraviolet argon excimers produced by ultrashort-pulse high-intensity-laser-produced electrons | Dept. of EEE 1, CRC 2, Univ. of Miyazaki, ILE Osaka Univ. 3@*Yuta Taniguchi1, Akira Hosotani2, Masahito Katto2, Shoichi Kubodera1, Noriaki Miyanaga3, and Kunioki Mima3 |
| ’ | 2 | Gain measurement of Xe2* pumped by longitudinal discharge at low pressures | ILE, Osaka Univ. 1, Kobe Shinwa Women's Univ. 2, Japan Steel Works Ltd. 3@*Uno Kazuyuki 1, Nakamura Kenshi 2, Kawanaka Junji 1, Yamauchi Yasuhiro 1, Zhakhovskii Vasilli 1, Nishihara Katsunobu 1, Goto Tastumi 3, Jitsuno Takahisa 1 |
| | 3 | Challenge on Blue-Violet LD excited Dye laser II | Shonan Inst. Technology@*Kojou Junichiro 1,Murasawa Kengo 1,Hidaka Takehiko 1 |
| | 4 | Frequency stabilization of a light source for next generation gravitational wave detectors | Univ. of Tokyo 1, AIST 2@*Ohmae Noriaki 1, Takeno Kohei 2, Shigenori Moriwaki 1, Norikatsu Mio 1 |
| | 5 | Mode Selectivity of Random Lasing in One-Dimensional Model | Keio Univ. 1@*Seiji Takeda 1, Minoru Obara 1 |
| | 6 | Oscillation wavelength tuning by deformation of a dye-doped droplet in elastic polymer | Ryukoku Univ. 1@Shimatani Hiroya 1, *Saito Mitsunori 1 |
| | | Break 10:30`10:45 | |
| ’ | 7 | A Laguerre-Gauss mode generation from a side-diode-pumped Nd:YVO4 1.3 \mu m laser | Univ. of Tsukuba 1,Chiba Univ. 2,PRESTO JST@*Okida Masahito 1,Tonouchi Akihiro 2,Itoh Masahide 1,Yatagai Toyohiko 1,Omatsu Takashige 2,3 |
| | 8 | Generation of Bessel beam after propagating beams launched out from round multi-circle apertures. | Institute for Laser Technology 1,Institute of Laser Engineering Osaka Univ. 2@*T.Saiki 1, K.Hashimoto 2, S.Motokoshi 1, K.Imasaki 1, M.Nakatsuka 2, C.Yamanaka 1 |
| ’ | 9 | Generation and Selection of Axially Symmetric, Polarized Laser Beam using a Birefringent Crystal | IMRAM., Tohoku Univ. 1@*Yuichi Kozawa 1,Kazuhiro Yonezawa 1,Shunichi Sato 1 |
| | 10 | Focusing of axially symmetric, polarized lazer beams passing through a birefringent crystal | IMRAM., Tohoku Univ.@*Yonezawa Kazuhiro 1, Kozawa Yuichi 1, Sato Shunichi 1 |
| | 11 | Development of highly reliable laser diode packages | Advanced Tech.R&D center Mitsubishi Electric Co. 1, High Frequency &Optical device works Mitsubishi Electric Co. 2, Nagoya Works Mitsubishi Electric Co. 3@Konno Susumu1, shigihara Kimio2, Yagi Tetsuya2, Satou Yukio3, Nishimae Junichi1, Okamoto Tatsuki1, Yasui Koji1 |
| | | Lunch 12:00`13:00 | |
| 27p-J-@/ III |
| | 1 |
Ceramic Lasers: New Era of Solid State Lasers |
WORLD LAB1, Konoshima Chemical2, University of
Electro-Communications3@Akio Ikesue1, Takahiro Yanagiya2, * Kenichi Ueda3 |
| | 2 | High-energy and high-repetition rate pulse generation by use of an in-house Yb-doped fiber amplifier | Mitsubishi Electric Corp. Advanced Technology R&D Center 1@*Furuta Keisuke 1, Konno Susumu 1, Nishimae Jun-ichi 1, Kurosawa Miki 1, Okamoto Tatsuki 1, Yasui Koji 1 |
| | 3 | Development of Yb fiber laser system for high-average Nd:YAG laser | ILE. Osaka Univ.@Yoshida Hidetsugu 1, Sumimura Kazuhiko 1, Tsubakimoto Kouji 1, Fujita Hisanori 1, Nakatsuka Masahiro 1 |
| | 4 | Development of a cw laser with high beam quality using a highly doped Yb:YAG II | AIST 1@Uemura Sadao 1, Torizuka Kenji 1 |
| ’ | 5 | High-energy, broadband Yb:KYW chirped-pulse regenerative amplif | JAEA 1, ILE Osaka 2, ILS 3@Ogawa Kanade 1,2, Akahane Yutaka 1, Aoyama Makoto 1, Tsuji Koichi 1, Tokita Shigeki 2, Kawanaka Junji 2, Nisioka Hajime 3, Yamakawa Koichi 1 |
| | 6 | Regenerative amplifier using CW pumped Yb:KYW thin disk | Mitsubishi Electric Corporation@*Syuhei Yamamoto, Takayuki Yanagisawa, Kouji Seki, Yoshihito Hirano |
| | 7 | MW pulse generation from a side-diode-pumped Nd:YVO4 slab amplifier with a phase conjugate mirror | Chiba Univ. 1, PREST JST 2@Kouji Nawata 1, Takashige Omatsu 1 2 |
| | 8 | D-Micro-fabrication of glasses by a compact pico-second phase conjugate Nd:YVO4 laser | Alnair Lab.1, Tsukuba Univ.2, Chiba Univ.3, PRESTO JST4@Furuki Kenji1, Okida Masahito 2, Omatsu Takashige3,4 |
| | | Break 15:20`15:35 | |
| | 9 | >400W CW Operation of Diode Edge-Pumped Composite All-Ceramic Yb:YAG Microchip Lasers | IMS@*Tsunekane Masaki 1,Taira Takunori 1 |
| | 10 | Study of depolarization in ceramic Yb:YAG microchip | IMS 1, RIKEN 2@*Oishi Yu 2 1, Dascalu Traian 1, Tsunekane Masaki 1, Midorikawa Katsumi 2, Taira Takunori 1 |
| | 11 | High-power fifth-harmonic generation of an all-solid-state Nd:YAG laser | Mitsubishi Electric Corp.1,Osaka Univ.2@*Katsura Tomotaka1,Kojima Tetsuo1,Nishimae Junichi1,Kurosawa Miki1,Yoshimura Masashi2,Honda Yoshinori2,Mori Yusuke2,Sasaki Takatomo2 |
| | 12 | Development of High-average-power Solid-State Laser System for EUV Generation | ILE Osaka Univ.@*Tsubakimoto Koji,Yoshida Hidetsugu,Fujita Hisanori,Nakatsuka Masahiro,Miyanaga Noriaki,Izawa Yasukazu |
| | 13 | High Energy Operation of Nd doped Silica Glass for High-Average-Power Laser |
ILE Osaka Univ. 1, Shin-Etsu Quartz Co., Ltd. 2@Takahiro
SATO 1, *Yasushi Fujimoto 1, Tetsuji Ueda 2, Akira Fujinoki 2, Hajime Okada
1, Hidetsugu Yoshida 1, Masahiro Nakatsuka 1 |
| ’ | 14 | High beam quality operation of 200W average power Nd:glass laser system by use of phase conjugate mirror | Hamamatsu Photonics K.K. 1, ILE Osaka, University 2, Graduate Scholl of Engineering, University of Fukui 3@*Yasuhara Ryo1,2, Sekine Takashi 1,2, Takashi Kurita 1,2, Ikegawa Tadashi 1,2, Kawashima Toshiyuki 1,2, Matsumoto Osamu 1,2, Miyamato Masahiro 1, Kan Hirofumi 1, Hidetsugu Yoshida 2, Kawanaka Junji 2, Nakatsuka Masahiro 2 Izawa Yasukazu 2 and Kanabe Tadashi 3 |
| | 15 | Simulation design of 10kJE10PW glass laser system (1) calculation of narrow-band-amplification |
Univ of Fukui 1, Univ of Osaka 2@*Yoshida Haruo
1, Fukuda Yuichi 1, Nishimura Naoki 1, Kanabe Tadashi 1, Niki Hideaki 1,
Azechi Hiroshi 2, Miyanaga Noriaki 2,Jitsuno Takahisa 2 |
| | 16 | Simulation design of 10kJE10PW glass laser system(2)calculation of charped-pulse-amplification |
Univ. of Fukui 1,Univ. of Osaka laser lab. 2@*Nishimura
Naoki 1,Fukuda Yuichi 1,Yoshida Haruo 1,Kanabe Tadashi 1, Niki Hideaki 1,Azechi
Hiroshi 2,Miyanaga Noriaki 2,Jitsuno Takahisa 2 |
| 4.3 Laser Devices and Materials |
| March 28 9:00`13:00 |
| 28a-SN-@/ III |
| ’ | 1 | Temperature dependence of the electro-optic constant in DKDP crystal | ILE Osaka Univ. 1, ICR Kyoto Univ. 2, ILT 3@*Takeuchi Yasuki 1, Yoshida Akira 1, Tokita Shigeki 1,2, Fujita Masayuki 3, Kawanaka Junji 1 |
| £ | 2 | Micro – Pulling Down – Grown Nd3+:(La1-x,Bax)F3-x as New Vacuum Ultraviolet Scintillator and Potential Laser Material | Inst. for Molecular Science 1, The Graduate Univ. for Advanced Studies 2, ILE, Osaka Univ. 3, Nagoya Inst. of Tech. 4, IMRAM, Tohoku Univ. 5, Tokuyama Corporation 6@Cadatal Marilou M. 1 2, Seo Young-Seok 3, Tatsumi Toshihiro 3, Pham Minh Hong 1 2, Ponseca Jr. Carlito 1 2, Ono Shingo 4, Estacio Elmer 3, Furukawa Yusuke 3, Murakami Hidetoshi 3, Fujimoto Yasushi 3, Sarukura Nobuhiko 1 2 3, Nakatsuka Masahiro 3, Fukuda Kentaro 5, Simura Rayko 5, Suyama Toshihisa 6, Yoshikawa Akira 5, Fukuda Tsuguo 5 |
| | 3 | Comparative study of thermo-mechanical and -optical properties of GdVO4 and YVO4. | Inst. for Mol. Sci. 1@*Sato Yoichi 1, Taira Takunori 1 |
| | 4 | Long Life-Time Phosphorescence-Emission Characteristics of Host-Guest Nano-Crystal at Room Temp. | Iwate Univ.@Hiroshi Taniguchi, Katsuhiko Takahashi, Norihito Doki, Mako Kanemoto, Masaaki Yokota, Kenji Shimizu |
| | 5 | High-Efficient Light-Emission Device Combined with Phosphorescent H-G Nano-Crystal and Fluorescent Dye | Iwate Univ.@Hiroshi Taniguchi, Katsuhiko Takahashi, Masaho Kikuchi, Norihito Doki, Mako Kanemoto, Masaaki Yokota, Kenji Shimizu |
| | 6 | Thermal conductivity and thermal diffusivity of vanadate single crystals by floating-zone growth for solid-state lasers | Tokyo Inst. of Technology1, RIKEN2, Hokkaido Univ.3@Junko Morikawa 1, Toshimasa Hashimto 1, Takayo Ogawa 2, Satoshi Wada 2, Mikio Higuchi 3 |
| | 7 | Development of Nd:GdVO4 composite single crystals | Oxide corp. 1, IMS 2, Ricoh Co. Ltd. 3@*Matsukura Makoto 1, Nakamura Osamu 1, Watanabe Shinya 1, Miyamoto Akio 1, Furukawa Yasunori 1, Sato Yoichi 2, Taira Takunori 2, Suzudo Tsuyoshi 3 |
| | 8 | Studies on Tm lasers as a pump source for a directly pumped Ho laser | Tohoku Inst. fo Tech. 1, NICT 2@*Sato Atsushi 1, Asai Kazuhiro 1, Ishii Shoken 2, Itabe Toshikazu 2, Mizutani Kohei 2 |
| | | Break 11:00`11:15 | |
| | 9 | GaN LD pumped Pr3+ doped solid state laser and its characteristics | Keio Univ. 1, Central Glass 2@Kohei Hashimoto 1, Fumihiko Kannari 1, Yoshinori Kubota 2 |
| | 10 | CW yellow output from a diode-pumped self-stimulating Nd:YVO4 Raman laser | Chiba Univ.1, Neoark corp.2, Macquarie Univ.3@Y. Konishi1,2, *T.Omatsu1, A. Lee3, H.M. Pask3, J.A. Piper3 |
| | 11 | Simultaneous and multiple oscillations of far-infrared lasers pumped by two line CO2 lasers | Chubu Univ. 1, NIFS 2@Nakayama Kazuya 1, Tomimoto Masahiro 1, Morita Kazunori 1, Shiratori Tomoya 1, Tatara Tomoya 1, Okajima Shigeki 1, Kawahata Kazuo 2 |
| | 12 | Spectral narrowing of high-energy, 2-Κm optical parametric oscillator by volume Bragg grating | Tokyo Inst. of Tech. 1, Inst. for Mol. Sci. 2@*Saikawa Jiro 1, Ishizuki Hideki 2, Taira Takunori 2, Fujii Masaaki 1 |
| | 13 | Oscillation property of Nd/Cr:YAG ceramic active-mirror laser that use quasi-solar-pumping. | Institute for Laser Technology 1,Institute of Laser Engineering Osaka Univ. 2@*T.Saiki 1, S.Motokoshi 1, K.Imasaki 1, H.Fujita 2, M.Nakatsuka 2, Y.Izawa 2,C.Yamanaka 1 |
| | 14 | Evaluation of pumping efficiency of solar pumped solid-state laser | Univ of Fukui 1@*Wakamoto Mitsuhiro 1,Araki Keisuke 1,Nagai Toshinao 1,Ogata Toshihiro 1,Kanabe Tadashi 1,Niki Hideaki 1 |
| | 15 | Study of Solar Pumped Laser by Fresnel Lens |
Tokyo Inst of Tech. 1, Okamoto Opt. 2 @*Funatsu
Takayuki 1, Yabe Takashi 1, Uchida Shigeaki 1, Ohkubo Tomomasa 1, Bagheri
Behgol 1, Mabuti Akito 1, Oyama Atsushi 1, Nakagawa Kenji 1, Oishi Takehiro
1, Daito Kazuya 1, Yoshida Kunio 1, Nakatsuka Masahiro 1, Motokoshi Shinji
1, Sato Yuji 1, Okamoto Yoshiaki 2 |
| 4.4 Ultrafast lasers and High Field Lasers |
| March 29 10:00`18:30 |
| 29a-SN-@/ III |
| | 1 | High harmonic generation in mixed gases | RIKEN@*Kanai Tsuneto 1, Takahashi Eiji J. 1, Nabekawa Yasuo 1, Midorikawa Katsumi 1 |
| | 2 | High-order harmonic generation driven by phase stabilized sub-10 fs two-color pulses | RIKEN 1,Tokai Univ. 2@*Kaku Masanori 1, Suda Akira 1, Bohman Samuel 1,2, Kanai Takuya 1,2, Yamaguchi Shigeru 2, Midorikawa Katsumi 1 |
| | 3 | Nonlinear absorption spectroscopy in the XUV region using an attosecond pulse train | RIKEN 1, Univ. of Tokyo 2 @Toshihiko Shimizu 1, Ri Ma 1,2, Tomoya Okino 1,2, Yasuo Nabekawa 1, Kaoru Yamanouchi 1,2, Katsumi Midorikawa 1 |
| | 4 | Attosecond enhancement gate for isolated pulse generation (AEGIS) | Univ. of Tokyo 1, JST 2, RIKEN 3 @*Kenichi L. Ishikawa 1,2, Eiji J. Takahashi 3, Katsumi Midorikawa 3 |
| | 5 | Measurement of a carrier-envelope phase by a time-dependent polarization pulse | Univ. of Tokyo 1, JST 2@*Ichino Takamasa 1, Ishikawa Kenichi 1,2 |
| | | Break 11:15`11:30 | |
| ’ | 6 | High-harmonic generation from aligned molecules with polarization gated pulses | Univ. of Tokyo 1@Hitsumoto Kentaro 1,Minemoto Shinichirou 1,Sakai Hirofumi 1 |
| | 7 | Angle dependence of high-order harmonic generation from femtosecond-laser aligned molecules |
Kyoto Univ. 1@*Kazumichi Yoshii 1, Yohei Ueno 1,
Godai Miyaji 1, Kenzo Miyazaki 1 |
| | 8 | Controlling multiphoton ionization and dissociation processes of aligned polyatomic molecules | Univ. Tokyo 1@*Minemoto Shinichirou 1, Muramatsu Masahiro 1, Sakai Hirofumi 1 |
| ’ | 9 | Advantages of nonadiabatic orientation of linear molecules with combined electrostatic and shaped laser fields | Univ. of Tokyo@*Yu Sugawara, Hirofumi Sakai |
| | 10 | Visualization of vibrational wave packet in ionic state of polyatomic molecules by Coulomb explosion | Keio Univ. 1,Tokyo Univ. 2@*Esumi Yoshihiro 1,Yazawa Hiroki 1,Shioyama Tadamasa 1,Abe Tomoaki 1,Suzuki Takashi 1,Itakura Ryuji 2,Yamanouchi Kaoru 2,Kannari Fumihiko 1 |
| | 11 | Dissociative ionization and vibrational wave packet dynamics of ethanol molecules by intense sub-10 fs pulse pump-probe | Keiou Univ. 1,Tokyo Univ. 2@*Abe Tomoaki 1,Shioyama Tadamasa 1,Yazawa Hiroki 1,Esumi Yoshihiro 1,Yamanouchi Kaoru 2,Kannari Fumihiko 1 |
| | | Lunch 13:00`14:00 | |
| 29p-SN-@/ III |
| | 1 | Optical detection of spin-polarization induced by fs pulses | RIKEN 1,Kyoto Univ. 2@Yukari Matsuo 1, Tohru Kobayashi 1, *Takashi Nakajima 2 |
| | 2 | Ultrafast nuclear spin polarization induced by short laser pulses | Kyoto Univ. 1@*Takashi Nakajima 1 |
| | 3 | Processes of electrical discharge triggered by ultra-short laser pulses | CRIEPI 1@*Fujii Takashi 1,Miki Megumu 1,Goto Naohiko 1,Fukuchi Tetsuo 1,Zhidkov Alexei 1,Nemoto Koshichi 1 |
| | 4 | Terahertz radiation from argon cluster targets irradiated with high intensity femtosecond laser pulses | Inst. of Laser Engineering, Osaka Univ. 1, Inst. for Chemical Research, Kyoto Univ. 2@*T. Nagashima 1, K. Shibuya 1, M. Hangyo 1, M. Hashida 2, S. Sakabe 2 |
| | 5 | Laser produced plasma soft x-ray pulse emission characteristics from targets covered with carbon nanotubes |
NTT Basic Research Labs.@*Nishikawa Tadashi, Oguri
Katsuya, Nakano Hidetoshi |
| | 6 | Consideration on scaling of output power of kHz rep-rate Ti:sapphire regenerative amplifier | AIST@*Matsushima Isao 1, Tomie Toshihisa 1 |
| | 7 | Developement of a terawatt class sub-10 fs laser system | RIKEN 1, Univ. of Tokyo 2, JST 3@*A. Amani Eilanlou 1,2 ,Y. Nabekawa 1, K. L. Ishikawa 2,3, K. Midorikawa 1 |
| | 8 | Development of a beam lock system for 1kHz femto second Ti:sapphire laser | RIKEN 1,Tokai Univ. 2@*Kanai Takuya 2,Bohman Samuel 2,Kaku Masanori 1,Suda Akira 1,Yamaguchi shigeru 2,Midorikawa Katsumi 1 |
| | | Break 16:00`16:15 | |
| | 9 | Yb-fiber amplification system seeded by Ti:sapphire laser | SIT 1, AIST 2@*Onuma Taketo 1, Tani Shuuichi 1, Yoshitomi Dai 2, Kobayashi Yohei 2, Yokoi Hideki 1, Torizuka Kenji 2 |
| | 10 | Development of broad-band laser amplifier for femto-second laser pulse by XeF(C→A) excimer laser | AIST 1@*Takahashi Eiichi 1, Kato Susumu 1, Matsumoto Yuji 1, Okuda Isao 1 |
| | 11 | Gain narrowing compensation of Yb:YAG thin-rod regenerative amplifier | Univ. of Fukui 1, Japan Atomic Energy Agency 2@*Matsubara Shinichi 1, Tanaka Motoharu 1, Kawato Sakae 1, Kobayashi Takao 1, Aoyama Makoto 2, Yamakawa Kouichi 2 |
| | 12 | Optical parametric/Ti:sapphire hybrid chirped pulse amplification system | ISSP Univ. Tokyo@*Xiangyu Zhou, Heehwan Lee, Teruto Kanai, Shunsuke Adachi, Shuntaro Watanabe |
| ’ | 13 | Development of a 1-kHz, few-cycle, high-intensity optical parametric chirped-pulse amplification system (1) | ISSP, Univ. of Tokyo@*Shunsuke Adachi, Hiroki Ishii, Teruto Kanai, Nobuhisa Ishii, Shuntaro Watanabe |
| ’ | 14 | Development of a 1-kHz, few-cycle, high-intensity optical parametric chirped-pulse amplification system (2) | ISSP, Univ. of Tokyo@*Ishii Nobuhisa 1, Adachi Shunsuke 1, Ishii Hiroki 1, Kanai Teruto 1, Watanabe Shuntaro 1 |
| ’ | 15 | Noncollinear optical parametric amplification pumped by third harmonics of Ti:Sapphire laser | Hokkaido Univ. 1, CREST 2@*Tanigawa Takashi 1,2, Yamane Keisaku 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2 |
| | 16 | Angulary-dispersed ultrabroad-band optical parametric amplification | Hokkaido Univ(CREST) 1@*Yamane Keisaku 1, Iwasaki Atsushi 1, Tanigawa Takashi 1, Sekikawa Taro 1, Yamashita Mikio 1 |
| | 17 | Ultrabroadband optical parametric chirped-pulse amplification pumped by Yb:YLF CPA laser | JAEA 1, Yamanashi Univ. 2, ILE Osaka 3, ILS UEC 4, ILT 5@Yutaka Akahane 1, Makoto Aoyama 1, Kanade Ogawa 13, Koichi Tsuji 1, Akira Sugiyama 1, Tetsuo Harimoto 2, Junji Kawanaka 3, Hajime Nishioka 4, Masayuki Fujita 5, Koichi Yamakawa 1 |
| 4.4 Ultrafast lasers and High Field Lasers |
| March 30 9:00`15:00 |
| 30a-SN-@/ III |
| | 1 | Optical Clock extraction using Mode-locked Laser Diode with tensile strained MQW Saturable Absorber | Oki Electric Industry Co.Ltd 1@*Hiroyuki Takahashi 1,Shin Arahira 1,Koji Nakamura 1,Satoshi Miyamura 1,Hiroki Yaegashi 1,Yoh Ogawa 1 |
| | 2 | Spectrum Smoothing Characteristics of a Mode-Locked Fiber Ring Laser using an Intracavity SOA | National Defense Academy@*Onodera Noriaki 1,Tsuji Kenichiro 1,Yamaguchi Teppei 1,Kim Jungmin 1,Saruwatari Masatoshi 1 |
| | 3 | Kilowatt-peak-power 1-Κm-wavelength-band ultrashort optical pulse source using a modelocked semiconductor diode laser | Tohoku Univ. NICHe 1,JST 2,Sumitomo Osaka Cement Co.Ltd 3@*Takashima Keijirou 1.2,Sato Kiichi 1,Mure Masahito 3,Yokoyama Hiroyuki 1 |
| | 4 | High peak power 920 nm ultrashort light pulse source utilizing supercontinuum light generated by a semiconductor laser | Tohoku Univ. NICHe 1,Tohoku Univ. RIEC 2,JST 3@*Yokoyama Hiroyuki 1,Shikata Jun-ichi 2,Takashima Keijiro 1,3,Sato Kiichi 1,Taniguchi Hirokazu 2,Ito Hiromasa 2 |
| | 5 | Analysis of visible super continuum generation using ultrashort pulses | Nagoya Univ. 1@*Mitsuzawa Hideyuki 1, Nishizawa Norihiko 1 |
| | 6 | Coherent anti-Stokes Raman scattering spectroscopy using a fundamental soliton pulse from a photonic crystal fiber | Chitose Institute of Science and Technology 1 @Kazuhiro Tada 1, Hiroshi Ohmori 1, Naoki Karasawa 1 |
| | | Break 10:30`10:45 | |
| | 7 | Birefringent nonlinear polarization rotation mirror for pedestal suppression of ultrashort pulse | Nagoya Univ. 1@*Norihiko Nishizawa 1, Atsushi Murayama 1 |
| | 8 | Kerr-lens mode-locking of LD-pumped ultra-short pulse Yb:YAG laser | Fukui Univ. 1@Masaki Takama 1, Masahiro Inoue 1, Shinichi Matsubara 1, Sakae Kawato 1, Takao Kobayashi 1 |
| | 9 | Octave-band sub-6-fs Ti:sapphire laser oscillator | AIST 1, NIST 2@Yohei Kobayashi, Dai Yoshitomi, Kenji Torizuka, Tara Fortier and Scott Diddams |
| | 10 | Development of a spatial light modulator from ultraviolet to near-infrared region | Hokkaido Univ. 1, JST-CREST 2@*Kouji Hazu 1,2, Keisuke Narita 1,2, Yu Sakakibara 1, Taro Sekikawa 1,2, Mikio Yamashita 1,2 |
| | 11 | Spectral phase measurments of broardband UV femtosecond pulses |
Hokkaido Univ. 1, CREST 2@*Nakagawa Naoya 1,2,
Iwasaki Atsushi 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2 |
| | 12 | Phase Characterization of Multiple CARS Signals in a Crystal at Room Temperature Toward the Generation of Extremely Short Optical Pulses | Hokkaido Univ. 1, JST-CREST 2@Eiichi Matsubara, Ryuji Morita, Taro Sekikawa, Mikio Yamashita |
| | | Lunch 12:15`13:00 | |
| 30p-SN-@/ III |
| | 1 | Development of compact fast electron generator using femto-second pulse laser. |
Tokyo Inst. of Technology 1, Central Research Inst.
of Electric Power Industry 2, Univ. of Tokyo 3@*Kei Takano 1, Takuya Nayuki
2, Yuji oishi 2, Alexei Zhidkov 2, Takashi Fujii 2, Keita Soda 3, Ryuta
Takashima 3, Masaru Todoriki 3, Shuichi Hasegawa 3, Eiki Hotta 1, Koshichi
Nemoto 1,2 |
| | 2 | Energy scaling of monoenergetic electron beam generated by laser-driven plasma based accelerator | AIST 1@Masuda Shinich 1, Miura Eisuke 1, Koyama Kazuyoshi 1, Kato Susumu 1 |
| | 3 | High-quality Electron Beam Generation by Laser-Plasma Interaction | JAEA@*Hideyuki Kotaki, Izuru Daito, Masaki Kando, Yuji Fukuda, Yukio Hayashi, Liming Chen, Takayuki Hamma, Jinglong Ma, Michiaki Mori, Koichi Ogura, Hiromitsu Kiriyama, Suji Kondo, Suhei Kanazawa, Yoshiki Nakai, Atsushi Akutsu, Youichi Yamamoto, Takuya Shimomura, Manabu Tanoue, Hiroyuki Daido, Sergei V. Bulanov, Toyoaki Kimura, Toshiki Tajima |
| | 4 | Relativistic frequency multiplication by flying mirror-the first demonstration of relativistic engineering- | KPSI JAEA 1@@Fukuda Yuji 1, Kando Masaki 1, Pirozhkov Alexander 1, Ma Jinglong 1, Daito Izuru 1, Chen Liming 1, Esirkepov Timur 1, Ogura Koichi 1, Homma Takayuki 1, Hayashi Yukio 1, Kotaki Hideyuki 1, Sagisaka Akito 1, Mori Michiaki 1, Koga James 1, Daido Hiroyuki 1, Bulanov Sergei 1, Kimura Toyoaki 1, Kato Yoshiaki 1, Tajima Toshiki 1 |
| | 5 | Sensitivity test of the Ionization Chamber in high field science | JAEA@Y. Hayashi,M. Kando, H. Kotaki, I. Daito, L.M. Chen, Y. Fukuda, S. Kondo, M. Mori, K. Ogura, H. Daido, S. Bulanov |
| | 6 | Energetic proton beam generation driven by J-KAREN 100TW laser | JAEA 1, KUICR, Kyoto U 2, CRIEPI 3, GIST 4@M. Mori 1, A. Yogo 1, S. Orimo 1, K. Ogura 1, A. Sagisaka 1, M. Nishiuchi 1, S. Nakamura 2, T. Shirai 2, Y. Iwashita 2, A. Noda 2, Y. Oishi 3, T. Nayuki 3, K. Nemoto 3, I. Choi 4, T. Yu 4, Laser Op. Gr. 1, H. Kiriyama 1, T. Esrikepov 1, S. V. Bulanov 1, H. Daido 1, and T. Kimura 1 |
| | 7 | High energy proton generation with thin-foil targets | Japan Atomic Energy Agency 1, Central Research Inst. of Electric Power Industry 2, Inst. for Chemical Research, Kyoto Univ. 3@*Sagisaka Akito 1, Daido Hiroyuki 1, Yogo Akifumi 1, Ogura Koichi 1, Orimo Satoshi 1, Ma Jinglong 1, Mori Michiaki 1, Pirozhkov Alexander S. 1, Nishiuchi Mamiko 1, Oishi Yuji 2, Nayuki Takuya 2, Fujii Takashi 2, Nemoto Koshichi 2, Nakamura Shu 1,3, Iwashita Yoshihisa 3, Shirai Toshiyuki 3, Noda Akira 3 |
| | 8 | Repititive highly collimated intense proton beam by the sub-MeV energy range produced by a compact few tera-Watt femto-second laser | JAEA 1, NIRS 2, Kyoto Univ. 3 @Nishiuchi Mamiko 1, Daido Hiroyuki 1, Sagisaka Akito 1, Koichi Ogura 1, Orimo Satoshi 1, Kado Masataka 1, Yogo Akifumi 1, mori Michiaki 1, Hayashi Yukio 1, Bulanov Sergei 1, Atsushi Fukumi 1 2, Li Zong 1 2, Noda Akira 3, Nakamura Shu 3 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 27 9:30`11:30 |
| 27a-ZL-@/ III |
| | 1 | Sellmeier equations for AgGaGeS4 | Chitose Inst. of Science and Technology 1, Max-Born-Inst. for Nonlinear Optics and Ultrafast Spectroscopy 2@*Miyata Kentaro 1, Utagawa Keitaro 1, Umemura Nobuhiro 1, Kato Kiyoshi 1, Petrov Valentin 2 |
| | 2 | Observation of high-order stimulated Raman scattering nad four-wave mixing in a high finesse cavity pumped by continuous-wave laser | Graduate School of Eng., Kyushu Univ. 1, Center for Future Chem., Kyushu Univ. 2@*Shin-ichi Zaitsu 1, Hirotomo Izaki 1, Kazuki Ihara 1, Totaro Imasaka 1,2 |
| | 3 | Generation of femtosecond pulses in mid-IR region using quasi-phase-matching devices (III) | IIS The Univ. of Tokyo 1, Tokyo Univ. of Agri. & Tech. 2, JST-PRESTO 3@*Mochizuki Takahiro 1, Yamamoto Shunsuke 1, Ashihara Satoshi 2,3, Shimura Tsutomu 1, Kuroda Kazuo 1 |
| | 4 | The development of 3µm-band pump source for high efficiency and narrow linewidth mid-IR generation | RIEC Tohoku Univ. 1, RIKEN Sendai 2@Katsuhiko Miyamoto 1, Yuki Tsuda 1, Hiromasa Ito 1, 2 |
| | | Break 10:30`10:45 | |
| | 5 | The number increase of high-order Stokes by the suppression of diffraction effect for ultra-short laser pulse formation based on parametric Raman scattering | AIST 1, Lebedev inst. 2@*Takahashi Eiichi 1, Leonid L. Losev 2, Matsumoto Yuji 1, Kato Susumu 1 |
| | 6 | Discussion on the possibility of realizing digital holographic microscope based on stimulated parametric emission | Graduate School of Engineering, Osaka Univ. 1@*Masatomo Yamagiwa1, Isobe Keisuke1, Syogo Kataoka1, Yasuyuki Ozeki1, Kazuyoshi Itoh1 |
| ’ | 7 | Dimensional analysis of fractal light scattering in a mirror-ball polyhedral structure |
Takushoku Univ 1@*Amano Kazuya 1,Narimatsu Daisuke
1,Sotome Satoshi 1,Uchida Atsushi 1,Yoshimori Shigeru 1 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 28 9:00`17:30 |
| 28a-J-@/ III |
| | 1 | Gas phase molecular spectroscopy by terahertz time-domain spectroscopy: Measurement of pressure broadening parameters of water vapor. | RIKEN 1, NICT 2@*Hiromichi Hoshina1, Takamasa Seta2, Yasuko Kasai2, Iwao Hosako2, Chiko Otani1 |
| £ | 2 | A coherent tunable THz-wave Spectrometer for high resolution gas phase spectroscopy | RIKEN Sendai@1,@RIEC, Tohoku Univ.@2@Ruixiang Guo, Koichi Akiyama, Hiroaki Minamide, Hiromasa Ito |
| | 3 | Characteristics of THz emimssion from a 100-fs intense laser-produced dense microplasma | Utsunomiya Univ.@Noboru Yugami, Kenichi Ninomiya, Takeshi Higashiguchi |
| | 4 | Conversion of THz emission from a periodic electrostatic field in a ZnSe crystal | Utsunomiya Univ. 1,CREST 2, @*Higashiguchi Takeshi 1,2,Li Kun 1,2,Kawanago Hiroshi 1,Yaegashi Kenta 1,Ohata Nobuo 1,2,Yugami Noboru 1,2 |
| | 5 | THz Emission characteristics from LSI-TEG chips without bias voltage | RIKEN 1, Osaka Univ. 2, NECEL 3@*Yamashita Masatsugu 1, Otani Chiko 1, Tonouchi Masayoshi 2, Miura Katsuyoshi 2, Nakamae Koji 2, Nikawa Kiyoshi 3 |
| | | Break 10:15`10:30 | |
| | 6 | THz response of carbon nanotube quantum dots | RIKEN 1, TITech 2, PRESTO-JST 3, CREST-JST 4@Fuse Tomoko 1, 2, Kawano Yukio 1,3, Aoyagi Yoshinobu 2, Ishibashi Koji 1, 4 |
| | 7 | Measurement of Optical Properties of Construction Materials in the Terahertz Region | Shizuoka Univ. 1, Spectra Design 2 , NICT 3 @*Norihisa Hiromoto 1, Ryoichi Fukasawa 2, Iwao Hosako 3 |
| | 8 | Low-temperature dielectric property of ceramics materials in terahertz region | Murata Manufacturing. 1,Osaka Univ. 2 @*Matsumoto Naoki 1,Kondo Takashi 1,Fujii Takashi 1,Kageyama Keisuke 1,Wada Nobuyuki 1, Sakabe Yukio 1,Yamaguchi Mariko 2,Tani Masahiko 2,Hangyo Masanori 2 |
| | 9 | Possibility of mica film on THz and far-infrared region | Murata Mfg. Co., Ltd.1, Yamaguchi Mica Co., Ltd.2, Kyoto Univ.3@*Fujii Tkashi1, Sakabe Yukio1, Sano Yoshifumi2, Hirao Kazuyuki3 |
| | 10 | Analysis of protein denaturation state using terahertz wave | RIKEN 1, Canon Research Center, Canon Inc. 2@*Yoneyama Haruko 1, Yamashita Masatsugu 1, Kasai Shintaro 1,2, Ito Hiromasa 1 Ouchi Toshihiko 1,2 |
| | 11 | THz spectroscopy of Molecular Conductor | Tohoku Univ. 1, Semiconductor Research Inst. 2@T Ohashi 1, T Tanno 2, T Tanabe 1, Y Oyama 1, K Suto 2, J Nishizawa 2 |
| | | Lunch 12:00`13:00 | |
| 28p-J-@/ III |
| | 1 | GaAs TUNNETT Diodes with Patch Antenna Oscillating at Sub-THz Regime with CW | Tohoku Univ. 1,Semiconductor Research Inst. 2@*Endo Kazuomi 1,Piotr Plotka 2,Makabe Hiroki 2,Oyama Yutaka 1,Tanabe Tadao 1,Suto Ken 2,Nishizawa Jun-ichi 2 |
| | 2 | Resonant Tunneling Diode THz Oscillators with Offset-Fed Slot Antennas for High Performance | Tokyo Tech Univ. 1@*Hanashima Kimitoshi 1,Suzuki Safumi1,Kishimoto NaomiChi1,and Asada Masahiro1,2 |
| | 3 | Frequency increase of resonant tunneling diode THz oscillators using a thick spacer layer | Tokyo Tech 1,JST-CREST 2@*Kishimoto Naomichi 1,Suzuki Safumi 1,Hanashima Kimitoshi 1,Asada Masahiro 1,2 |
| ’ | 4 | InP SBD integrated with broad band antenna and detection of sub-THz output from RTD oscillator | Tokyo Tech. 1,Sendai National College of Tech. 2,JST-CREST 3@*Miyachi Masato 1,Suzuki Safumi 1,Tatsuo Yosihiko 1,Suzuki Tetu 2,Asada Masahiro 1,3 |
| ’ | 5 | Room Temperature Emission of Terahertz Radiation from a 2D-Plasmon Resonant Emitter by Optical CW Excitation | Tohoku Univ. 1, Hokkaido Univ. 2@*Yohei Hosono 1,Akira Koizumi 1, Yahya Meziani 1, Mitsuhiro Hanabe 1, Taiichi Otsuji 1, Eiichi Sano 2 |
| ’ | 6 | Room Temperature Emission of Terahertz Radiation from a 2D-Plasmon Resonant Emitter by Optical Impulse Excitation | Tohoku Univ. 1,Hokkaido Univ. 2@*Hiroyuki Handa 1,Shinya Kaneko 1, Mitsuhiro Hanabe 1, Yahya Meziani 1, Taiichi Otsuji 1, Eiichi Sano 2 |
| ’ | 7 | Observation of terahertz-photon sidebands in carbon nanotube quantum dots | RIKEN 1, JST PRESTO 2,Tokyo Inst. of Tech. 3, JST CREST 4@@*Kawano Yukio 1,2, Fuse Tomoko 1,3, Uchida Takeo 1,3, Ishibashi Koji 1,4 |
| | 8 | Fabrication and characterization of near-field terahertz probes integrated with detectors | RIKEN 1, JST PRESTO 2,JST CREST 3@Kawano Yukio 1,2, Ishibashi Koji 1,3 |
| | 9 | Temporal origin of terahertz emission and the phase of Bloch oscillation in semiconductor superlattices | IIS 1, CINQIE 2, Dept. Appl. Phys. 3, Univ. of Tokyo@*Unuma Takeya 1, Hirakawa Kazuhiko 2,3, Ino Yusuke 3, Gonokami Makoto 2,3 |
| | | Break 15:15`15:30 | |
| | 10 | Emission Image of Terahertz Quantum Cascade Lasers Obtained with Uncooled Infrared Cameras | NICT 1, NEC 2@*Sekine Norihiko 1, Oda Naoki 2, Hosako Iwao 1 |
| | 11 | Developement of Ag-metal bonding process for low-loss plasmon waveguide of THz-Quantum Cascade Laser | RIKEN-Sendai@Ying Leiying 1, Horiuchi Noriaki 1, Hirayama Hideki 1 |
| | 12 | Fabrication of THz quantum-cascade lasers with low propagation loss Ag plasmon waveguide | RIKEN Sendai@Hideki Hirayama 1, Horiuchi Noriaki 1, Ying Leiying 1, Terashima Wataru 1 |
| | 13 | Fabrication of mid-infrared quantum cascade lasers using AuIn metal bonding process | IIS/CINQIE, Univ. of Tokyo 1, NICT 2@*Sakasegawa Yohei 1, Hirakawa Kazuhiko 1, Sekine Norihiko 2, Hosako Iwao 2 |
| £ | 14 | Terahertz range quantum well photodetector | NICT 1, NTT-AT 2@Patrashin Mikhail 1, Hosako Iwao 1, Miyashita Sen 2 |
| | 15 | An Octave Bandwidth Quasi-optical Superconductor/Insulator/Superconductor Mixer | AIST 1, PMO 2, NICTiPresent: NAOj 3, NICT 4@*S. Kohjiro 1, S. Shi 2, J. Inatani 3, M. Maezawa 1, Y. Uzawa 3, Z. Wang 4, A. Shoji 1 |
| | 16 | Optical Delay line in the Semiconductor Frequency Converter Using the Doppler Effect | Nagoya Institute of Technology@ *Sho Yamada 1,Xian Yuan Jun 1, Jongsuck Bae 1 |
| | 17 | Propagation Characteristics of Terahertz Waves on Coplanar Striplines Made on Low Permittivity Substrates | Hiroshima Univ. 1,@*Onuma Masayuki 1, Yanagi Shinji 1, Kitagawa Jiro 1, Kadoya Yutaka 1 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 29 9:00`17:30 |
| 29a-J-@/ III |
| | 1 | THz filter using Polyethylene powder | Tohoku Univ. 1, Semiconductor Research Inst. 2@*Kenmochi Atsushi 1, Tanabe Tadao 1, Oyama Yutaka 1, Sasaki Tetsuo 2, Tanno Takenori 2, Suto Ken 2, Nishizawa Jun-ichi 2 |
| | 2 | NIR lasers for shoebox-sized GaP terahertz signal generator | Tohoku Univ. 1, Semiconductor Research Inst. 2@*Norimitsu Hozumi 1,Tadao Tanabe 1, Tetsuo Sasaki 2, Yutaka Oyama 1, Ken Suto 2, Jun-ichi Nishizawa 2 |
| £ | 3 | Increase of CW Terahertz-wave output power by enhancement of laser diode power densities | Tohoku Univ. 1, Semiconductor Research Inst. 2 @*Ragam Srinivasa 1, Tanabe Tadao 1, Sasaki Tetsuo 2, Oyama Yutaka 1, Suto Ken 2, Nishizawa Jun-ichi 2 |
| | 4 | ATR Spectra of trehalose solution in THz-region | Tohoku Univ. 1, Semiconductor Research Inst. 2@*Kenmochi Atsushi 1, Tanabe Tadao 1, Oyama Yutaka 1, Suto Ken 2, Nishizawa Jun-ichi 2, Sasaki Tetsuo 2, Tanno Takenori 2 |
| | 5 | Fabrication and characterization of GaP two-dimensional photonic crystal slabs for THz-wave application | Tohoku Univ. 1,Semiconductor Research Inst. 2@*Kyosuke Saito 1,Tadao Tanabe 1,Yutaka Oyama 1,Ken Suto 2,Jun-ichi Nishizawa 2,Tetsuo Sasaki 2,Tomoyuki Kimura 2 |
| | | Break 10:15`10:30 | |
| | 6 | Analysis of transmission through semiconductor gratings of THz electromagnetic waves by means of FDTD method | JAIST School of Materials Science@*Terashima Shigeki 1,Maeda Yojiro 1,Katayama Shin-ichi 1 |
| | 7 | Fabrication of wire-grid using metal plate and its characterization in THz range | Murata Mfg.1, Nagoya Univ.2, NAOJ3, Shinshu Univ.4, Kyoto Univ.5@*Fujii Takashi1, Sakabe Yukio1, Kawai Toshihide2, Matsuo Hiroshi3, Taked Wada Mitsuo4, Hirao Kazuyuki5 |
| ’ | 8 | Giant Optical Activity by Metallic Screw Array in the Terahertz Region | Institube of Laser Engineering Osaka Univ. 1, Murata Manufacturing Company Ltd. 2@Keiskuke Takano 1, Fujii Takashi 2, Masahiko Tani 1, Masanori Hangyo 1 |
| | 9 | Fabrication of polarization-dependent periodic structure in the THz region with a femtosecond laser | Kyoto Univ. 1,2@*Shimizu Masahiro 1,Shimotuma Yasuhiko 1,Minowa Yousuke 2,Tanaka Koichiro 2,Miura Kiyotaka 1,Hirao Kazuyuki 1 |
| | 10 | Fabrication of a three-dimensional photonic crystal in a terahertz wave region | Canon Research Center, CANON INC. 1@*Tamamori Kenji 1, Ouchi Toshihiko 1, Ituji Takeaki 1, Shinan Wang 1, Kurosaka Ryoji 1, Ono Haruhito 1 |
| ’ | 11 | Analysis and evaluation of a three-dimensional photonic crystal in a terahertz wave region | Canon Research Center, CANON INC. 1@*Itsuji Takeaki 1,Tamamori Kenji 1,Wang Shinan 1,Kurosaka Ryoji 1,Ono Haruhito 1,Ouchi Toshihiko 1 |
| | | Lunch 12:00`13:00 | |
| 29p-J-@/ III |
| | 1 | Non-contact chemical sensor plate using terahertz emission and detection system | Okayama Univ. 1, ILE Osaka Univ. 2@*Kiwa Toshihiko 1, Kondo Jyunichi 1, Shohei Oka 1, Kawayama Iwao 2, Hironobu Yamada 1, Masayoshi Tonouchi 2, Keiji Tsukada 1 |
| ’ | 2 | Development of Fiber-Coupled High-Speed THz-TDS Imaging System | Inst. Laser Engineering, Osaka Univ. 1@*Ryotaro Inoue 1, Masayoshi Tonouchi 1 |
| ’ | 3 | Applications of High Speed THz Imaging System to Si Wafers Inspection | ILE,Osaka Univ. 1,Spectra Design 2,NICT 3@*Takayama Kazuhisa 1,Inoue Ryotaro 1,Kawayama Iwao 1,Murakami Hironari 1,Tonouchi Masayoshi 1,Fukasawa Ryoichi 2,Sakai Kiyomi 3 |
| | 4 | Development of high sensitive terahertz imaging technique for microvolume specimen by using metal hole alley | RIKEN 1, Tokyo Univ. of Sci. 2, Shinshu Univ. 3@Takahiro Suzuki 1,2, Miyamaru Fumiaki 3, Yamashita Masatsugu 1, *Otani Chiko 1 |
| ’ | 5 | Real-time THz time-domain spectroscopic imaging of moving object | Sch. Engg. Sci., Osaka Univ. 1,Grad. Sch. Engg. Sci., Osaka Univ. 2@*Ihara Atsushi 1,Sawanaka Ken-ichi 2,Yasui Takeshi 2,Araki Tsutomu 2 |
| | 6 | 2-D Terahertz Imaging Taking Account of Residual Birefringence of EO Crystal | Inst. of Applied Physics,Univ. of Tsukuba 1@Masaya Sakamoto 1,Toshiaki Hattori 1 |
| | 7 | Real-time imaging of terahertz wave generated by photoconductive antennas having interdigitated electrodes | Univ. of Tsukuba,Inst. of Appl.Phys. 1,AIST 2@*Masuda Masayoshi 1,Egawa Kazuhiro 1,Sakamoto Masaya 1,Hattori Toshiaki 1,Itatani Taro 2,Ohi Akihiko 2 |
| | 8 | Numerical Analysis of Photo-conductive Antennas for THz-TDS | Shimadzu Corp. 1@*Takubo Kenji 1, Takebe Masahiro 1, Moriya Naoji 1, Inoue Fujio 1 |
| | 9 | Three-Dimension Terahertz Optical Coherent Tomography | Inst. of Laser Eng. Osaka Univ. 1, Osaka Univ. 2@Hideaki Kitahara 1, Tokujiro Enatsu 2, Masahiko Tani 1, Masanori Hangyo 1 |
| | | Break 15:15`15:30 | |
| ’ | 10 | Development of InGaAs terahertz emitter for high electric field bias | Osaka Univ.@*Hiroki Koga 1,Masato Suzuki 1,Iwao Kawayama 1,Hironaru Murakami 1,Masayosi Tonouti 1 |
| | 11 | THz generation and detection with 1.56 Κm pulse excitation using PC antennas fabricated on LT-grown InGaAs | ADSM Hiroshima Univ. 1,Osaka Univ. 2@*Takazato Akihiro 1,Kamakura Masahumi 1,Kitagawa Jiro 1,Kadoya Yutaka 1,Tonouchi Masayoshi 2 |
| ’ | 12 | Very compact terahertz spectroscopy system with high spatial resolution | School of Science, University of Tokyo 1@*Shinichi Watanabe 1, Ryo Shimano 1 |
| ’ | 13 | Polarization detection of terahertz electromagnetic radiations by three-contact photoconductive receivers | Institute of Laser Engineering Osaka University@*Makabe Hiroyuki, Hirota Yuichi, Tani Masahiko, Hangyo Masanori |
| | 14 | Improvement of Scanning-Probe Laser Terahertz Emission Microscope toward high resolution | Inst. of Laser Engineering, Osaka Univ.@*Naotsugu Uchida 1, Ryotaro Inoue 1, Iwao Kawayama 1, Hironaru Murakami 1, Masayoshi Tonouchi 1 |
| | 15 | Detection of sub-THz radiation from Gunn oscillator by photoconductive antenna (II) | Japan Coast Guard Academy 1,Osaka Univ. 2@*Osamu Morikawa 1,Masahiko Tani 2, Masami Fujita 1, Masanori Hangyo 2 |
| | 16 | Study on Ultrashort Optical Pulse Propagation in Optical-fiber-Based Terahertz Time Domain Spectroscopy System | CRL, Hitachi, Defense Sys., Hitachi@Yong Lee 1, Shigehisa Tanaka 1, Naohito Uetake 2 |
| | 17 | Ferroelectric PVDF Cladding THz Waveguides IX | Shonan Inst. Tech. 1, Riken(The Inst. Physical and Chemical Research)-Sendai 2, RIEC-Tohoku University 3@*Ishikawa Akihiro 1, Ikari Tomofumi 2, Ishikawa Youichi 2, Hidaka Takehiko 1, Minamide Hiroaki 2, Ito Hiromasa 2.3 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 30 9:00`14:30 |
| 30a-J-@/ III |
| | 1 | First Principles Study of Dielectric Function of SiO2 in the Tera-Hz Frequency Region | Univ Tokyo 1, Hitachi ARL 2, Advancesoft 3, NIMS 4@*Tomoyuki Hamada 1,2, Takenori Yamamoto 3, Jiro Ushio 2,4, Takahisa Ohno 1,4 |
| | 2 | The 1.3µm-band two wavelength pump source for narrow linewidth THz-wave | RIEC Tohoku Univ. 1, RIKEN Sendai 2@A. Nawahara 1, C. Ndiaye 1, T. Yamashita 1, K. Miyamoto 1, H. Ito 1, 2 |
| | 3 | Efficiency Enhancement of THz Radiation by Photomixing Using Pulse-Modulated Multimode Laserdiode | Inst. of Laser Engineering, Osaka Univ. 1, GLORY LTD. 2, Graduate School of Engineering, Osaka Prefecture Univ. 3@Shibuya Kyoji 1, Tani Masahiko 1, Hangyo Masanori 1, Nakashima Toru 2, Inoue Takashi 2, Wada Kenji 3, Takamatsu Shuji 3, Watanabe Hideyuki 3, Horinaka Hiromichi 3 |
| | 4 | Apprication of Fabry-Perot etalon for narrowing the spectral linewidth of a ring-TPO |
Riken Sendai 1, RIEC Tohoku Univ. 2@*Seigo Ohno
1, Hiroaki Minamide 1, Ruixiang Guo 1, Hiromasa Ito 12 |
| | 5 | Output enhancement in surface-emitted TPO using high energy and large pump beam diameter |
RIKEN Sendai 1, RIEC Tohoku Univ. 2@*Ikari Tomofumi
1, Minamide Hiroaki 1,Ito Hiromasa 1,2 |
| | | Break 10:15`10:30 | |
| | 6 | Development of A3-size compact THz-wave parametric oscillator including a LD-pumped Nd:YAG laser | RIKEN Sendai 1, Tohoku Inst. of Tech. 2, RIEC Tohoku Univ. 3@*Hiroaki Minamide 1, Atsushi Sato 2, Hiromasa Ito 1 3 |
| | 7 | 2-15THz source made of DAST and Ag-coated hollow fiber with DAST crystal | Research Inst. of Electrical Comm., Tohoku Univ. 1, Department of Electrical Comm. ,Tohoku Univ. 2@Yoshie Ohta 1, Tomoyu Yamashita 1, Yuji Matsuura 2, Hiromasa Ito 1 |
| | 8 | Development of encapsulate spectroscopic method using THz-wave hollow fibers | RIKEN Sendai Tera-Photonics 1, Graduate School of Engineering Tohoku Univ. 2, RIEC Tohoku Univ. 3@*Youichi Ishikawa 1, Tomofumi Ikari 1, Yuuji Matsuura 2, Hiromasa Ito 1 3 |
| ’ | 9 | Experimental observation of consistency in a microchip laser with opto-electronic feedback | Takushoku Univ. 1@Han Bing 1,Yip Hoipang 1,Uchida Atsushi 1,Yoshimor Shigeru 1 |
| | 10 | Simple expression for semiconductor laser multimode rate equations including band filling effects | Osaka Pref. Univ. 1@*Kenji Wada 1, Hiroyuki Yoshioka 1, Jiaxun Zhu 1, Shingo Tani 1, Tetsuya Matsuyama 1, Hiromichi Horinaka 1 |
| ’ | 11 | Spatio-Temporal Dynamics in Broad-Area Semiconductor Lasers | Shizuoka Univ 1@*Hideo Mitsui 1,Junji Ohtsubo 1 |
| | | Lunch 12:00`13:00 | |
| 30p-J-@/ III |
| | 1 | Observation of Higher Order Periodic Oscillations in Broad-area Semiconductor Lasers with Optical Feedback | Shizuoka Univ. 1@*Tachikawa Tomokazu 1, Shogenji Rui 1, Ohotsubo Junji1 |
| ’ | 2 | Bandwidth enhancement in chaotic semiconductor lasers by optical injection | Graduate School of Science and Technology, Shizuoka Univ. 1, Faculty of Engineering, Shizuoka Univ. 2@*Sakai Masahiko 1, Ohtsubo Junji 2 |
| | 3 | Chaos synchronization of bandwidth-enhanced semiconductor lasers by optical injection | Graduate School of Engineering,Shizuoka Univ. 1,Shizuoka Univ. 2@*Sunako Shuichi 1,Ohtsubo Junji 2 |
| ’ | 4 | Experiment on common-chaotic-signal induced synchronization in semiconductor lasers | Takushoku Univ. 1,NTT CS-Lab. 2@*Yamamoto Toru 1,Oowada isao 1,Yip Hoipang 1,Uchida Atsushi 1,Yoshimori Shigeru 1,Yoshimura Kazuyuki 2,Muramatsu Jun 2,Goto shin-itiro 2,Daves Peter 2 |
| ’ | 5 | Numerical analysis on common-chaotic-signal induced synchronization in semiconductor lasers | Takushoku Univ. 1,NTT CS Lab. 2@*Oowada Isao 1,Yamamoto Toru 1,Uchida Atsushi 1,Yosimori Shigeru 1,Yoshimura Kazuyuki 2,Muramatsu Jun 2,Goto Shi-ichiro 2,Peter Davis 2 |
| ’ | 6 | Lag synchronization of chaos in mutually coupled vertical-cavity surface-emitting lasers | Takushoku Univ.@*Someya Hiroyuki 1,Ozaki Mitsutoshi 1,Uchida Atsushi 1,Shigeru Yoshimori 1 |
| 4.6 Laser
Spectroscopy and Instrumentation |
| March 28 10:30`17:00 |
| 28a-SJ-@/ III |
| |
1`2 10:00`10:30 (4.1 Quantum Optics and Atom
Optics) |
| ’ | 3 | Enhancement of emission intensity for laser induced breakdown spectroscopy using micro metal-particle | Wakayama Univ.1@*Takayuki Ohta1, Takashi Kotani1, Yuka Nakanishi1, Masafumi ito1 |
| | 4 | Growth diagnosis technique of agri-products using multi-wavelength fluorescence imaging II - Simultaneous Detection of four-wavelength fluorescence - | Shinshu Univ. 1@*Michiru Mizukoshi 1, Fumitoshi Kobayashi 1, Kazuya Kinbara 1, Takuya Kawahara 1,Yasunori Saito 1 |
| | 5 | Remote sensing of chlorophyll fluorescence lifetime of tree leaves II | Shinshu Univ.@*Mitsuaki Hara 1,Takeshi Tenpaku 1,Fumitoshi Kobayashi 1,T.D.Kawahara 1,Yasunori Saito 1 |
| | 6 | Measurement of physiological response with OCT system specialized for plants | Faculty of Engin., Chiba Univ.1, Grad. Sch. of Sci. and Tech.,Chiba Univ.2@T. Shiina1, H. Makino2, and T. Honda1 |
| | | Break 11:30`11:45 | |
| | 7 | Carbon Dioxide Monitoring System by using Pseudo-Multipass Method | Tokyo Polytechnic Univ. 1, DKK-TOA Corp. 2@Nobuo Nishimiya 1, Md. Alam Jahangir 1, Tomohiro Takayama 2, Masao Suzuki 1 |
| | 8 | Development of the high sensitive leak-gas imaging system of using frequency up-conversion of infrared light | Univ. of Fukui@*Masaharu Imaki, Hironori Inaba, Takao Kobayashi |
| | 9 | CH4 monitoring in ambient air by communication band LD based DFG in a direct-bonded QPM-LN ridge waveguide | NTT Photonics Labs. 1@*Yanagawa Tsutomu 1, Tadanaga Osamu 1, Nishida Yoshiki 1, Miyazawa Hiroshi 1, Magari Katsuaki 1, Asobe masaki 1, Suzuki Hiroyuki 1 |
| | 10 | Development of the 1.6 Κm differential absorption lidar for carbon dioxide observations 2 | Tokyo Metropolitan Univ. 1, Meteorological Research Inst. 2@*Sakaizawa Daisuke 1, Nagasawa Chikao 1, Nagai Tomohiro 2, Abo Makoto 1, Shibata Yasukuni 1, Nakazato Masahisa 2 |
| | 11 | Development of the 1.6 Κm differential absorption lidar for carbon dioxide observations 3 | Tokyo Metropolitan Univ. 1, Meteorological Research Inst.@*Sakaizawa Daisuke 1, Nagasawa Chikao 1, Nagai Tomohiro 2, Abo Makoto 1, Shibata Yashukuni 1, Nakazato Masahisa 2 |
| | | Lunch 13:00`14:00 | |
| 28p-SJ-@/ III |
| | 1 | Pure_rotational Raman_scattering temperature lidar with reducing Mie_scattering interference noise | fukui univ.1@Hisaji kawai 1,Masaharu Imaki 1, Takao Kobayashi 1 |
| | 2 | Analysis of atmospheric temperature and wave structures in the equatorial region observed by lidar | Tokyo Metropolitan Univ.@*Makoto Abo, Kai Nojima, Chikao Nagasawa, Yasukuni Shibata |
| | 3 | Long-term cloud observation using a portable automated lidar (PAL) | Chiba U.1, CEReS Chiba U.2, Hamamatsu Photonics3,Chibaken Kankyo Kenkyu Center4@T. Shiina1,T. Honda1, N. Takeuchi2, H. Kuze2, G. Bagtasa2, A. Sone3, H. Kan3, T. Naito4 |
| | 4 | Local and low-altitude cloud monitoring with an in-line type micro pulse lidar | Grad. Sch. of Sci. and Tech. Chiba Univ. 1,Chiba Univ. 2,CERes Chiba Univ. 3,Hamamatsu Photonics 4@*Tanaka Yu 1,Shiina Tatsuo 2,Honda Toshio 2,Takeuchi Nobuo 3,Kuze Hiroaki 3,Sone Akihiro 4 |
| | 5 | Development of an imaging lidar based on the Ashra telescope and its application to aerosol monitoring. | Chiba Univ. 1, Tokyo Univ. 2, Toho Univ. 3@*Yamaguchi Yohei 1, Ikue Kouga 1, Kohei Shinomiya 1, Nobuo Takeuchi 1, Hiroaki Kuze 1, Makoto Sasaki 2, Yoichi Asaoka 2, Satoru Ogawa 3 |
| | | Break 15:15`15:30 | |
| | 6 | Three-Wavelength Depolarization Measurement of Clouds and Aerosols Using a White Light Depolarization Lidar System | Osaka Univ. 1, Inst. for Laser Technology 2@*Somekawa Toshihiro 1, Yamanaka Chihiro 1, Fujita Masayuki 2 |
| | 7 | All-fiber Coherent Doppler LIDAR using high power fiber amplifier for long-range wind sensing | Mitsubishi Electric Corp. Information Tech. R&D Center 1, Mitsubishi Electric Corp. Communication Systems Center 2@*Ando Toshiyuki 1, Kameyama Shumpei 1, Asaka Kimio 2, Furuta Masashi 2, Hirano Yoshihito 1 |
| | 8 | Improvement of Demodulation Performance of All-fiber Laser Doppler Vibrometer | Mitsubishi Electric Corp. 1@*Mizuma Masashi 1, Kameyama Shumpei 1, Ando Toshiyuki 1, Hirano Yoshihito 1 |
| | 9 | Transmission characteristics of annular beam in random media | Graduate School of Sci. and Tech., Chiba Univ. 1Faculty of Engin., Chiba Univ. 2@*Tsuge Yosuke 1,Shiina Tatsuo 2,Honda Toshio |
| | 10 | Rotation angle measurement of propagating beam with high-voltage discharge experiment | Chiba U.1, CRIEPI2@T. Shiina1, T. Honda1, T. Fukuchi2 |
| | 11 | High-precision polarization lidar - design and development of transmitter optics - | Chiba Univ. 1,CRIEPI 2,Chiba Inst. Tech. 3,@*Miyamoto Masakazu 1,Shiina Tatsuo 1,Honda Toshio 1,Fukuchi Tetsuo 2,Noguchi Kazuo 3 |
| 4.7 Laser Processing |
| March 29 10:00`18:30 |
| 29a-SJ-@/ III |
| | 1 | Diagnostics of the fast ions and neutral atoms from laser-produced tin plasma | Grad. Sch. of ISEE Kyushu Univ. 1, Sch. of Medicine Kyushu Univ. 2@*D. Nakamura 1, Y. Hashimoto 1, K. Tamaru 1, A. Takahashi 2, T. Okada 1 |
| | 2 | Observation of optical emission from laser-ablation plasmas in pressurized water | Nagoya Univ. 1@*Takada Noriharu 1, Sasaki Koichi 1 |
| | 3 | Nano-Ablation of Quartz Glass only by Laser Plasma Soft X-Rays | Inst. of Appl. Phys. Univ. of Tsukuba 1, AIST PRI 2, S.R.P. gNano Scienceh3@*Satoshi Uchida 1, Kengo Yofu 1, Takashige Fujimori 1, Tsuyohiko Inoue 1, Tetsuya Makimura 1, Hroyuki Niino 2, Koichi Murakami 1 3 |
| | 4 | Ablation Species of Silica Glass Induced by Irradiation with Pulsed Laser Plasma Soft X-rays | Inst. of Appl. Phys., Univ. of Tsukuba 1, AIST PRI 2, S. R. P. "Nano Science" 3@Fujimori Takashige 1, Makimura Tetsuya 1, Inoue Takehiko 1, Uchida Satoshi 1, Niino Hiroyuki 2, Murakami Kouichi 1 3 |
| | 5 | Room-temperature fabrication of FeSi2 micro-dot array by laser-induced forward transfer | AIST@*Narazaki Aiko 1, Kurosaki Ryozo 1, Sato Tadatake 1, Kawaguchi Yoshizo 1, Niino Hiroyuki 1 |
| | 6 | Fabrication of 3D microstructure of Cu and CoXFe3-XO4 by photopolymerized resin | Yokohama Nat'l Univ.1@*Shinya Kitayama 1.Toshiya Yoshimura 1. Shoji Maruo 1.Kohki Mukai 1 |
| | | Break 11:30`11:45 | |
| | 7 | Formation of photoluminescent layer on silicone rubber by ArF laser | Kanto Gakuin Univ 1,National Defense Acedemy 2@Sekine Daisuke 1,Okoshi Masayuki 2,Inoue Narumi 2,Yamashita Tsugito 1 |
| | 8 | Fabrication of AlN thin films by EB laser ablation with heated NH3 | Hamamatsu Photonics K.K.@*Norio Ichikawa 1, Tadashi Kitahara 1 |
| | 9 | Preparation of Heat Mirror Thin Films by Laser Ablation Method | Sasebo Nat. Coll. Tech. 1@*Ohshima Tamiko 1, Yagyu Yoshihito 1, Kawasaki Hiroharu 1, Suda Yoshiaki 1 |
| | 10 | Structure of the a-SiC film prepared by reactive Pulsed Laser Deposition (PLD) | JAEA 1@Morihisa Saeki 1, Hironori Ohba 1, Youichi Yamada 1, Hiroyuki Yamamoto 1, Fumitaka Esaka 1, Atsushi Yokoyama 1 |
| | 11 | Fabrication of SiC thin films with Nitride system buffer layer by PLD method | The Interdisciplinary Graduate School of Sci. and Eng:Tokyo Inst. of Tech.@*Kohta Akiyama, Sei Otaka, Wakana Hara, Wataru Tsuji, Mamoru Yoshimoto |
| | | Lunch 13:00`14:00 | |
| 29p-SJ-@/ III |
| | 1 | Femtosecond laser synthesis of polymorphic diamond from highly oriented pyrolytic graphite | Osaka Univ. 1, SPring-8 2, National Defense Acad. 3, Fukui Univ. Tech. 4@*Tomokazu Sano 1, Kengo Takahashi 1, Akio Hirose 1, Osami Sakata 2, Masayuki Ohkoshi 3, Narumi Inoue 3, Kojiro F. Kobayashi 4 |
| ’ | 2 | Synthesis of high-pressure phases of Si using femtosecond laser |
Osaka Univ. 1,SPring-8 2,National Defense Acad.
3@*Masashi Tsujino 1,Tomokazu Sano 1,Norimasa Ozaki 1,Akio Hirose 1,Osami
Sakata 2,Masayuki Ohkoshi 3,Narumi Inoue 3 |
| ’ | 3 | Cross-sectional profiles of ripple structures on highly oriented pyrolytic graphite | The Univ. of Tokushima@*Kumai Ryota, Tomita Takuro, Matsuo Shigeki, Hashimoto Shuichi |
| ’ | 4 | Silica-based nonplanar structures fabricated by femtosecond laser lithography | Osaka Univ. 1,AIST 2, ISIR 3@*Mizoshiri Mizue 1,Nishiyama Hiroaki 1,Nishii Junji 2,Kawahara Toshio 3,Kawai Tomoji 3,Hirata Yoshinori 1 |
| ’ | 5 | Synthesis of Pd Nanoparticles by Laser Ablation in Water and Application to Hydrogen Gas Sensor | Kyushu Univ. 1@*Higashihata Mitsuhiro 1,Nishimura Jun 1,Ueda Makoto 1,Yamane Shinji 1,Hidaka Shinichiro 1,Imasaka Kiminobu 1,Suehiro Junya 1,Okada Tatsuo 1 |
| ’ | 6 | Observation of bubble-trapped particles produced by Si laser ablation in water | Kochi National Col. of Tech. 1, Kochi National Col. of Tech. 2, TEL Kyushu Ltd. 3@*Tsutsui Norimasa 1, Hujihara Takeshi 2, Nishiya Akira 3, Ikenoue Hiroshi 1,2 |
| ’ | 7 | Femtosecond laser irradiation on functional ceramics films formed with aerosol beam | Graduate School of Osaka Univ. 1, JWRI of Osaka Univ. 2, Kinki Univ. 3, Inst. for Laser Technology 4@*Soga Yukihiro 1, Tsukamoto Masahiro 2, Asuka Keita 1, Hazui kiyoshi 3, Yoshida Minoru 3, Fujita Masayuki 4, Abe Nobuyuki 2 |
| ’ | 8 | Early Behavior Observation of Plasma Produced by Laser Ablation | Kochi National Col. of Tech. 1@*Miyawaki Yuudai 1,Ikenoue Hiroshi 1 |
| | | Break 16:00`16:15 | |
| | 9 | Anisotropic nanostructuring and shape control of metal microplate with femtosecond laser irradiation | Kyoto Univ.@*Nakao Atsuo 1, Shimotsuma Yasuhiko 2, Miura Kiyotaka 1, Hirao Kazuyuki 1 |
| | 10 | Formation of fs-laser-induced nanostructure on patterned DLC film surface | Kyoto Univ. 1@Miyaji Godai 1, Miyatani Yoshitaka 1, Miyazaki Kenzo 1 |
| | 11 | TEM observation of structural changes in 4H-SiC single crystal surface irradiated by femtosecond laser pulses | Tokushima Univ. 1,JSPMI 2@*Hiroyuki Kawahara 1,Tatsuya Okada 1,Ryota Kumai 1,Takuro Tomita 1,Shigeki Matsuo 1,Shuichi Hashimoto 1,Makoto Yamaguchi 2 |
| | 12 | Femtosecond Laser Assisted Etching of Coverslip | The University of Tokushima 1@Shigeki Matsuo 1, Takashi Moriya 1, Takuro Tomita 1, Shuichi Hashimoto 1 |
| | 13 | Near-field light processing excited by femtosecond laser and its tribology application | Keio Univ.@*Tetsuo Sakai, Minoru Obara |
| | 14 | Microfabrication of SU-8 using holographic two-photon microfabrication | Tokushima Univ. 1@*Takahashi Hidetomo 1, Nishitani Maki 1, Hayasaki Yoshio 1 |
| | 15 | Holographic femtosecond laser processing with the two-photon imaging | Tokushima Univ. 1@*Hasegawa Satoshi 1, Hayasaki Yoshio 1 |
| | 16 | Micro-structural modification deep within a glass substrate by using counter-propagating femtosecond laser pulses | Osaka Univ. 1, Photonics Research Inst., AIST 2@*Yoshitaka Kobayashi 1, Takayuki Tamaki 1, Wataru Watanabe 2, Yasuyuki Ozeki 1, Kazuyoshi Itoh 1 |
| | 17 | Study of femtosecond laser ablation mechanism for sample solidified on substrate | RIKEN@*Mizuki Kurata-Nishimura 1, Toshiyuki Kato 1, Tohru Kobayashi 1, Yukari Matsuo 1, Rieko Oyama 1, Yuko Okamura-Oho 1, Jun Kawai 1, Yoshihide Hayashizaki 1 |
| 4.7 Laser Processing |
| March 30 9:00`15:00 |
| 30a-SJ-@/ III |
| | 1 | Fabrication of vertical ZnO nanowires to sapphire substrate by NAPLD and its growth process | Kyushu Univ. 1,Fudan Univ. 2@*Nishimura Jun 1,Ueda Makoto 1,Higashihata Mitsuhiro 1,Guo Ruiqian 2,Okada Tatsuo 1 |
| | 2 | InTaO4-based nano-structures synthesized by reactive pulsed laser ablation | Dept. of Phys. Konan Univ. 1, Anan Natl. Coll. of Tech. 2, Quantum Nano-tech. Lab. Konan Univ. 3@*Toyoyama Hirokazu 1,Yoshida Takehito 2,Umezu Ikurou 1,3,Sugimura Akira 1,3 |
| | 3 | Formation process of Si nanocrystals by pulsed laser ablation in reactive gas | Konan Univ. 1, Quantum Nano-tech.Lab. 2@*Nakayama Yusuke 1, Umezu Ikurou 1,2, Sugimura Akira 1,2 |
| | 4 | Control of secondary structure of silicon nanocrystallites by silicon oxide layer | Konan Univ. 1,Quantum Nano-tech. Lab. Konan Univ. 2@Saito Yoshinori 1,Umezu Ikurou 1,2,Sugimura Akira 1,2 |
| | 5 | Effect of a reflected shock wave on generation of nanoparticles in laser plume | Dept. of Phys. Konan Univ. 1, Hitachi Zosen Corporation 2,Quantum Nano-tech. Lab. Konan Univ. 3 @*Nagahara Naotoshi 1, Takiya Toshio 2,Umezu Ikurou 1,3, Sugimura Akira 1,3 |
| £ | 6 | Luminescent silicon nanocrystals obtained by nanosecond laser ablation in spin on glass hosting matrix |
Nanoarchitectonics Res. Centr., AIST 1@*Svrcek
Vladimir 1, Takeshi Sasaki 1, Yoshiki Shimizu 1, Naoto Koshizaki 1 |
| | | Break 10:30`10:45 | |
| | 7 | Preparation of boron carbide particles for boron neutron capture therapy by pulsed laser irradiation in liquid | NARC AIST 1@*Ishikawa Yoshie 1, Kawaguchi Kenji 1, Sasaki Takeshi 1, Koshizaki Naoto 1 |
| | 8 | Laser-induced fragmentation of TIO particles in solutions and the fabrication of their polymer nanocomposites | Nanoarchitectonics Res. Centr., AIST 1@*Takeshi Sasaki 1, Mika Ito 1, Yoshiki Shimizu 1, Naoto Koshizaki 1 |
| | 9 | Synthesis of Gold nanoparticles by liquid laser ablation | IMRAM., Tohoku univ. 1@*Mochidzuki Yuzuru 1,Nakamura Takahiro 1,Sato Shunichi 1 |
| | 10 | Fabrication of Si nanoparticles by laser ablation in aqueous solution | Tokai Univ.@*Hiroki Mikami,@Moriaki Wakaki |
| | 11 | Reduction of Ag+ ions by pulsed laser irradiation in the presence of carbon particles | Sophia Univ. 1.@*Yoshiko Miura 1, Kazuko Yui 1,Kiyoshi Itatani 1,Seiichiro Koda 1 |
| | | Lunch 12:00`13:00 | |
| 30p-SJ-@/ III |
| | 1 | Poly-crystallized biocompatible HAp coating deposited by PLD method at RT | CRC Univ. of Miyazaki 1, Dept. of EEE Univ. of Miyazaki 2, Kinki Univ. 3, JWRI Osaka Univ. 4, Inst. Laser Tech. 5@*Masahito Katto 1, Kenzo Ishibashi 2, Takuma Tsurusaki 2, Atushi Yokotani 2, Shoichi Kubodera 2, Takeyoshi Nakayama 3, Hirotaka Katayama 3, Nobuyuki Abe 4, Masahiro Tsukamoto 4, Masayuki Fujita 5 |
| | 2 | Thermal effect of laser micro-machining on titanium alloy for joint prosthesis | Graduate School of Eng. Osaka Univ. 1,Graduate School of Med. Osaka Univ. 2, JMM Corp. 3,YASUOKA Co., Ltd. 4,Daido Steel Co., Ltd. 5@*Miyazono Kenshi 1,Yoshimura Masashi 1,Mori Yusuke 1,Kitaoka Yasuo 1,Sasaki Takatomo 1,Sugamoto Kazuomi 2,Ishimizu Keidai 3,Yamawaki Noboru 3,Yasuoka Masayasu 4,Fukuda Tatuo 5 |
| | 3 | Manufacture of microneedle for stimulating living cell by femtosecond laser | RIKEN 1@*Hanada Yasutaka 1, Sugioka Koji 1, Midorikawa Katsumi 1 |
| | 4 | Preparation of cell arrays by femtosecond laser micromachining | Keio Univ. 1, RIKEN DRI 2, RIKEN BSI 3, JST PRESTO 4@Uematsu Kazue 1,2, Kawano Hiroyuki 3, Nakanishi Jun 2,4, Obara Minoru 1, Maeda Mitsuo 2, Miyawaki Atsushi 3, Midorikawa Katsumi 2 |
| | 5 | Optimization of femtosecond laser irradiation condition for protein crystal nucleation |
Grad. School of Eng. Osaka Univ. 1, Inst. of Sci.
and Industri. Res. Osaka Univ. 2, CREST-JST 3, SOSHO Inc. 4@*Murai Ryota
1 3, Yoshikawa Hiroshi 1 3, Kitatani Tomoya 1 3, Maki Syou 1 3,Adachi Hiroaki
1 3 4, Takano Kazufumi 1 3 4, Matsumura Hiroyoshi 1 3 4, Murakami Satoshi
2 3 4, Inoue Tuyoshi 1 3 4, Mori Yusuke 1 3 4, Sasaki Takatomo 1 4 |
| | 6 | Pulse duration dependence of femtosecond laser crystallization of anthracne | Graduate School of Eng. 1, Graduate School of Frontier Biosci.2, and Venture Business Labo.3, Osaka Univ., and JST-CREST4@Kazuhiko Nakamura 2,3, Yoichiroh Hosokawa 1,3,4, Hiroshi Yoshikawa 1,3,4, Hiroaki Adachi 1,3, Yusuke Mori 1,3,4, Takatomo Sasaki 1,3, and Hiroshi Masuhara 1,2,3,4 |
| | 7 | Laser Percussion Using CW-CO2 Laser | Inter. Grad. Sch. Sci. Engin., Kinki Univ. 1@Hashishin Yuichi 1, Sano Shu 1, Murakami Shinya 1, Nakayama Takeyoshi 1 |
| | 8 | Optical technique related to orange fiber laser in photocoagulation system II | Nidek Co., Ltd. 1, Optoquest Co., Ltd. 2@Ito Koichi 1, Kojima Kazunobu 1, Miyakozawa Masami 2, Hayashi Kenichi 1 |