| 4 Quantum Electronics |
| 4.1 Quantum Optics and Atom Optics |
| March 18 9:00`12:45 |
| 18a-L - 1`14 |
| 1 | Experimental demonstration of sub-Geiger-mode single-photon APD detector | JST ERATO-SORST 1, Waseda Univ. 2@Tsujino Kenji 1, Miyamoto Yoshito 2, Kataoka Jun 2, Tomita Akihisa 1 |
| 2 | Performances of Sinusoidally Gated InGaAs/InP APD in a Low Temperature Regime | Nihon Univ. 1@*Kono Taichi 1,Namekata Naoto 1,Inoue Shuichiro 1 |
| ’ | 3 | One-photon two-mode interference with exciton polarization modes in a single quantum dot | RIES 1, JST CREST 2@*S. Ekuni 1, H. Nakajima 1, H. Kumano 1,2, H. Sasakura 1, I. Suemune 1,2 |
| 4 | Long-term polarization-based Mandel-dip measurement at 1550 nm using four photons | AIST 1, JST-CREST 2@*Yoshizawa@Akio 1,2, Xue Yinghong 1,2, Tsuchida Hidemi 1,2 |
| £ | 5 | Demonstration of quantum swapping using@two polarization-entangled photon pairs in the 1550 nm band
| AIST 1, JST-CREST 2@Xue Yinghong 1,2, Akio Yoshizawa 1,2, Hidemi Tsuchida1,2
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| 6 | Nonclassicality and coherence measures of light in photon statistics | Graduate School of Arts and Sciences, Univ. of Tokyo at Komaba 1@*Asaba Tomoya 1, Fukatsu S. 1 |
| 7 | Two Photon Interference Experiment with a Surface-Plasmon-Polariton Waveguide | Nihon Univ. 1,AIST 2@*Segawa Toshiya 1,Fujii Go 1,2,Namekata Naoto 1,Fukuda Daiji 2,Inoue Shuichiro 1 |
| | | Break 10:45`11:00 | |
| 8 | Population relaxation properties of Zeeman sublevels in Er3+ ions doped in a cooled silica glass fiber | NTT Basic Research Labs.@*Hashimoto Daisuke 1, Shimizu Kaoru 1
|
| 9 | Post Selection Scheme for Squeezed Light Generation with an Erbium Doped Fiber Amplifier
| Keio Univ 1@Syohei Kondo 1,Hidetake Ushio 1,Fumihiko Kannnari 1 |
| 10 | Generation of Squeezed Vacuum Pulses Using Cascaded chi-2 Nonlinearity of Periodically-Poled Lithium Niobate
| Keio Univ. 1,@*Shinsuke Sassa 1,Yasuyuki Ito 1,Fumihiko Kannari 1, |
| 11 | Parametric Down Conversion Through Cascaded x(2) Process from a PPLN Ride-Waveguide Device
| Oki Electric@*Arahira Shin, Kishimoto Tadashi, Yaegashi Hiroki |
| 12 | Generation of time-bin entangled photon pairs using cascaded second order nonlinear effect in single PPLN waveguide | NTT Basic Research Labs. 1, ESPCI ParisTech 2, NTT Photonics Labs. 3, JST CREST 4@Hunault Myrtille 1,2,4, Takesue Hiroki 1,4, Tadanaga Osamu 3, Nishida Yoshiki 3, Asobe Masaki 3 |
| 13 | Macroscopic differentially phased-shifted quantum key distribution using an optically preamplified receiver | Osaka Univ. 1, NTT Basic Res. Labs 2, JST-CREST 3@Takada Hiroshi 1,2, Kukita Tastuya 1,2, Inoue Kyo 1,2,3 |
| 14 | Speed-Improved Secret Key Distribution Using Phase Fluctuations and Seed Key | Hitachi Advanced Research Laboratory@Tomaru Tatsuya 1 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| March 18 13:30`18:00 |
| 18p-L - 1`17 |
| ’ | 1 | Low-Dispersion Slow-Light in Chalcogenide Photonic Crystal Waveguides | Yokohama Nat'l Univ. 1, JST-CREST 2@Keijiro Suzuki 1,2, Hamachi Yohei 1,2, Toshihiko Baba 1,2 |
| 2 | Si Photonic Crystal Waveguide with Chalcogenide Cladding | Yokohama Nat'l Univ. 1, JST-CREST 2@Keijiro Suzuki 1,2, Yosuke Hama 1, Toshihiko Baba 1,2 |
| 3 | Dynamic control of GaAs-based nanocavity Q factor and stopping light ? Time resolved measurement ?
| Kyoto Univ. 1@Upham Jeremy 1, Inoue Hiroki 1, Tanaka Yoshinori 1, Kojima Kazunobu 1, Stumpf Wolfgang 1, Asano Takashi 1, Noda Susumu 1 |
| 4 | GaInAsP Photonic Crystal Slow Light Device for the High-Speed Tuning of Slow Light | Yokohama National Univ. 1, JST-CREST. 2@Yoshihiro Kawasaki 1,2, Hong Chuyen Nguyen 1,2, Toshihiko Baba 1,2 |
| 5 | Demonstration of Fast Optical Correlator via Thermal Delay Tuning in Photonic Crystal Coupled Waveguide | Yokohama Natfl Univ. 1, JST-CREST 2@*Ishikura Norihiro 1,2, Adachi Jun 1,2, Baba Toshihiko 1,2 |
| £ | 6 | Dynamic Q factor control of Si-based 2D photonic nanocavity and stopping light ?Catch and release of an optical pulse in a nanocavity coupled to double waveguides?
| Kyoto Univ. 1@Upham Jeremy 1, Fujita Yu 1, Sato Yoshiya 1, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
| 7 | Limit of stopped light in chirped photonic crystal waveguide device | Yokohama Nat'l Univ. 1, JST-CREST. 2@*Saito Yuji 1 2, Baba Toshihiko 1 2@ |
| 8 | A Study on SiO2-cladded Photonic Crystal Waveguide Slow Light Devices | Yokohama Nat'l Univ. 1, JST-CREST 2@*Mizuki Shinkawa 1, Jun Adachi 1,2, Yohei Hamachi 1,2, Toshihiko Baba 1,2 |
| | | Break 15:30`15:45 | |
| ’ | 9 | Strong coupling between photonic nanocavities through a waveguide | Kyoto Univ. 1@Yoshiya Sato 1, Yoshinori Tanaka 1, Jeremy Upham 1, Yasushi Takahashi 1, Takashi Asano 1, Susumu Noda 1 |
| 10 | Photonic Crystal Waveguide Connected to Wire Waveguide with Spot-size converter | Yokohama Nat'l Univ. 1, JST-CREST. 2@*Hama Yosuke 1, Ishikura Norihiro 1,2, Shinkawa Mizuki 1, Adachi Jun 1,2, Baba Toshihiko 1,2 |
| 11 | Photonic Crystal Coupled Waveguide Fabricated by using CMOS Process | Yokohama Natfl Univ. 1, JST-CREST 2@*Ishikura Norihiro 1,2, Hama Yosuke 1, Adachi Jun 1,2, Baba Toshihiko 1,2 |
| 12 | Lattice-Shifted Photonic Crystal Waveguide Fabricated by Using CMOS Process | Yokohama Nat'l Univ. 1, JST-CREST 2@*Mizuki Shinkawa 1,Yohei Hamachi 1,2, Norihiro Ishikura 1,2, Yosuke Hama 1, Toshihiko Baba 1,2 |
| ’ | 13 | Analysis of vertically stacked structures of 2D PC cavity with low refractive index material cladding and silicon-wire waveguide (II) | Univ. of Tsukuba 1, AIST 2@*Yamada Tomoya 1,2, Okano Makoto 2, Sakakibara Youichi 2, Kamei Toshihiro 2, Sugisaka Jun-ichiro 1,2, Yamamoto Noritsugu 2, Itoh Masahide 1, Sugaya Takeyoshi 2, Komori Kazuhiro 2, Mori Masahiko 2 |
| 14 | A Study on Bend Waveguide Connected with Photonic Crystal Waveguides | Yokohama Nat'l Univ. 1, JST-CREST. 2@*Hama Yosuke 1, Adachi Jun 1,2, Ishikura Norihiro 1,2, Baba Toshihiko 1,2 |
| 15 | Series Connection of Photonic Crystal Optical Switch | AIST Photonics, Univ. of Tsukuba@Noritsugu Yamamoto 1,Yoshitaka Sakai 1,2, Masahiko Mori 1
|
| 16 | Electrical Q-switching of photonic crystal nanocavities | NTT Basic Research Labs. 1, CREST-JST 2@Takasumi Tanabe 1,2, Hideaki Taniyama 1,2, Akihiko Shinya 1,2, Eiichi Kuramochi 1,2, Masaya Notomi 1,2 |
| 17 | All-optical switch involving Fano resonance in ultrasmall photonic crystal nanocavities | NTT Basic Research Labs. 1, NTT Photonics Labs. 2@*Kengo Nozaki 1, Takasumi Tanabe 1, Akihiko Shinya 1, Shinji Matsuo 2, Tomonari Sato 2, Hideaki Taniyama 1, Masaya Notomi 1 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| March 19 9:30`17:45 |
| 19a-M - 1`9 |
| 1 | 2D Photonic Crystal Surface-Emitting Lasers Operating at 660 nm | ROHM Co.,Ltd 1, Kyoto Univ. 2@Kunishi Wataru 1,2, Nagase Kazuya 1,2, Sakaguchi Takui 1,2, Miyai Eiji 1,2, Ohnishi Dai 1,2, Noda Susumu 2 |
| ’ | 2 | Lasing Properties of Centered-Rectangular-Lattice Photonic-Crystal Laser II | Kyoto Univ. 1,ROHM Co., Ltd. 2@*Iwahashi Seita 1,Kurosaka Yoshitaka 1,Sakai Kyousuke 1,Liang Young 1,Miyai Eiji 1,2,Kunishi Wataru 1,2,Sakaguchi Takui 1,2,Ohnishi Dai 1,2,Noda Susumu 1 |
| 3 | Photonic Crystal H0 Nanolaser with Nano-Slit structure | Yokohama Nat'l univ. 1, JST-CREST 2@Hachuda Shouji 1, Kita Shouta 1,2, Baba Tosihiko 1,2 |
| ’ | 4 | High Resolution Biosensing Using Photonic Crystal H0 Nanolaser with Nano-Slit | Yokohama Nat'l Univ. 1, JST-CREST 2, Hokkaido Univ. 3@Shota Kita 1 2, Shoji Hachuda 1 2, Yoshiaki Nishijima 3, Hiroaki Misawa 3, Toshihiko Baba 1 2 |
| ’ | 5 | Coupled-wave Analysis for Two-dimensional Photonic-crystal Laser-Air hole shapes and vertical radiation coefficients | Kyoto Univ.1,ROHM Co.,Ltd.2@Liang Yong 1,Sakai Kyosuke 1,Iwahashi Seita 1,Kurosaka Yoshitaka 1, Miyai Eiji 1,2,Ohnishi Dai 1,2,Kunishi Wataru 1,2,Noda Susumu 1 |
| 6 | On-Chip Beam-Steering Photonic-Crystal Lasers | Kyoto Univ. 1,ROHM Co.,Ltd. 2@*Kurosaka Yoshitaka 1,Iwahashi Seita 1,Liang Yong 1,Nobuoka Toshiyuki 1,Sakai Kyosuke 1,Miyai Eiji 1,2,Ohnishi Dai 1,2,Kunishi Wataru 1,2,Noda Susumu 1 |
| ’ | 7 | Lasing Oscillation in a Three-Dimensional Photonic Crystal Nanocavity | NanoQuine Univ. of Tokyo 1@Tandaechanurat Aniwat 1, Ishida Satomi 1, Guimard Denis 1, Bordel Damien 1, Nomura Masahiro 1, Iwamoto Satoshi 1, Arakawa Yasuhiko 1 |
| 8 | Various Vector Beams Produced by Photonic-Crystal Lasers | Kyoto Univ. 1@*Iwahashi Seita 1,Kurosaka Yoshitaka 1,Sakai Kyousuke 1,Kitamura Kyoko 1,Takayama Naoki 1,Noda Susumu 1 |
| ’ | 9 | Photonic-Crystal Laser with Radially-Polarized Narrow Ring Beam Emission -Proposal of Device Structure and Investigation of Lasing Properties- | Kyoto Univ. 1, KUPRU 2@*Kitamura Kyoko 1, Kurosaka Yoshitaka 1, Sakai Kyosuke 1,2, Iwahashi Seita 1, Takayama Naoki 1, Noda Susumu 1 |
| | | Lunch 11:45`13:00 | |
| 19p-M - 1`18 |
| |
1 |
Interaction of Strongly Coupled Quantum Dot-Cavity System with External Environment |
NanoQuine 1, IIS 2 Univ. of Tokyo, NEC 3@*Yautomo Ota 1,2, Naoto Kumagai 1,Shunsuke Ohkouchi 1,3, Masayuki Shirane 1,3, Masahiro Nomura 1, Satomi Ishida 2, Satoshi Iwamoto 1,2, Shinichi Yorozu 1,3, Yasuhiko Arakawa 1,2
|
| 2 | Analysis of the effect of pure dephasing in a quantum dot coupled with a nanocavity (5) | Kyoto Univ. 1@*Yamaguchi Makoto 1,Asano Takashi 1,Kojima Kazunobu 1,Kojima Takanori 1,Nakamura Tatsuya 1,Wolfgang Stumpf 1,Noda Susumu 1 |
| ’ | 3 | Tight Binding Calculations of Size Dependence of Band Gap in Si, C, and 3C-SiC Clusters
| FUJITSU LIMITED 1, FUJITSU LABORATORIES LTD. 2@*Kentaro Takai 1, Norihiko Takahashi 2, Minoru Ikeda 2, Takahiro Yamasaki 1,2, Chioko Kaneta 1,2 |
| ’ | 4 | Control of nanocavity-quantum dot system by depositing and removing nitrogen | Kyoto Univ. 1@Nakamura Tatsuya 1, Takashi Asano 1, Kazunobu Kojima 1, Wolfgang Stumpf 1, Takanori Kojima 1, Noda Susumu 1 |
| ’ | 5 | Observation of Electroluminescence from Quantum-Dots in Photonic Crystal Structures | IIS Univ. of Tokyo 1, NanoQuine 2@*S. Nakagawa 1, Y. Wakayama 1,2, S. Nakayama 1,2, Y. Ota 1,2, K. Watanabe 2, M. Nomura 2, T. Nakaoka 2, S. Iwamoto 1,2 and Y. Arakawa 1,2
|
| 6 | Detection of quantum dot position and emission wavelength toward combined photonic crystal nanocavity-single quantum dot systems | Kyoto Univ. 1@*Kojima Takanori 1, Kojima Kazunobu 1, Stumpf Wolfgang 1, Tatsuya Nakamura 1, Yamaguchi Makoto 1, Asano Takashi 1, Fujita Masayuki 1, Noda Susumu 1 |
| 7 | Precise tuning of relative position and emission wavelength of single quantum dot and photonic crystal nanocavity | Kyoto Univ.@*Kazunobu Kojima 1, Takanori Kojima 1, Tatsuya Nakamura 1, Makoto Yamaguchi 1, Takashi Asano 1, Susumu Noda 1 |
| 8 | Electroluminescence of a Si-based light emitting device using microdisk with Ge dots | ART Tokyo city Univ. 1CIMR Tohoku Univ. 2C@*Takeda Yuuki 1CXia Jinsong 1CFukamizu Seiji 1CUsami Noritaka 2CMaruizumi Takuya 1CShiraki Yasuhiro 1C |
| | | Break 15:00`15:15 | |
| 9 | Light Emission Properties of Silicon Photonic Crystals with High-Pressure Water Vapor Annealing | Kyoto Univ. 1, Tokyo Univ. A&T 1@Masayuki Fujita 1, Bernard Gelloz 2, Nobuyoshi Koshida 2, Susumu Noda 1 |
| ’ | 10 | Stimulated emission from a GaN nanoring resonator | Sophia Univ.1, Sophia Nanotechnology Research Center@2, CREST Japan Science and Technology Agency 3@*Tetsuya Kouno 1,3, Katsumi Kishino 1,2,3, Masaru Sakai 1,3, Takuto Suzuki 1, Akihiko KIkuchi 1,2,3 |
| 11 | Temperature Dependence of Photoluminescence from GaInN Photonic Crystal with Air Holes that Penetrate through the Active Layer | Kyoto Univ. 1,ALPS Electric. 2@*Kitagawa Hitoshi 1,2, Suto Toshihide 1,2, Fujita Masayuki 1, Asano Takashi 1, Noda Susumu 1 |
| 12 | All-silicon IR pin photodiode by integrated photonic crystal nanocavity | NTT Basic Research Labs. 1, CREST-JST 2@*Takasumi Tanabe 1,2, Hisashi Sumikura 1, Hideaki Taniyama 1,2, Akihiko Shinya 1,2, Masaya Notomi 1,2 |
| 13 | Control of thermal radiation using intersubband transition in quantum wells and 2D photonic crystals-(4)
| Kyoto Univ. 1@*De Zoysa Menaka 1, Minato Yasuaki 1, Asano Takashi 1, Noda Susumu 1 |
| ’ | 14 | Optimization of Photonic Crystal Effect for Enhancement of Optical Absorption in Photovoltaic Device | Kyoto Univ. 1, SHARP CO.,Ltd. 2@*Shigeta Hiroaki 1 2, Fujita Masayuki 1, Tanaka Yoshinori 1, Yashiro Yuhji 2, Tsuda Yuhsuke 2, Noda Susumu 1 |
| 15 | Optical hydrogen detection using subwavelength periodic structure in infrared region | The University of Tokyo 1@Mikuriya Sho 1,Etsuo Maeda 1,Nagato Keisuke 1,Shuzo Masaki 1,Yamada Ichiro 1,Delaunay Jean-Jacques 1 |
| 16 | Thermo-photovoltaic generation using high-efficient thermal emitter based on a control of both electronic and photonic states
| Kyoto Univ. 1@*De Zoysa Menaka 1, Asano Takashi 1, Minato Yasuaki 1, Noda Susumu 1 |
| 17 | Analysis of Radiation Pressures in Photonic Crystal Nanocavities | Kyoto Univ. 1, Univ. of Queensland 2@*Tanaka Yoshinori 1, Kang Dongyeon 1, Asano Takashi 1, Noda Susumu 1, Kwan Lee2, Warwick Bowen2 |
| 18 | Observation of photo-induced mechanical vibrations on the double slab photonic crystal | NTT-BRL 1, NTT-PH 2, CREST-JST 3@Y. Roh 1,3, T. Tanabe 1,3 , A. Shinya 1,3 , H. Taniyama 1,3 ,E. Kuramochi 1,3 ,S. Matsuo 2 ,T. Sato 2 , M. Notomi 1,3 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| March 20 9:30`15:00 |
| 20a-M - 1`9 |
| ’ | 1 | Control of Light at the Surface of 3D Photonic Crystals | Kyoto Univ. 1@*Ishizaki Kenji 1, Ota Yuji 1, Suzuki Katsuyoshi 1, Noda Susumu 1 |
| 2 | Polarization conversion by a diamond-type photonic crystal mirror | IIS, Univ. Tokyo 1@*Edagawa Keiichi 1, Imagawa Shigeki 1, Morita Keisuke 1, Niino Toshiki 1 |
| 3 | Investigation of Surface Modes of 3D Photonic Crystals Fabricated by Double Angled-Etching Techique | Kyoto Univ. 1@*Ota Yuji 1,Suzuki Katsuyoshi 1,Ishizaki Kenji 1,Noda Susumu 1 |
| 4 | Photonic band gap formation in photonic amorphous diamond structure consisting of dielectric spheres | IIS, Univ. Tokyo 1, NTT 2, CREST-JST 3@*Imagawa Shigeki 1, Noda Morio 1, Edagawa Keiichi 1, Notomi Masaya 2,3 |
| 5 | Extension of operating wavelengths of high Q photonic crystal nanocavities | Osaka Pref. Univ.1, JST PRESTO2, Kyoto Univ.3@*Terawaki Ryo 1,Chihara Masahiro 1,Takahashi Yasushi 1,2,Noda Susumu 3 |
| 6 | Analysis of 2D PC donor-defect cavities with low refractive index material cladding (II) | AIST 1, Univ. of Tsukuba 2@*Okano Makoto 1, Yamada Tomoya 1,2, Sugisaka Jun-ichiro 1,2, Yamamoto Noritsugu 1, Itoh Masahide 2, Sugaya Takeyoshi 1, Komori Kazuhiro 1, Mori Masahiko 1 |
| 7 | Composite system of a dielectric photonic crystal and metal split-ring resonator | Sungkyunkwan Univ.1, Kyoto Univ.2@*Bong-Shik Song1, Yoon-Sik Lee1, Susumu Noda2 |
| 8 | Fabrication of mode gap cavity on PhC by AFM lithography and its nonlinear optical property | NTT Basic Research Labs. 1@*Yokoo Atsushi 1, Tanabe Takasumi 1, Kuramochi Eiichi 1, Notomi Masaya 1 |
| 9 | Thermo-optic effect in a SiC-based photonic crystal nanocavity | Kyoto Univ. 1, Sungkyunkwan Univ. 2@*Shota Yamada 1, Bong-Shik Song 1,2, Takashi Asano 1, and Susumu Noda 1 |
| | | Lunch 11:45`13:00 | |
| 20p-M - 1`8 |
| 1 | High-Q design of H0 type photonic crystal nanocavity | NanoQuine Univ. of Tokyo 1, IIS Univ. of Tokyo 2@*Nomura Masahiro 1, Tanabe Katsuaki 1, Iwamoto Satoshi 1,2, Arakawa Yasuhiko 1,2 |
| ’ | 2 | Development of SiC photonic crystal nanocavity / waveguide composite system at visible range | Kyoto Univ. 1, Sungkyunkwan Univ. 2@*Shota Yamada 1, Bong-Shik Song 1,2, Takashi Asano 1, and Susumu Noda 1 |
| 3 | Development of one-dimensional mode-gap nanocavities | NTT BRL 1, JST-CREST 2@*Kuramochi Eiichi 1,2, Tanabe Takasumi 1,2, Taniyama Hideaki 1,2, Notomi Masaya 1,2 |
| 4 | Glass-embedded ultrahigh-Q Si photonic nanocavities | Sungkyunkwan Univ.1, Kyoto Univ.2@*Bong-Shik Song 1,2, Sueung-Woo1, Susumu Noda 2 |
| 5 | Coupling between fiber tips coated with metal thin film and fiber-coupled microspheres | RIES Hokkaido Univ.@*Takashima Hideaki, Kitagima Kazutaka, Tanaka Yoshito, Fujiwara Hideki, Sasaki Keiji |
| 6 | Higher-order resonant modes in a photonic heterostructure nanocavity | Osaka Pref.Univ.1,JST PREST2,Kyoto Univ.3@*Masahiro Chihara 1,Ryo Terawaki 1,Yoshiya Sato 3,Yasushi Takahashi 1,2,Susumu Noda 3
|
| 7 | Design of silicon Raman Laser using photonic crystal waveguide with hetero-interface mirrors | IIS1, ,NanoQUINE2@Sshinomori Naoya1CShigeru Nakayama1,2 Satoshi Iwamoto1,2, Yasuhiko Arakawa1,2
|
| 8 | Group velocity dependence of anti-Stokes Raman scattering efficiency in AlGaAs-based photonic-crystal line-defect waveguide
| CIST 1, NIMS 2@*Hisaya Oda 1, Akio Yamanaka 1, Naoki Ikeda 2, Yoshimasa Sugimoto 2, Kiyoshi Asakawa 2 |
| 4.3 Laser Devices and Materials |
| March 17 9:00`17:00 |
| 17a-F - 1`11 |
| 1 | Generation of quasi-cw VUV light with two successive cavity enhanced SHGs | The Univ. of Electro-Commun. 1, ISSP, Univ. of Tokyo 2, NICT 3, Chinese Academy of Science 4,@Zhang Yun 1, Watanabe Nobuyoshi 1, Kanai 2, Hyodo Masaharu 3, Okada-Shudo Yoshiko 1, Watanabe masayoshi 1, Chen Chuangtian 4, Wang Xiaoyang 4, and Watanabe Shuntaro2 |
| 2 | Investigation of pulsewidth in a SHG with external cavity using autocorrelation technique | The Univ. of Electro-Commun. 1, ISSP Univ. of Tokyo 2, NICT 3, Chinese Academy of Science 4@*Sekimoto Daisuke 1, Watanabe Nobuyoshi 1, Kanai Teruto 2, Hyodo Masaharu 3, Zhang Yun 1, Watanabe Masayoshi 1, Okada-Shudo Yoshiko 1, Chen Chuangtian 4, Wang xiaoYang 4, Watanabe syuntaro 2 |
| 3 | Efficient Frequency Doubling of a Nd-Doped Laser in a High Quality CBO Crystal | PMRC JAEA 1,KPSI JAEA 2, Usio Inc. 3@*Suzuki Masayuki 1,Kiriyama@Hiromitsu@1,2,Nakai Yoshiki 1,2,Okada Hajime 2,Izuru Daito 1,Kagebayashi@Yoshio 3,Yokota Toshio 3,Bolton Paul@1,Daido Hiroyuki 1,2,Kondo Kiminori 1, 2,Kawanishi Shunichi 1, 2
|
| 4 | CLBO devices for VUV generation with low degradation | AMiT 1, Osaka Univ 2, Univ. of Arizona 3, Oxide 4, JST-CREST 5@*Imai Shinichi 1,5, Matsuki Kazuto 1, Iida Susumu 1,5, Kaneda Yushi 2,3,5, Yoshimura Masashi 2,5, Mori Yusuke 2,5, Sasaki Takatomo 2,5, Hirohashi Junji 4,5, Miyamoto Akio 4,5, Furukawa Yasunori 4,5 |
| 5 | Temperature dependence of excited-state absorption in Ce:YAG ceramics | ILE Osaka University 1, Institute for laser Technology 2, Kinki University 3@*Tada Takashi 1, Motokoshi Shinji 2, Honda Yoshiyuki 3, Jitsuno Takahisa 1, Fujioka Kana 1, Yoshida Minoru 3 |
| 6 | Development of crystal aligned anisotropic laser ceramics under magnetic field | IMS@*Akiyama Jun 1, Sato Yoichi 1, Taira Takunori 1 |
| | | Break 10:30`10:45 | |
| 7 | Development of 100W class laser system for the L-SSPS ground experimental proof -Solar pumped Cr/Nd:YAG ceramic laser oscillation- | U-Fukui 1,JAXA 2@Takuma Shirahama 1,Wataru Urano 1,Jumpei Ogino 1,Kiyoshi Ohmae 1,Hiroaki Ashiki 1,Yutaro Katayama 1,Hiroaki Suzuki 2,Hiroyuki Yoshida 2,Katsuto Kisara 2,Yasuyuki Fukumuro 2,Susumu Sasaki 2,Hideaki Niki 1,Tadashi Kanabe 1 |
| 8 | Study of high efficiency solar-pumped laser with Fresnel lens | Tokyo Institute of Technology 1, Okamoto Optical 2, Konoshima Chemical 3@Dinh Thanh Hung 1, Yabe Takashi 1, 1, Uchida Shigeaki 1, Ohkubo Tomomasa 1, Yasunaga Norihito 1, Tanabe Kazuyoshi 1, Kuboyama Hiroki 1, Sato Yuji 1, |
| 9 | Optical pumped laser system using Nd/Cr water solution | Shikoku Research Inst. 1@*Hideki Ninomiya 1,Sachiyo Sugimoto 1,Ippei Asahi 1,Yasunobu Tada 1 |
| 10 | Autocorrelation measurement of the femtosecond VUV pulse using multiphoton ionization | DEEE 1 and CRC 2, Univ. of Miyazaki@*Masanori Kaku 1, Hironari Zushi1,Wataru Nagaya 1,Masahito Katto 2,Shoichi Kubodera 1 |
| 11 | Damage thresholds of optical devises at different temperature (2) | ILE Osaka Univ. 1, Institute for Laser Technology 2, Showa Optronics Co. Ltd. 3@*Mikami Katsuhiro 1, Motokoshi Shinji 2, Fujita Masayuki 2, Jitsuno Takahisa 1, Kawanaka Jyunji 1, Yamamura Norihiko 3 |
| | | Lunch 12:00`13:00 | |
| 17p-F - 1`15 |
| | 1 | All gas-phase iodine laser(AGIL) | Tokai Univ 1,Keio Univ 2@*Tomonari Nakamura 1,Taizo Masuda 2,Masamori Endo 1 |
| 2 | Ultraviolet Femtosecond Pulse Amplification using a Micro-pulling Down Method-grown Ce:LiCAF Crystal Side-Pumped in a Prismatic Cell-type Configuration | Osaka University 1,Tokuyama Corporation 2,Tohoku University3@*Sarukura Nobuhiko 1,Kouno Masahiro 1,Marilou Raduban 1,Jacque Gabayno 1,Minh Pham 1,Yamanoi Kohei 1,Elmer Estacio 1,Nakazato Tomoharu 1,Shimizu Toshihiko 1,Suyama Toshihisa 2,Fukuda Kentaro 2,3,Kyoung Jin Kim 3,Yoshikawa Akira 3,Saito Fumio 3 |
| 3 | High Power and Widely Tunable External Cavity Semiconductor Diode Laser with a Single-Angled-Facet Diode Laser | Chiba Univ. 1,Optoenergy Inc. 2@*Yasutaka Shimada 1,Kiyofumi Muro 1,Tomohisa Endo 1,Yumi Yamada 2,Yuuji Yamagata 2 |
| 4 | Development of 1 Κm Band High - Power Tapered Amplifier Chip | Chiba Univ. 1, Optoenergy Inc. 2@K. Kitahara 1, K. Muro 1, Y. Yamada 2, Y. Yamagata 2 |
| £ | 5 | Current Excitation Model for Cerenkov Lasers with a Planar Waveguide | Grad. School of Natural Sci. and Tech. Kanazawa Univ. 1@*Hesham Fares 1, Minoru Yamada 1,Yuji Kuwamura 1 |
| 6 | A distributed feedback waveguide blue laser using spirobifluorene derivative | Kyushu Univ. 1, ISEE, Kyushu Univ. 2, ISIT 3, Center of Future Chemistry, Kyushu Univ. 4,@*So Hirotaka 1, Watanabe Hirofumi 2, Yahiro Masayuki 3, Yang Yu 2, Oki Yuji 2, Adachi Chihaya 4 |
| 7 | Directly Fabrication of DFB solid-state dye lasers on PDMS substrate II | Kyushu Univ. 1,AIST 2@*Goto Ryo 1,Yang Yu 1,Yamashita Kenichi 2,Watanabe Hirofumi 1,Miyazaki Masaya 2,Oki Yuji 1,Kuhara Satoru 1 |
| | | Break 14:45`15:00 | |
| £’ | 8 | Multi-ring modes with near-diffraction free propagation characteristics generated from an Yb:YAG laser with an intra-cavity aberration lens | Institute for Laser Science, Univ. of Electro-communications@1, P.N.Lebedev Physical Institute of the Russian Academy of Sciences 2@Manasadevi P Thirugnanasambandam@1, Yuri Senatsky 2, Ken-ichi Ueda@1 |
| 9 | High order transverse mode operation of Yb:YAG laser by gain distribution control | IMRAM., Tohoku Univ. 1@Shimohira Koki 1, *Kozawa Yuichi 1, Sato Shunichi 1 |
| 10 | Oscillation of passively mode locked and radially polarized Nd:YAG laser | IMRAM., Tohoku Univ. 1@Yonemoto Kazuki 1, *Kozawa Yuichi 1, Sato Shunichi 1 |
| £ | 11 | Generation of Laguerre-Gaussian modes in Yb:YAG laser using intra-cavity lens with strong spherical aberration | Institute for Laser Science, Univ. of Electro-communications 1, P.N.Lebedev Physical Institute of the Russian Academy of Sciences 2@Manasadevi P Thirugnanasambandam@1, Yuri Senatsky 2, Ken-ichi Ueda@1 |
| 12 | High power pico-second vortex output from a Yb doped fiber power amplifier | Chiba Univ.@*Mio Koyama 1, Yuichi Tanaka 1, Masahito Okida 1, Katsuhiko Miyamoto 1, Takashige Omatsu 1 |
| 13 | Fast Response of ZnO Crystal for XFEL Scintillator | Osaka.Inst.of Laser Engineering 1,RIKEN XFEL Project Head Office ,Tohoku Univ. Inst.of Multidisciplinary Research for Advanced Materials 3,@Sakai Kohei 1,Shimizu Toshihiko 1,Raduban Molilou 1,Yamanoi Kohei 1,Estacio Elmer 1,Nakazato Tomoharu 1,*Sarukura Nobuhiko 1,Nagasono Mituru 2,Togashi Tadashi 2,Higashiya Atushi 2,Yabashi Makina 2,Ishikawa Tetuya 2,Ohashi Haruhiko 2,Kimura Hiroaki 2,Ehrentraut Dirk 3,Fukuda Tuguo 3 |
| ’ | 14 | Wavelength-Tunable Mid-Infrared 3-Κm-Waveband Light Source with Differential Frequency Generation in Intracavity system
| Aoyama Gakuin Univ. 1,NICT 2@*Fukuda Ryosuke 1,Naito Ryo 1,Yamamoto Naokatsu 2,Akahane Kouichi 2,Kawanishi Tetsuya 2,Sotobayashi Hideyuki 1 |
| ’ | 15 | 1.55Κm photorefractive wave-mixing by two-photon absorption in Rh:doped BaTiO3 | Tokyo Univ. of Agriculture and Technology 1,Chiba Univ. 2@Kohei Toyoda 1,Sachio Miyagi 2, Masahito Okida 2,Toshiyuki Watanabe 1, Takashige Omatsu 2 |
| 4.3 Laser Devices and Materials |
| March 18 9:00`17:45 |
| 18a-F - 1`11 |
| 1 | Development of Yb-Zeolite doped silica fiber with low photodarkening | ILE 1, Kinki University 2, Hamamatsu Photonics K.K. 3, Shin-Etsu Quartz Products Co, Ltd 4@Sugiyama Seiichi 1, 2, Ono Yusuke 1, 2, Murakami Motoichiro 1, 2, Kawakami Eisuke 1,2, Yoshida Minoru 2, Nakano Hitoshi 2, Fujimoto Yasushi 1, Maeda Junya 3, Kan Hirofumi 3, Sato Tatsuhiro 4 |
| 2 | Tunability of Cr4+:YAG Single Crystal Fiber Laser | NTT Photonics Labs. 1@*Ishibashi Shigeo 1,Naganuma Kazunori 1 |
| 3 | Wavelength Tuning of GaN Laser Diode pumped Pr3+ doped Fiber Laser | Keio Univ. 1, Central Glass Co. 2@Junichiro Kojou 1, Toshihiro Kamimura 1, Priyanka Agrawal 1, Tadanori Kubota 2, Hideyuki Okamoto 2, Fumihiko Kannari 1 |
| 4 | Visible Pr3+-doped fiber ring laser pumped by a GaN-LD | Central Glass Co.@*Hara Ikunari 1,Okamoto Hideyuki 1,Kasuga Ken 1,Kubota Yoshinori 1 |
| 5 | High power 2.8Κm tunable fiber laser assembled from an Er:ZBLAN glass fiber | ICR Kyoto Univ. 1,GSS Kyoto Univ. 2@Hirokane Mayu 1,2,Shigeki Tokita 1,2,Masaki Hashida 1,2,Shuji Sakabe 1,2 |
| | | Break 10:15`10:30 | |
| 6 | 167W, 1178nm Yb-doped Photonic Bandgap Fiber Amplifier | Inst. for Laser Science, Univ. Electro-Commun.1, NKT Photonics A/S2@Akira Shirakawa 1, Christina B. Olausson 1,2, Meishin Chen 1, Ken-ichi Ueda 1, Jens K. Lyngs? 2, Jes Broeng 2 |
| 7 | High efficiency, phase-locked all-fiber multi-core photonic crystal fiber laser by end sealing | Inst. for Laser Science, Univ. Electro-Commun.@*Tetsuya Kobayashi 1,Michio Matsumoto 1,Akira Shirakawa 1,Ken-ichi Ueda 1 |
| 8 | High efficiency, phase-locked all-fiber multi-core photonic crystal fiber laser by end sealing | Inst. for Laser Science, Univ. of Electro-Commun. 1@*Matsumoto Michio 1, Kobayashi Tetsuya 1, Shirakawa Akira 1, Ueda Ken-ichi 1 |
| 9 | High-Power Ultrafast Yb-doped Fiber Laser Systems | ILE Osaka Univ. 1, JST-CREST 2, ILT 3, RIKEN 4, U of Hyogo 5@Hidetsugu Yoshida 1,2, Hiroaki Furuse 3, Koji Tsubakimoto 1,2, Hisanori Fujita 1,2, Junji Kawanaka 1,2, Noriaki Miyanaga 1,2, Yutaka Nagata 2,4, Hiroo Kinoshita 2,5 |
| 10 | Development of High Averaged Power Ultra-fast Pulse Laser System | ILE Osaka Univ. 1, RIKEN 2, Univ. of Hyogo 3, JST-CREST 4@*Tsubakimoto Koji 1,4, Yoshida Hidetsugu 1,4, Fukamachi Ryo 1,4, Fujita Hisanori 1,4, Miyanaga Noriaki 1,4, Nagata Yutaka 2,4, Kinoshita Hiroo 3,4 |
| 11 | Fiber-MOPA system seeded by AO-Q-switched Nd:YVO4 laser | Tokai Univ. 1@*Masataka Hashimoto 1, Risa Obu 1, Masafumi Baba 1, Shigeru Yamaguti 1, Kazuyaku Tei 1, |
| | | Lunch 12:00`13:00 | |
| 18p-F - 1`18 |
| ’ | 1 | Development of an efficient short length Nd-doped silica fiber laser | ILE 1, Kinki Univ. 2, ILT 3, Hamamatsu Photonics K.K. 4@*Murakami1 Motoichiro 12, Ono Yusuke 12, Sugiyama Seiichi 12, Kawakami1 Eisuke 12, Fujimoto Yasushi 1, Yoshida Minoru 2, Nakano Hitoshi 2, Motokoshi Shinji 3, Matsuoka Shinichi 4, Maeda Junya 4, Kan Hirofumi 4 |
| ’ | 2 | Pico-second phase conjugate vanadate amplifier system based on a Te-doped tin thiohypodiphosphate | Chiba Univ. 1, ETH 2,@K. Nawata 1, T, Bach 2, M. Jazbinsek 2, T. Omatsu 1, P. Gunter 2 |
| 3 | Phase conjugate power amplifier system including dual side-pumped@vanadate amplifier
| Chiba Univ. 1@*K. Nawata 1, H. Kawawa 1, M. Ashihara 1, T. Omatsu 1 |
| 4 | Broadband picosecond MOPA system by using Nd:YVO4 and Nd:GdVO4 bounce amplifiers | Chiba Univ. 1,Hokkaido Univ. 2@*Okida Masahito 1,Hirose Tsubasa 1,Iwamatsu Kouki 1,Higuchi Mikio 2,Omatsu Takashige 1 |
| 5 | High repetition rate mid-IR generation using a diode-side-pumped vanadate pico-second bounce laser system | Chiba Univ. 1, RIKEN 2@*K. Miyamoto 1, Y. Maeda 1, Y. Morimoto 1, S. Ujita 1, H. Ito 2, T. Omatsu 1 |
| ’ | 6 | Zig-Zag Active-Mirror Laser with Cryogenic Yb:YAG | ILT 1, ILE Osaka Univ. 2, MHI 3@*Furuse Hiroaki 1, Kawanaka Junji 2, Miyanaga Noriaki 2, Fujita Masayuki 1, Saiki Taku 1, Imasaki Kazuo 1, Takeshita Kenji 3, Ishii Shinya 3, Izawa Yasukazu 1 |
| 7 | Development of liquid-cooled split-disk amplifier | ILE Osaka 1, Hamamatsu Photonics K.K. 2,@*Satoshi Ozawa 1,Hidetsugu Yoshida 1,Hisanori Fujita 1,Koji Tsubakimoto 1, Hiroyuki Shiraga 1,Ryo Yasuhara 2,Toshiyuki Kawashima 2,Hirofumi Kan 2 |
| 8 | Development of a short pulse diode-pumped Nd:YAG laser system for an OPCPA amplification
| JAEA 1@*Okada Hajime 1, Nakai Yoshiki 1, Kiriyama Hiromitsu 1, Tanaka Momoko 1, Ochi Yoshihiro 1,Sasao Hajime 1, Sugiyama Akira1
|
| ’ | 9 | Second harmonic generation of a 100-W, injection-locked Nd:YAG laser | Dept. of Advanced Materials Science, Univ. of Tokyo 1, Dept. of Applied Physics, Univ. of Tokyo 2@Ohmae Noriaki 1, Takayama Keigo 2, Moriwaki Shigenori 1,2, Mio Norikatsu 1,2 |
| | | Break 15:15`15:30 | |
| 10 | The concept design of ultrahigh-intensity laser system which harnessed optical parametric amplification -The detailed design which considered spectral broadening-
| Univ. of Fukui 1@*Hikaru Amino 1,Takashi Noga 1,Shouhei Kasakawa 1,Hideaki Niki 1,Tadashi Kanabe 1
|
| 11 | Estimation of Gain Bandwidth Restriction of Short Pulse Duration Based on Competition of Gain Saturation. | ILS UEC 1,JSPS Research Fellow 2@Tokurakawa Masaki 1,2, Shirakawa Akira 1, Ueda Ken-ichi 1
|
| 12 | Mode-locked Nd3+:Ba(Zr,Mg,Ta)O3 ceramic laser
| Inst. for Laser Science, Univ. of Electro-Communications 1, Russian Academy of Sciences 2, Murata Manufacturing Co., Ltd 3@*Hiroaki Kurokawa 1, Masaki Tokurakawa 1, Akira Shirakawa 1, Ken-ichi Ueda 1, Alexander Kaminskii 2, Satoshi Kuretake 3, Nobuhiko Tanaka 3, Yuji Kintaka 3, Keisuke Kageyama 3 |
| 13 | Mode-locked oscillator based on edge-pumped all-ceramic Yb:YAG microchip laser | Inst. for Molecular Science 1, Shizuoka Univ. 2, Sokendai 3@*Matsushita Tomonori 1, Sugita Atsushi 2, Kong Weipeng 3, Taira Takunori 1,3 |
| 14 | Characteristics of a side-pumped, Q-switched Nd:YLF laser at 1313nm | Tohoku Inst.Tech. 1, NiCT 2@*Terasaki Tomohiro 1, Sato Atsushi 1, Asai Kazuhiro 1, Ishii Shoken 2, Mizutani Kohei 2 |
| 15 | Q-switching of a GaN Laser Diode Pumped Pr:LiYF4 Laser | Keio Univ. 1@*Kojima Yosuke 1, Kojou Junichiro 1, Watanabe Yojiro 1, Agrawal Priyanka 1, Kamimura Toshihiro 1, Kannari Fumihiko 1 |
| 16 | Development of direct modulated green lasers | Shimadzu corporation@*Saikawa Jiro, Tojo Koji, Ido Yutaka |
| 17 | Wavelength-Stabilized LD for Diode-Pumped Solid-State Lasers | IMS 1@*Masaki Tsunekane 1,Takunori Taira 1 |
| 18 | Laser action of Nd3+-doped Photo-Thermo-Refractive Glass | Inst. Mol. Sci. 1, Optigrate 2, UCF 3@*Sato Yoichi 1, Taira Takunori 1, Smirnov Vadim 2, Glebova Larissa 2, Glebov Leonid 3 |
| 4.4 Ultrafast lasers and High Field Lasers |
| March 19 9:00`17:15 |
| 19a-F - 1`11 |
| 1 | Sub 70-fs pulse from Kerr-lens mode-locked Yb3+:(YGd2)Sc2(GaAl2)O12 ceramic laser | ILS UEC 1, Konoshima Chemical Co.Ltd. 2, Inst. of Crystallography, Russian Academy of Sciences 3, JSPS Research Fellow 4@*Tokurakawa Masaki 1,4, Kurokawa Hiroaki 1, Shirakawa Akira 1, Ueda Ken-ichi 1, Yagi Hideki 2, Yanagitani Takagimi 2, Alxander A. Kaminskii3 |
| 2 | Development of a diode-pumped Kerr-lens mode-locked Yb:YAG laser III | AIST@Sadao UEMURA and Kenji TORIZUKA |
| 3 | Wavelength control of a mode-locked fiber laser | Ritsumeikan Univ.@Masaki Hirano, Ryosuke Yotsutani, Taisuke Wada, Akihiro Morimoto |
| 4 | Fiber-Ring Laser Using Active Mode-Locking by Two Frequency Modulation | Ritsumeikan Univ. 1@*Ryosuke Yotsutani 1,Kazuki Kouchi 1,Masaki Hirano 1,Taisuke Wada 1,Akihiro Morimoto 1 |
| ’ | 5 | A New Ζ-cavity Fiber Laser Using Polarization-Maintaining Fiber | Osaka Univ. 1,AIST 2@*Senoo Yumiko 1,Nishizawa Norihiko 1,Sakakibara Youichi 2,Sumimura Kazuhiko 1,Itoga Emiko 2,Kataura Hiromichi 2,Itoh Kazuyoshi 1 |
| | | Break 10:15`10:30 | |
| 6 | Suppression of saturation in photodetection of a low repetition-rate fiber-based frequency comb by use of mode filtering | AIST 1, Tokyo Univ. of Sci. 2, Utsunomiya Univ. 3,@*Iwamoto Yutaka 1, 2, Norihiro Sakurakawa 2, Yoshio Hayasaki 3, Toyohiko Yatagai 3, Hajime Inaba 1, Kaoru Minoshima 1,2 |
| 7 | An All Fiber-based Optical Frequency Comb with Narrow Linewidth using a Waveguide Electro-Optic Modulator | Keio Univ. 1,AIST/NMIJ 2,Univ of Fukui 3@*Iwakuni Kana 12,Inaba Hajime 2,Nakajima Yoshiaki 23,Sasada Hiroyuki 2,Hong Feng-Lei 1 |
| ’ | 8 | Ultrashort Pulse Generation from cw Beam using Pulse Trapping and Amplification Phenomena | Osaka Univ. 1@*Shiraki Eiji 1, Nishizawa Norihiko 1, Itoh Kazuyoshi 1 |
| ’ | 9 | Time-frequency real-time imaging of ultrashort laser pulses with an echelon mirror | Yokohama National Univ. 1,Yokohama National Univ. IRC 2@*Sakaibara Hiroyuki 1,Katayama Ikufumi 2,Takeda Jun 1 |
| 10 | 1-Watt Average-Power 100-MHz Repetition-Rate 258-nm Femtosecond Ultraviolet Pulse Generation from an Ytterbium Fiber Amplifier | AIST 1, JST-CREST 2, ISSP 3@*Xiangyu Zhou 1,2, Dai Yoshitomi 1,2, Yohei Kobayashi 3, Kenji Torizuka 1,2 |
| 11 | Study on Sub-10-fs Pulse Generation from a Ti:sapphire Regenerative Amplifier System | AIST 1, SIT 2@*H. Takada 1, T. Ebine2, M. Kakehata1, K. Torizuka1, T. Homma2 |
| | | Lunch 12:00`13:00 | |
| 19p-F - 1`16 |
| £’ | 1 | Generation of 10-THz repetition-rate arbitrary optical waveform generation by line-by-line control of Raman sidebands | The University of Electro-Communications@Kanaka Raju Pandiri 1, Masayuki Katsuragawa 1 |
| ’ | 2 | Sub-10 fs Ultraviolet Laser based on Broadband Chirped-Pulse Four-Wave Mixing | Univ. of Electro-Communications 1, ICORP 2, National Chiao Tung Univ. 3, Osaka Univ. 4@*Kida Yuichiro 1,2, Liu Jun 1,2, Teramoto Takahiro 1,2, Kobayashi Takayoshi 1,2,3,4 |
| 3 | 15-fs multicolor laser pulses generation using cascaded four-wave mixing with chirped pulses incidence | Univ. of Electro-Communications 1, JST ICORP 2, National Chiao Tung Univ. 3, Osaka University 4@Kobayashi Takayoshi 1,2,3,4, Liu Jun 1,2 |
| 4 | Simultaneous spectral broadening and amplification of a laser pulse in a glass plate | Univ. of Electro-Communications 1, ICORP 2, NCTU 3, Osaksa Univ. 4@ Kobayashi Takayoshi 1,2,3,4, Liu Jun 1,2 |
| 5 | Pulse compression in gas-filled hollow fiber with circularly polarized femtosecond laser pulse
| Keio Unvi@Nemoto Hiroyuki,Ge Wang,Oishi Yu,Kannari Fumihiko |
| 6 | Development of a sub 15-fs Multi TW 100Hz laser system for intense high-order harmonic beam line: II | RIKEN 1, Univ. of Tokyo 2@Yasuo Nabekawa 1, A. Amani Eilanlou 1 2, Yusuke Furukawa 1, Eiji J. Takahashi 1, Katsumi Midorikawa 1 |
| 7 | Generation of high power, ultrashort optical pulses by A-NOPA | Hokkaido Univ. JST-CREST@Yamane Keisaku 1, Tanigawa Takashi 1, Sekikawa Taro 1,Yamashita Mikio 1 |
| 8 | Optimum Design of Noncollinear Optical Parametric Amplification under Two Photon Absorption | Hokkaido Univ. and JST-CREST 1, CIST 2@*Tanigawa Takashi 1, Yamane Keisaku 1, Karasawa Naoki 2, Yamashita Mikio 1 |
| | | Break 15:00`15:15 | |
| ’ | 9 | Fiber chirped-pulse amplification system using grism pairs for compensation of third-order dispersion
| JAEA 1, JST CREST 2@*Ogawa Kanade 1 2, Akahane Yutaka 1 2, Aoyama Makoto 1 2, Tsuji Koichi 1, Yamakawa Koichi 1 2 |
| ’ | 10 | Ultrabroadband polarization-vortex pulse generation without polarization dispersion | Hokkaido Uni.1@*Yu Tokizane 1, Kazuhiko Oka 1, Yasunori Toda 1, Ryuji Morita 1 |
| ’ | 11 | Precise, harmonic synchronization of two-color pulsed laser sources for stimulated Raman scattering microscopy | Osaka Univ. 1, JST-PRESTO 2, Kinki Univ. 3@Yasuyuki Ozeki 1,2, Yuma Kitagawa 1, Kazuhiko Sumimura 1, Norihiko Nishizawa 1, Wataru Umemura 1, Makiko Ishii 1, Shin'ichiro Kajiyama 3, Kiichi Fukui 1, Kazuyoshi Itoh 1 |
| 12 | Phase change induced by coherent phonon control in Ge2Sb2Te5 | Univ. of Tsukuba 1, CAN-FOR AIST 2@*Makino@Kotaro 1, Tominaga Junji 2, Hase Muneaki 1 |
| 13 | Observation of Coherent optical phonons in YBa2Cu3O7-Β by sub 10 femoto-second pulse laser | MSL Tokyo Tech. 1, NTT Basic Research Lab. 2@*Hiroshi Takahashi 1,2, Keiko Kato 2, Atsushi Ishizawa 2, Katsuya Oquri 2, Hidetoshi Nakano 2, Kazutaka G. Nakamura 1 |
| 14 | Coherent D-mode phonons in graphite | Yokohama National Univ. 1, Yokohama National Univ.IRC 2, Freie Universt?t Berlin 3, NIMS 4, NDA 5@Koga sho 1, Katayama Ikufumi 2, Takeda Jun 1, Shimada Toru 3, Kato Keiko 4, Hishita Shun-ichi 4, Fujita Daisuke 4, Kitajima Masahiro 5 |
| 15 | Effects of photo carriers on coherent phonons in metallic single-walled carbon | NTT Basic Res. Lab.@*Keiko Kato1, Atsushi Ishizawa1, Katsuya Oguri1, Hideki Gotoh1, Hidetoshi Nakano1 |
| 16 | Environment effects on coherent phonons in single-walled carbon nanotubes | NTT Basic Res. Lab.1@Keiko Kato 1, Daisuke Takagi 1, Yoshihiro Kobayashi 1, Hiroki Hibino1, Atsushi Ishizawa 1, Katsuya Oguri 1, Hideki Gotoh 1, Hidetoshi Nakano1 |
| 4.4 Ultrafast lasers and High Field Lasers |
| March 20 9:15`15:00 |
| 20a-F - 1`10 |
| 1 | Evaluation of Spatial and Temporal Characteristics of Pulse-Front-Tilt Compensator of High Harmonic Pulses | Hokkaido Univ. 1,Hokkaido Univ. 2,Hokkaido Univ. 3,Hokkaido Univ. 4,@*Motohiko Ito 1,Yoshimasa Kataoka 2,Mikio Yamashita 3, Taro Sekikawa 4 |
| 2 | Production of ionic coherence induced by ultrafast ionization | Kyoto Univ.@Nakajima Takashi |
| 3 | Attosecond Photoelectron SPIDER: energy-shear and reconstruction fidelity | Kyoto Univ. 1, JAEA2@Nakajima Takashi |
| £ | 4 | Modified Spectral Shearing Interferometry for Complete characterization of Arbitrarily Short Isolated Attosecond Pulses | Applied Physics Dept., Hokkaido Univ.1, JST-CREST 2@*Zhu Jiangfeng, Fang Shaobo, Chen Tao, Yamane Keisaku, and Yamashita Mikio |
| £ | 5 | Isolated Attosecond Pulse Generation by Monocycle Pumping with Single Electron Trajectory Selection | Hokkaido Univ. 1, Tokyo Univ. 2, Chitose Science Technology Inst. 3, CREST-JST. 4@*Fang Shao-bo 1,4, Tanigawa Takashi 1,4, Ishikawa Kenichi L. 2,4, Karasawa Naoki 3, Yamashita Mikio 1,4 |
| | | Break 10:30`10:45 | |
| 6 | The Time Grating: Quantum Trajctory Interferences in the Wavelength-Dependence of Above-Threshold Ionization | Univ. of Tokyo 1, Univ. of Buenos Aires 2, TU Wien 3@Kenichi L. Ishikawa 1, D. G. Arb? 2, K. Schiessl 3, E. Persson 3, J. Burgd?rfer 3 |
| 7 | Isolated sub-50-as pulse generation by direct optimization of two-color laser fields using the genetic algorithm | Univ. of Tokyo 1, Hokkaido Univ. 2, JST-CREST 3, Chitose Inst. of Sci. and Tech. 4@Kenichi L. Ishikawa 1,3, S. Fang 2,3, T. Tanigawa 2,3, N. Karasawa 4, M. Yamashita 2,3 |
| 8 | Periodical frequency modulation of high-order harmonics by a two-color laser field | RIKEN 1, Univ. of Tokyo 2@*A. Amani Eilanlou 1,2, Y. Nabekawa 1, K. L. Ishikawa 1, H. Takahashi 2, E. J. Takahashi 1, K. Midorikawa 1 |
| 9 | Duality between photoemission and photoabsorption and frequency up-conversion of high harmonics | RIKEN@*Kanai Tsuneto 1, Suda Akira 1, Midorikawa Katsumi 1 |
| £ | 10 | High Harmonic Generation in Underdense Relativistic Plasma | JAEA 1, GPI 2, Moscow Inst. Phys. Tech. 3, Prokhorov Inst. Phys. 4@A. S. Pirozhkov 1,M. Kando 1, T. Zh. Esirkepov 1, T. Kawachi 1, A. Sagisaka 1, *K. Kondo 1, T. Tajima 1, H. Daido 1, Y. Kato 1,2, S. V. Bulanov 1,3,4
|
| | | Lunch 12:00`13:00 | |
| 20p-F - 1`8 |
| ’ | 1 | High-Order Harmonic Generation from Aligned Molecules with 1300-nm and 800-nm Pulses | Grad. Sch. of Sci., The Univ. Tokyo 1@*Kosaku Kato 1,Shinichirou Minemoto 1,Hirofumi Sakai 1 |
| 2 | Photoelectron-photoion coincidence imaging for dissociative ionization of ethanol in intense UV laser fields
| JAEA 1, Keio Univ 2, Univ of Tokyo 3@*Tomoya Ikuta 1,2, Kouichi Hosaka 1, Ryuji Itakura 1, Hiroshi Akagi 1, Kaoru Yamanouchi 1,3, Fumihiko Kannari 2, Atsushi Yokoyama 1
|
| 3 | Temporal pulse compression of polychromatic laser-accelerated electron pulses | Inst. Chemical Res.@*Shigeki Tokita 1, Shunsuke Inoue 1, Toshihiko Nishoji 1, Kazuto Otani 1, Masaki Hashida 1, Shuji Sakabe 1 |
| 4 | Proton generation from a thin-foil target by using a high-intensity laser | JAEA 1, ILE Osaka Univ. 2, CRIEPI 3, Korea GIST 4@*Sagisaka Akito 1, Michiaki Mori 1, Alexander S. Pirozhkov 1, Akifumi Yogo 1, Koichi Ogura 1, Satoshi Orimo 1, Mamiko Nishiuchi 1, Motonobu Tampo 1, Hironao Sakaki 1, Toshihiko Hori 1, Hironori Sugiyama 1, Hiromitsu Kiriyama 1, Hajime Okada 1, Shuhei Kanazawa 1, Shuji Kondo 1, Takuya Shimomura 1, Yoshiki Nakai 1, Manabu Tanoue 1, Hajime Sasao 1, Daisuke Wakai 1, Humitaka Sasao 1, Akira Sugiyama 1, Hiroyuki Daido 1, Kiminori Kondo 1, Sergei V. Bulanov 1, Timur Zh. Esirkepov 1, Hideo Nagatomo 2, Yuji Oishi 3, Koshichi Nemoto 3, Il Woo Choi 4, Jongmin Lee 4 |
| 5 | Towards the Laser-driven proton accelerator for cancer therapy Benchmark test of the PARMILA code at the transport and irradiation test beam line
| JAEA 1, Kyoto Univ.2, Toshiba Corp.3@*Mamiko Nishiuchi1, Hironao Sakaki2, Toshihiko Hori2, Paul R. Bolton2, Koichi Ogura2, Akifumi Yogo2, Alexander S. Pirozhkov2, Akito Sagisaka2, Satoshi Orimo2, Michiaki Mori2, Hironori Sugiyama2, Hiromitsu Kiriyama, Motonobu Tampo2, Izuru Daito2, Masaru Okada2, Shuhei Kanazawa2, Manabu Tanoue2 Takuya Shimomura2 Yoshitomo Nakai2, Hajime Sasao2, Daisuke Wakai2, Kiminori Kondo2, Hiroyuki Daido2, Shunichi Kawanishi2, Hikaru Souda2, Akira Noda2, Yasushi Iseki2, Teruyasu Nagafuchi2 , Kazunao Maeda2, Katsushi Hanawa2, Ken Yoshiyuki2 |
| 6 | Reforming on surface of metallic material for fuel cell by using high intensity laser drive proton beam | JAEA PMRC 1, JAEA Takasaki 2, JAEA Tsuruga 3, Tokai Univ.4@*Satoshi Orimo, Hiroshi Abe, Hiroyuki Daido, Mamiko Nishiuchi, Michiaki Mori, Koichi Ogura, Alexander Pirozhkov, Hironori Kiriyama, Kiminori Kondo |
| 7 | Activity produced by laser induced proton beams | Kansai Photo Science Institute, JAEA,@*Ogura Koichi 1, |
| 8 | Development of femtosecond X-ray diffraction ? | Kyoto Univ. 1, JST-CREST 2@*Hada Masaki 1, Matsuo Jiro 1,2 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 17 9:00`16:15 |
| 17a-M - 1`11 |
| 1 | Near-Field Pattern in Broad-Area Semiconductor Lasers Subjected to Optical Injection | Shizuoka Univ. 1@*Satoshi Takimoto 1,Rui Shogenji 1,Junji Ohtsubo 1 |
| 2 | Dynamics in Broad-Area Semiconductor Lasers with Short Optical Feedback | Shizuoka Univ. 1@*Takeda Akira 1, Shougenji Rui 1, Ohtsubo Junji 1 |
| 3 | Dynamics in Chaotic Semiconductor Lasers with Polarization-Rotated Optical Feedback | Shizuoka Univ. 1@*Kimura Keizo 1, Shogenji Rui 1, Ohtsubo Junji 1 |
| 4 | Gain Model and Optical Injection Dynamics of Vertical-Cavity Surface-Emitting Semiconductor Lasers | Shizuoka Univ. 1@*Takayama Seiji 1, Shogenji Rui 1, Ohtsubo junji 1 |
| 5 | The 3rd harmonic generation by fiber- MOPA system
| Department of Physics, Tokai Univ.@*Baba Masafumi 1CYamaguchi Shigeru 1CTei Kazuyoku 1 |
| | | Break 10:15`10:30 | |
| 6 | 7W Average Power UV Generation at 0.266Κm in SBBO | Chitose Inst. Science and Tech.@Kiyoshi Kato, Nobuhiro Umemura |
| 7 | Sellmeier equations of GaSe between 0.6Κm and 6mm | Chitose Inst. of Science and Technology 1@*Osakabe Asuka 1, Kato Kiyoshi 1 |
| ’ | 8 | Dielectric Dispersion of LaAlO3 at THz Frequencies | Waseda Univ. 1, NICT 2@*Okami Shimpei 1, Ohki Yoshimichi 1, Mizuno Maya 2, Fukunaga Kaori 2 |
| ’ | 9 | Effect of Crystallinity on Dielectric Dispersion of Polylactide at Terahertz Frequencies | Waseda Univ. 1, NICT 2@*Noriazu Fuse 1,2, Ryo Sato 1, Maya Mizuno 2, Kaori Fukunaga 2, Koichi Itoh 1, Yoshimichi Ohki 1 |
| ’ | 10 | pH Mapping of a Slice of Stem using Terahertz Chemical Microscope | Okayama Univ. 1, ILE, Osaka Univ. 2@Kondo Yosuke 1, Minami Yuji 1, Kiwa Toshihiko 1, Kawayama Iwao 2, Tonouchi Masayoshi 2, Tsukada Keiji 1 |
| ’ | 11 | Observation of Anharmonicity in Quantum Paraelectric SrTiO3 with Strong THz radiation | Yokohama National Univ. 1,2, Osaka Univ. 3,5, PRESTO JST 4, Kyoto Univ. 6,7@Ikufumi Katayama 1, Hiroshi Aoki 2, Jun Takeda 2, Hiroshi Shimosato 3, Masaaki Ashida 3,4, Ryuhei Kinjo 5, Iwao Kawayama 5, Masayoshi Tonouchi 5, Masaya Nagai 6, Koichiro Tanaka 6,7 |
| | | Lunch 12:00`13:00 | |
| 17p-M - 1`12 |
| 1 | Observation of THz spectrum of organic molecular conductor and its construction of single crystal. | Tohoku Univ. 1@*Takahiro Oohashi 1, Tadao Tanabe 1, Yutaka Oyama 1 |
| 2 | Terahertz spectroscopy for the orientational evaluation of deformed polyethylene | Tohoku Univ. 1, Spectris Co., Ltd. 2@*Watanabe Kenta 1, Tanabe Tadao 1. Oyama Yutaka 1, Seo Koichi 1,2 |
| 3 | Higher Order Conformation of Poly(3-hydroxybutyrate) Studied by Terahertz Time-Domain Spectroscopy | RIKEN 1, Kwansei Gakuin Univ. 2, Miyagi Univ. of Education 3, P&G 4@*Hoshina Hiromichi 1, Morisawa Yusuke 2, Sato Harumi 2, Kamiya Akitsugu 1,3, Noda Isao 3, Ozaki Yukihiro 2, Otani Chiko 1 |
| 4 | Electric al Conductivity of PEDOT:PSS Thin Films Measured by THz Time Domain Spectroscopy | RIKEN ASI 1, Tokyo Electron 2, Univ. Yamanashi 3@Yamashita Masatsugu 1, Sato Hiroshi 2, Masahiro Shimizu 2, Okuzaki Hidenori 3, Otani Chiko 1 |
| £ | 5 | The study of water concentration measurement in tissues with terahertz-wave parametric source | RIKEN 1,Spectra Design Ltd., 2 Tohoku Univ. 3@*Wang Yuye 1,Ikari Tomofumi 2,Minamide Hiroaki 1,Tang Ming 1,Notake Takashi 1,Ito Hiromasa 1,3 |
| 6 | THz Sensing of Protein -Sugar Chain Binding | Tokyo Univ 1@*Takayuki Hasebe 1, Yuki Yamada 1, Hitoshi Tabata 1 |
| | | Break 14:30`14:45 | |
| 7 | Characterization of Paper using Terahertz Time Domain Spectroscopy | Univ. of Tsukuba, College of Engineering Sciences 1,Univ. of Tsukuba, Inst. of Applied Physics 2@*Kumon Hikaru 1,Tamazumi Hideaki 2,Hattori Toshiaki 2 |
| 8 | Study on Dielectric Constants of Gas Hydrates at Terahertz Frequency | ILE Osaka Univ. 1@*Kei Takeya 1, Iwao Kawayama 1, Hironaru Murakami 1, Masayoshi Tonouchi 1 |
| 9 | Analysis of Impurity added Water using Terahertz Time-Domain Spectroscopy? | Ibaraki Univ. 1,Osaka Univ. 2@Takayama Koyuru 1,Yamauchi Satoshi 1, Yoh Imai 1,Tonouchi Masayoshi 2 |
| £ | 10 | Conductivity type inversion and carrier compensation of Ge by transition metal impurity doping | Tohoku Univ.@*Sundararajan Balasekaran 1,Tadao Tanabe 1,Akio Takei 1,Yutaka Oyama 1 |
| £ | 11 | Terahertz transmission characteristics of Ge | Tohoku Univ.@*Sundararajan Balasekaran 1,Tadao Tanabe 1,Kaori Nakajima 1,Yutaka Oyama 1 |
| 12 | Terahertz Photoconductivity of a Single-Layer Graphene | RIKEN 1, IIS Tokyo Univ. 2@Kawano Yukio 1, Masubuchi Satoru 2, Ishibashi Koji 1, Machida Tomoki 2 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 18 9:00`12:00 |
| 18a-M - 1`11 |
| 1 | Temporal profile of the sum-frequency and second-harmonic generation from the (113)B GaAs/AlAs coupled multilayer cavity using 2 pulse excitation | Tokushima Univ. 1 @*Ken Morita 1, Fumiya, Tanaka 1, Tomoya Takahashi 1, Toshikazu Takimoto 1, Takahiro Kitada 1, Toshiro Isu 1
|
| ’ | 2 | Nonlinear Terahertz Spectroscopy of ZnSe/ZnMgSSe MQWs | iCeMS, Kyoto Univ. 1, CREST-JST 2, Dep. of Physics, Kyoto Univ. 3,@*Hirori Hideki 1,2, Nagai Masaya 3, Tanaka Koichiro 1,2,3 |
| ’ | 3 | Control of the TM mode in the terahertz range using a simple waveguide structure | IIS and INQIE, Univ. of Tokyo 1@*Y. Sakasegawa 1, T. Ihara 1, and K. Hirakawa 1 |
| 4 | Direct Frequency Modulation of Resonant Tunneling Diode Oscillator and Its Detection with InP Schottky Barrier Diode | Tokyo Tech. 1, NICT. 2@Karashima Koichi 1, Shiraishi Masato 1, Suzuki Safumi 1, Asada Masahiro 1, Sekine Norihiko 2, Hosako Iwao 2 |
| 5 | Increase of Fundamental Oscillation Frequency in Resonant Tunneling Diode with Thin Barrier Structure for Reduction of Tunneling Time | Tokyo Tech. 1, NTT Photonics Lab. 2@*Suzuki Safumi 1, Teranishi Atsushi 1, Asada Masahiro 1, Sugiyama Hiroki 2, Yokoyama Haruki 2 |
| | | Break 10:15`10:30 | |
| 6 | Frequency stabilization of a THz-QCL by using an HEB mixer (II) | U. Tokyo 1, NICT 2, Nagoya U. 3, U. Tsukuba 4@*S. Shiba 1,2, Y. Irimajiri 2, T. Koyama 3,2, T. Yamakura 4, H. Maezawa 3, N. Sekine 2, I. Hosako 2, S. Yamamoto 1 |
| 7 | Emission Characteristics of High-Tc Superconducting Terahertz Emitter | University of Tsukuba 1@*Minami@Hidetoshi 1, Orita Naoki 1, Koike Takashi 1, Yamamoto Takashi 1, Yamaki Kazuhiro 1, Tsujimoto Manabu 1, Deguchi Kouta 1, Kashiwagi Takanari 1, Kadowaki Kazuo 1
|
| 8 | Model of terahertz wave emission of intrinsic Josephson plasma from the edge of device | RIST 1, Univ. of Tukuba 2@Mikio Iizuka 1, Hisashi Nakamura 1, Masashi Tachiki 2 |
| 9 | Carrier lifetime measurement in a blue InGaN laser diode by optical pulse injection | Tohoku Univ. 1@*Aya Sato 1, Kyosuke Saito 1, Hiroyuki Yokoyama 1 |
| 10 | Lightly stressed Gallium-doped Germanium terahertz photoconductor | Shizuoka Univ.@*Aoki Makoto 1, Mochizuki Kento 1, Tripathi Saroj 1, Hiromoto Norihisa 1 |
| 11 | THz detection of the Bow-tie antenna integrated Single-Wall Carbon Nanotube Quantum Dot | RIKEN 1, AIST 2, Tokyo Metropolitan Univ 3,@*Morimoto Takahiro 1, Kawano Yukio 1, Mori Takahiro 2, Tsuruoka Yasuhiro 3, Achiba Yohji 3, Ishibashi Koji 1 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| March 19 9:00`17:30 |
| 19a-L - 1`11 |
| 1 | Anomaly of THz propagation through a metal mesh filter depending on incidence angle | Univ. of Tokyo 1, Univ. of Oxford 2@Yuki Yamada 1, Takayuki Hasebe 1, Sonia Contra 2, *Hitoshi Tabata 1 |
| 2 | Band Filter using Subwavelength Structure in the Terahertz Region | RIKEN 1, Ricoh 2, Kyoto Univ. 3, Nagya Univ. 4@*Shin'ichiro Hayashi 1, Toshiyuki Iseki 2, Hideaki Hirai 2, Koji Sakai 2, Yuichi Ogawa 3, and Kodo Kawase 1,4 |
| ’ | 3 | Development and Evaluation of Terahertz Wave Surface Control Device | Okayama Univ. 1@*Beppu Keiji 1,Sugimoto Takeshi 1,Kiwa Toshihiko 1,Tsukada Keiji 1 |
| ’ | 4 | Prism-coupled Cherenkov phase-matched terahertz wave generation using DAST crystal | Nagoya Univ. 1, RIKEN 2, Arkray Inc. 3@*Takayuki Shibuya 1,2, Koji Suizu 1, Hirohisa Uchida 3, Kodo Kawase 1,2 |
| 5 | Electric Field Detection of Terahertz Coherent Synchrotron Radiation | Yokohama National Univ. 1, Osaka Univ. 2, UVSOR 3, SOKENDAI 4, KEK 5, Nagoya Univ. 6, PRESTO JST 7@*Ikufumi Katayama 1, Hiroshi Shimosato 2, Michitaka Bito 2, Kei Furusawa 2, Masahiro Adachi 3,4, Miho Shimada 5, Heishun Zen 3,4, Shin-ichi Kimura 3,4, Naoto Yamamoto 6, Masahito Hosaka 6, Masahiro Katoh 3,4, Masaaki Ashida 2,7 |
| | | Break 10:15`10:30 | |
| ’ | 6 | THz radiation characteristics from InAs epitaxial thin films grown on a GaAs substrate | NMRC Osaka Inst. of Tech. 1, Inst. of Laser Energy, Osaka Univ. 2@*Ishibashi Yutaro 1, Umino Shinya 1, Takeya Kei 2, Maemoto Toshihiko 1, Sasa Shigehiko 1, Inoue Masataka 1, Tonouchi Masayoshi 2 |
| 7 | Intense terahertz emission from surface-illuminated GaAs grown on Si(100) and Si(111) substrates. | Osaka Univ. Inst. of Laser Engineering 1, National Inst. of Physics Univ. of the Philippines 2@Takashi Yoshioka 1,Elmer Estacio 1,Satoru Takatori 1,Minh Hong Pham 1,Marilou Cadatal Raduban 1,Tomoharu Nakazato 1,Toshihiko Shimizu 1,*Nobuhiko Sarukura 1,John Vincent Misa 2,Rafael Jaculbia 2,Michael Defensor 2,Armando Somintac 2,Arnel Salvador 2 |
| £ | 8 |
1.55 Κm Laser Excitation on Semiconductor Surface for Terahertz Emission | University of Fukui@Que Christopher,Nakajima Hidekazu,Tani Masahiko |
| ’ | 9 | Observation of Coherent THz Emission in Optically Pumped Epitaxial Graphene Heterostructures
| Tohoku Univ.1, Univ. of Aizu 2, JST-CREST 3@*Hiromi Karasawa 1, Tsuneyoshi Komori 1, Takayuki Watanabe 1, Maki Suemitsu 1,3, Victor Ryzhii 2,3, Taiichi Otsuji 1,3 |
| 10 | Widely tunable, phase-locked CW-THz radiation based on photomixing of two optical frequency synthesizers (II) `Improvement of absolute frequency precision and extension of continuous tuning range` | AIST 1, Tokyo Univ. of Sci. 2, Osaka Univ. 3,@*Hisanari Takahashi 1, 2, Takeshi Yasui 3, Kohji Kawamoto 3, Yutaka Iwamoto 1, 2, Kaoru Arai 1, 2, Hajime Inaba 1, Kaoru Minoshima 1, 2 |
| £ | 11 | Tunable Terahertz-Wave Generation using Dual-Phase Matched Single-KTP-based OPO and DAST Crystals | RIKEN Sendai 1, Department of Physics, Tohoku University 2, Graduate school of Engineering, Tohoku University 3@Ming Tang1, Hiroaki Minamide1,Yuye Wang1, Takashi Notake1, and Hiromasa Ito1 |
| | | Lunch 12:00`13:00 | |
| 19p-L - 1`17 |
| 1 | Optimization of the electrode separation in the stripline type photoconduction antennas | Hamamatsu Photonics 1@* Kuroyanagi Kazuyoshi 1, Nakajima Kazutoshi 1, Kan Hirofumi 1 |
| ’ | 2 | Fabrication of Photoconductive Antennas Using Super-Fine Inkjet Technology | Inst. of Laser Eng., Osaka Univ. 1, SIJTechnology 2@*Kawabata Taku 1, Keisuke Takano 1, Kazuhiro Murata 2, Masanori Hangyo 1 |
| ’ | 3 | Terahertz Tomography System Using InGaAs Photoconductive Device | Canon Inc. 1, Nagoya Univ. 2@*Kajiki Kousuke 1, Shioda Michinori 1, Itsuji Takeaki 1, Kawase Kodo 2, Ouchi Toshihiko 1 |
| ’ | 4 | Multichip Operation of Plasmon-Resonant Microchip Emitter for Broadband Terahertz Spectroscopic Measurement | RIEC Tohoku Univ. 1@*Watanabe Takayuki 1, Komori Tsuneyoshi 1, Suemitsu Tetsuya 1, Otsuji Taiichi 1 |
| 5 | Stability Improvement of broadband THz spectrum using rapid scanning system | NICT@*Junichi Hamazaki, Isao Morohashi, Shingo Saito, and Iwao Hosako |
| ’ | 6 |
Optical-fiber-based,asynchronous optical sampling THz-TDS(III) | Osaka Univ. 1,AIST 2@*M Nose 1,K Kawamoto 1,A Ihara 1,2,T Yasui 1,H Inaba 2,K Minoshima 2,Y Takahashi 1,M Yoshimura 1,Y Mori 1,M Tonouchi 1,T Araki 1 |
| ’ | 7 | Development of fast THz-TDS system based on new asynchronous optical sampling method | FIR-FU 1, Shinshu Univ. 2,Aispec 3@Furuya Takashi 1,Horita Kazuki 1,Yamamoto Kohji 1,Miyamaru Fumiaki 2,Nishizawa Seiji 2,3,Tani Masahiko 1 |
| 8 | Optimization of DFG-THz radiation source by using an organic nonlinear crystal BNA | RIKEN ASI. 1, Tohoku Univ. Dept of Eng. 2, Chiba Univ. 3, Tohoku Univ. Dept of Sci. 4, Osaka City Univ. 5@*Takashi Notake 1, Ming Tang 1, Yuye Wang 1, Hiroaki Minamide 1, Hiromasa Ito 1,2, Katsuhiko Miyamoto 1,3, Seigo Ohno 1,4, Takuto Yokoe 5, Hideki Hashimoto 5 |
| | | Break 15:00`15:15 | |
| 9 | Simulation of THz Radiation for LSI Failure Analysis Using Laser THz Emission Microscope (II) | Gra. Sch. Information Science and Technology Osaka Univ. 1, RIKEN 2, Hamamatsu Photonics 3, Inst. Laser Engineering Osaka Univ. 4@*Yoshihiro Midoh 1, Masatsugu Yamashita 2, Toru Matsumoto 3, Masayoshi Tonouchi 4, Kiyoshi Nikawa 1, Koji Nakamae 1 |
| 10 | Terahertz-wave imaging using hollow optical fiber | Tohoku Univ.@*Tsunokawa Yoshinori, Katagiri Takashi, Yuji Matsuura |
| 11 | Observation of Photoconductive Antenna using Pump-Probe Laser Terahertz Emission Microscope | Osaka Univ. 1@Fujiwara Shogo |
| 12 | Development of Real-Time THz Near-Field Microscope | iCeMS, Kytoto Univ. 1, CREST-JST 2, Olympus Corp. 3@*Hirori hideki 1,2, Doi Atsushi 3, Tanaka Koichiro 1,2 |
| 13 | Wide range THz spectroscopy by GaP CW-THz Signal Generator | Sophia Univ. SRI 1, Tohoku Univ. 2@Jun-ichi Nishizawa 1, *Tetsuo Sasaki 1, Tadao Tanabe 2 |
| 14 | Development of a single pixel THz emitter for scanning laser THz imaging system with 1.56Κm femtosecond fiber laser
| Inst. of Laser Engineering Osaka Univ. 1@*Kazunori Serita 1,Mizuno Shori 1,Murakami Hironaru 1,Kawayama Iwao 1,Tonouchi Masayoshi 1 |
| 15 | Evaluation of standard deviation in phase and real refractive index measured with terahertz time-domain spectroscopy (THz-TDS) | Shizuoka Univ. 1, NICT 2, Nippon Mining and Metals Co. Ltd 3@Saroj R. Tripathi 1, Makoto Aoki 1 Kento Mochizuki 1 Iwao Hosako 2 Toshiaki Asahi 3 *Norihisa Hiromoto 1 |
| £ | 16 | Nonresonant detection of terahertz radiation in dual grating gate plasmon-resonant structure using InGaP/InGaAs/GaAs material systems | RIEC-Tohoku Univ. 1, GES-Montpellier II Univ. 2@Amine El Moutaouakil 1, Tsuneyoshi Komori 1, Tetsuya Suemitsu 1, Taiichi Otsuji 1, Hadley Videlier 2, Stephane Boubanga-Tombet 2, Dominique Coquillat 2, Wojciech Knap 2 |
| 17 | Random error in intensity spectrum measured with THz-TDS -Relation to the intensity variation of fs-laser- | Shizuoka Univ. 1@*Masanori Takeda 1, Kento Mochizuki 1, Tripathi R. Saroj 1, Makoto Aoki 1, Norihisa Hiromoto 1 |
| 4.6 Laser Spectroscopy and Instrumentation |
| March 17 9:30`16:45 |
| 17a-L - 1`9 |
| 1 | Light source module of LED lidar | Chiba Univ. 1@*Koyama Moriaki 1,Shiina Tatsuo 1 |
| 2 | Measurement and evaluation of compact Raman lidar for hydrogen detection | Chiba Univ.Tech.1, Chiba Univ.2, Chiba Inst.Tech.3, CRIEPI.4, Shikoku Research Inst.5@*Noguchi Yutarou 1, Shiina Tatsuo 2, Miya Hiroaki 2, Noguchi Kazuo 3, Hukuchi Tetsuo 4, Ninomiya Hideki 5, Asahi Ippei 5, Sugimoto Sachiyo 5, Shimamoto Yuzou 5 |
| 3 | Polarization measurement of atmosphere with high-resolution polarization lidar | Chiba Univ. 1, Chiba Inst. Tech. 2, CRIEPI 3@*Tatsuo Shiina 1, Dai Umaki 2, Kazuo Noguchi 2, Tetsuo Fukuchi 3 |
| 4 | Long-term low-altitude atmosphere measurement by In-line typed Micro Pulse Lidar | Chiba Univ. 1@*Nakago Atsushi 1, Shiina tatsuo 1 |
| 5 | Development of a laser for a transmitter of 1.6Κm CO2 DIAL | Tokyo Metoropolitan Uinv.,1@*Takemoto Kazuhiro 1,Nagasawa Chikao 1,Shibata Yasukuni 1,Abo Makoto 1 |
| 6 | Study on a Daytime Measurement of CO2 by Direct Detection 1.6?m DIAL | Tokyo Metropolitan Univ.1, Meteorological Inst.2@*Shibata Yasukuni 1, Nagasawa Chikao 1, Abo Makoto 1, Tomohiro Nagai2 |
| 7 | Development of Mid-Infrared Difference-Frequency Source with Near-Infrared Semiconductor Lasers and Application to Measurement of Isotopic Ratio 12CH3D/12CH4 | Keio Univ. 1, Tokyo Inst. of Tech. 2, JST 3@Teshima Hiroaki 1,3, Tsuji Kiyoshi 2,3, Yoshida Naohiro 2,3, Sasada Hiroyuki 1,3 |
| 8 | Measurement of CO2 Temperature using DFG (Difference Frequency Generation) of 2.7Κm band | Toukai Univ. 1@*Yagishita Hiroki 1,Nozue Hirokazu 1,Yasuda Takashi 1,Tei Kazuyoku 1,Yamaguti Shigeru 1 |
| 9 |
High sensitivity measuring method of gas concentration using mid-infrared quantum cascade laser II | Center for Atomic and Molecular Technologies, Graduate School of Engineering, Osaka Univ. 1@*Takayoshi Yumii 1,Takashi Yoshida 1,Noriaki Kimura 1 |
| | | Lunch 11:45`13:00 | |
| 17p-L - 1`14 |
| ’ | 1 | Differential Optical Absorption Spectroscopy (DOAS) Measurements of Atmospheric CO2 Using a Coherent White Light Continuum | Inst. for Laser Tech. 1, Inst. Laser Eng., Osaka Univ. 2@*Somekawa Toshihiro 1,Fujita Masayuki 12 |
| 2 | Ultrafast Photoisomerization Quantum Control of Azobenzene Derivative Having Long-Wavelength Absorption Spectrum | Hokkaido Univ. 1, JST-CREST 2, Nagoya Univ. 3@*Yamaguchi Atsushi 1,2, Nakagawa Naoya 1,2, Igarashi Kazumasa 1,2, Chen Tao 1,2, Fujii Taiga 2,3, Asanuma Hiroyuki 2,3, Yamashita Mikio 1,2
|
| £ | 3 | Femtosecond Photoisomerization Study on Azobenzene bound DNA | Hokkaido Univ. 1, Nagoya Univ. 2, Xifan Jiaotong Univ. 3, CREST-JST 4,@Tao Chen1,3,4, Kazumasa Igarashi1,4, Atsushi Yamaguchi1,4, Naoya Nakagawa1,4, Keisaku Yamane1,4, Taiga Fujii2,4, Hiroyuki Asanuma2,4, and Mikio Yamashita1,4 |
| 4 | Reaction Control on Photoisomerization of Cyanine dye by two Pulse-Pumping | Molec.Photosci.Res.Center,Kobe Univ. 1,Org.Adv.Sci and Tech,Kobe Univ. 2@ *Furuta Kouichi 1,Fuyuki Masanori 2,Wada Akihide 1 |
| 5 | Broadband Coherent anti-Stokes Raman Scattering Microscopic Spectroscopy Using the Soliton Quasi-Supercontinuum Light Source | Chitose Institute Science and Technology 1@*Tada Kazuhiro 1, Karasawa Naoki 1 |
| 6 | Observation of the Photodestruction Process on the Glass Surface Using Pump Probe Method | Univ. of Tokyo 1, Sigma Koki Co. 2, Univ. of Tokushima 3@Nomura Wataru 1, Kawazoe Tadashi 1, Yatsui Takashi 1, Tabata Yoshinori 2, Hirata Kazuya 2, Haraguchi Masanobu 3, Ohtsu Motoichi 1 |
| 7 | Hydrogen Analysis in Zircaloy-4 by Using Laser-Induced Breakdown Spectroscopy at Low Pressure of Helium | Graduate School of Engineering, Univ. of Fukui 1,Research Institute of Nuclear Engineering, Univ. of Fukui 2,Faculty of Education and Regional Studies, Univ. of Fukui 3@Nakamura Takayoshi 1,Sarai Hiroki 1,Takegoshi Atsushi 1,Okura Ryuhei 1,Aoki Yusuke 1,Niki Hideaki 1,Fukumoto Kenichi 2,Kagawa Kiichiro 3 |
| 8 | Measurement of number density of water droplets in aerosol by laser-induced breakdown | PRI-AIST@Hidehiko yashiro, Fumio Sasaki, Masayuki Kakehata |
| | | Break 15:00`15:15 | |
| 9 | Distortion in the Ultraviolet Photothermal Image Measured with Reflection Objective | Kyushu Univ. 1@*Fujii Noriyuki 1, Harata Akira 1 |
| 10 | Laser isotope separation of calcium by radiation pressure(2) | University of Fukui 1@*Matsuaga Naoshi 1, Ohkubo Yuhki 1, Sengoku Takahiro 1, Niki Hideaki 1 |
| 11 | Coherent light source at 230nm for observing indium ions | NICT 1, JST-CREST 2@*Kazuhiro Hayasaka 1,2 |
| 12 | Zeeman spectroscopy of Rb atoms in evanescent optical fields | Tokyo Univ. of Agriculture and Technology@*Kazuyuki Muroo, Takeshi Saito, Yoshitaka Takubo |
| 13 | Comparison of periodic arrays between convex and concave nanostructures for SERS template | School of Integrated Design Engineering, Keio Univ.@*Akira Zenidaka, Yuto Tanaka, Tomoya Miyanishi, Mitsuhiro Terakawa, Minoru Obara |
| 14 | Structure measurement of flowering petal with OCT system | Chiba Univ.@*Risa Yamashita , Tatsuo Shiina |
| 4.7 Laser Processing |
| March 17 9:00`16:45 |
| 17a-E - 1`11 |
| 1 | Nanostructure formation process on semiconductor surface with femtosecond laser pulses | Institute of Advanced Energy, Kyoto University 1@*Godai Miyaji 1,Junya Fujita 1,Ravi Bhushan 1,Kenzo Miyazaki1 |
| 2 | Nano periodic structures on eutectic Al-Si alloys by femtosecond laser ablation | School of Sci. and Eng., Kinki Univ. 1,Inst. for Laser Tech. 2,Inst. Laser Eng., Osaka Univ. 3,KYB 4@*Takumi Ozaki 1,Toshihiro Somekawa 2,Masayuki Fujita 2,3,Minoru Yoshida 1,Takuya Nakase 4,Takashi Kobayashi 4 |
| 3 | Improvement of spatial resolution in two-photon polymerization by using photoinitiator with high initiating efficiency | RIKEN 1, JST PRESTO 2@*Takeyasu Nobuyuki 1, Tanaka Takuo 1,2, Kawata Satoshi 1 |
| 4 | The effect of the interference of two laser-induced stress waves on the structural change inside MgO crystal | Kyoto Univ. ICC 1, Kyoto Univ. 2@*Takaya Tochio 2, Masaaki Sakakura 1, Shingo Kanehira 1, Yasuhiko Shimotsuma 1, Kiyotaka Miura 2, Kazuyuki Hirao 2 |
| 5 | Pulse duration dependent of filamentation induced by irradiation of femtosecond laser beam in silica glass | RIES-Hokkaido Univ. 1, PRESTO-JST 2@*Hidenori Asahi 1, Quan Sun 1, Yoshiaki Nishijima 1, Naoki Murazawa 1, Kosei Ueno 1, 2, Hiroaki Misawa 1 |
| £ | 6 | Acoustic diagnose of femtosecond laser filamentation in optical mediums | RIES-Hokkaido Univ. 1, RIE-Shizuoka Univ. 2@*Quan Sun 1, Vygantas Mizeikis 2, Naoki Murazawa 1, Kosei Ueno 1, Hiroaki Misawa 1 |
| | | Break 10:30`10:45 | |
| 7 | Uniform Nanohole Patterning with Near-Field of Two-Dimensional Gold Nanoparticle Array Generated by Femtosecond Laser
| Keio Univ. 1@*Tomoya Miyanishi 1, Yuto Tanaka 1, Mitsuhiro Terakawa 1, Minoru Obara 1 |
| 8 | Effect of target structure on interfering femtosecond laser processing III | Institute of Laser Engineering Osaka Univ.@*Hiromoto Takuya 1,Nakata Yoshiki 1 ,Miyanaga Noriaki 1 |
| 9 | Fabrication of periodical high-density nano structure on GaN substrate by wet chemical assisted femtosecond laser ablation | Tokyo Denki Univ. 1, RIKEN. 2@*Ito Takuma 12, Nakashima Seisuke 2, Sugioka Koji 12, Takai Hiroshi 1, Midorikawa Katsumi 2 |
| 10 | Laser micromachining of CFRP by ultra-short pulse lasers | Inst. for Laser Technology 1, Inst. of Laser Engineering Osaka Univ. 2, Industrial Tech. Center of Okayama Pref. 3, Laserx Co. Ltd. 4@*Masayuki Fujita 1,2, Toshihiro Somekawa 1, Noriaki Miyanaga 2, Yutaka Mitooka 3, Kazuhisa Mikame 4
|
| £ | 11 | Direct laser writing of photonic micro-structures in lithium niobate | Shizuoka Univ.1, JST-CREST 2@Vygantas Mizeikis 1, Wataru Inami 1,2, Yoshimasa kawata 1,2 |
| | | Lunch 12:00`13:00 | |
| 17p-E - 1`14 |
| 1 | Preparation of Tilted Deep Trenches by Laser-Induced Backside Wet Etching (3) | AIST PRI@Sato Tadatake, Kurosaki Ryozo, Kawaguchi Yoshizo, Narazaki Aiko, Niino Hiroyuki |
| 2 | Deep Trenches of Borosilicate Glass by Laser-Induced Backside Wet Etching | AIST-PRI 1@*Hiroyuki Niino 1, Tadatake Sato 1, Ryozo Kurosaki 1, Yoshizo Kawaguchi 1, Aiko Narazaki 1 |
| 3 | Laser-induced breakdown spectroscopy of a solid target in water with micrometer resolution | Kyoto Univ. Inst. Advanced Energy 1@*Yoshitaka Uematsu 1, Tetsuo Sakka 1, Kazuhiro Fukami 1, Yukio H. Ogata 1 |
| £ | 4 | Effects of pressurization on growth of nanoparticles in liquid-phase laser ablation | Nagoya Univ. 1@*Soliman Wafaa 1,Takada Noriharu 1,Sasaki Koichi 1 |
| £ | 5 | Interaction of colloidal nanoparticle with laser beam | AIST 1@*Alexander Pyatenko 1, Naoto Koshizaki 1 |
| £ | 6 | Laser Irradiation of CuO Nanoparticles Dispersed in Liquid: From Nanoparticles to Submicron Spheres | AIST 1, Kagawa Univ. 2@Hongqiang Wang 1, Naoto Koshizaki 1, Kenji Kawaguchi 1, Xiangyou Li 1, Alexander Pyatenko 1, Zaneta Swiatkowska-Warkocka 1, Yoshie Ishikawa 2 |
| 7 | Temperature effect on laser ablation process in liquids | Wakayama Univ. 1, Wakayama Univ. 2, ABsize Inc. 3, NAIST 4@*Gu Ping@1, Akimoto Ikuko@2, Ito Chihiro@2, Ryo Sen-ichi@3, Oh Isamu@3, Sugiyama Teruki@4, Masuhara Hiroshi@4 |
| | | Break 14:45`15:00 | |
| £ | 8 | Structural and magnetic properties of iron compounds complex particles prepared by a laser irradiation in liquids. | NRI AIST 1, Osaka Univ. 2@*Swiatkowska Zaneta 1, Kawaguchi Kenji 1, Wang Hongqiang 1, Katou Yukiko 1, Koshizaki Naoto 1, Nakagawa Takashi 2 |
| 9 | Fabrication and evaluation of B4C submicron spherical particles by non-focused laser irradiation in liquid
| AIST 1, Kagawa Univ. 2@*Naoto Koshizaki 1, Yukiko Kato 1, Yoshie Ishikawa 2 |
| 10 | Preparation of Long Afterglow Nanoparticles by Laser Ablation in Liquid | Tokyo Tech.@*Hiroyuki Wada, Fumitaka Yoshimura, Kazutaka Nakamura, Fumihiro Wakai, Masahiko Hara, Mamoru Yoshimoto, Osamu Odawara |
| 11 | Laser irradiation on silicon carbide particles dispersed in solution | Kagawa Univ. 1, AIST 2@*Yoshie Ishikawa 1, Qi Feng 1, Hongqiang Wang 2, Yukiko Kato 2, Naoto Koshizaki 2 |
| £ | 12 | Sub-micron Hollow Carbon Spheres Fabricated by Laser Irradiation in Liquid without Templates | AIST 1@*Xiangyou Li 1, Hongqiang Wang 1, Naoto Koshizaki 1 |
| 13 | Synthesis of Palladium Nanoparticles by Intense Laser Field | IMRAM Tohoku Univ. 1@*Miyajima Keisuke 1, Herbani Yuliati 1, Nakamura Takahiro 1, Sato Shunichi 1 |
| £ | 14 | Light-emitting silicon nanocrystal in three primary colors of light investigated by excitation wavelengths: luminescence mechanism and aging | Graduate School of Science, Hiroshima Univ. 1; N-BARD, Hiroshima Univ. 2@Shaoyu Wei 1, Daisuke Kajiya 2, Ken-ichi Saitow 1,2 |
| 4.7 Laser Processing |
| March 18 9:00`17:30 |
| 18a-E - 1`11 |
| ’ | 1 | In-situ elemental composition analysis by laser ablation in liquids | Kyoto Univ. Inst. of Advanced Energy 1@*Hajimu Yamagata 1, Testuo Sakka 1, Kazuhiro Fukami 1, Yukio H. Ogata 1 |
| £’ | 2 | Femtosecond laser induced formation of AuAg nanoparticles in organic solvent | IMRAM Tohoku Univ. 1@*Herbani Yuliati 1, Miyajima Keisuke 1, Nakamura Takahiro 1, Sato Shunichi 1 |
| ’ | 3 | Yield improvement of nanoparticles prepared by laser ablation in liquid | Toyota CRDL@*Nishi Teppei 1,Azuma Hirozumi 1,Suzuki Noritomo 1,Takeichi Akihiro 1 |
| ’ | 4 | Synthesis of p-type ZnO nanowires by NAPLD and its characteristic evaluation | Kyushu Univ.1@*Kumeda Akio,Matsumoto Takahumi,Higashihata Mitsuhiro,Nakamura Daisuke,Okada Tatsuo |
| ’ | 5 | Micromachining of transparent materials using Fresnel diffraction of infrared radiation | Grad. Sch. of Medical Sciences, Kyushu Univ. 1,Inst. of Applied Physics, Univ. of Tsukuba 2,National Institute of AIST 3, Grad. Sch. of ISEE, Kyushu Univ. 4@*Kota Okazaki 1,Syuichi Torii 2,Tetsuya Makimura 2,Hiroyuki Niino 3,Koichi Murakami 2,Daisuke Nakamura 4,Akihiko Takahashi 1,Tatsuo Okada 4 |
| 6 | Analytical Method for Sequencing of isotope-labeled small RNA using Femtosecond Laser Ablation Time-Of-Flight Mass Spectroscopy | RIKEN Nishina 1, RIKEN Omix 2, RIKEN Adv. 3@*Kurata-Nishimura Mizuki 1, Ando Yoshinori 2, Kobayashi Tohru 3, Matsuo Yukari 1, Suzuki Harukazu 2, Hayashizaki Yoshihide 2, Kawai Jun 2 |
| | | Break 10:30`10:45 | |
| ’ | 7 |
Mechanism of nanostructure formation on metal surface induced by fs laser pulse III `Dependence of periodic spacings on laser fluence for various metals`
| ICR Kyoto Univ. 1,GSS Kyoto Univ. 2@*Okamuro Kiminori 1 2,Hashida Masaki 1 2,Miyasaka Yasuhiro 1 2,Tokita shigeki 1 2,Sakabe Shuji 1 2 |
| 8 | Observation of femtosecond laser ablation dynamics by using coherent soft X-ray probe pulse | STS The Univ. of Tokushima 1, QuBS JAEA 2, ISSP The Univ. of Tokyo 3@*Tomita Takuro 1, Yamamoto Minoru 1, Deki Manato 1, Ochi Yoshihiro 2, Kawachi Tetsuya 2, Hasegawa Noboru 2, Ohba Toshiyuki 2, Kaihori Takeshi 2, Terakawa Kota 3, Suemoto Tohru 3 |
| ’ | 9 | Existent State Analyses of Non-Equilibrium Silicon High-Pressure Phases Formed with Femtosecond Laser Driven Shock Wave | Osaka Univ. 1, Research Fellow of JSPS 2, JST CREST 3, SPring-8 4, Research Center for UHVEM 5, National Defense Acad. 6,Photon Pioneers Center 7@*Masashi Tsujino 1,2, Tomokazu Sano 1,3, Norimasa Ozaki 1, Osami Sakata 4, Kazuto Arakawa 5, Masayuki Okoshi 6, Narumi Inoue 6, Hirotaro Mori 5, Ryosuke Kodama 1,7, Akio Hirose 1 |
| ’ | 10 | Suppression of crack by forming stress relaxation areas in femtosecond laser processing inside glass | Osaka Univ. 1, NEC SCHOTT Components. 2@*Oki Yuto 1, Matsumoto Masato 1, Ozeki Yasuyuki 1, Yamamoto Hidefumi 2, Itoh Kazuyoshi 1 |
| 11 | Spatiotemporal double pulse method | Utsunomiya Univ., CORE@Mitsuhiro Isaka 1CAkihiro Takita 1, *Yoshio Hayasaki 1 |
| | | Lunch 12:00`13:00 | |
| 18p-E - 1`17 |
| 1 | Femtosecond-Laser Micromachining of Hollow Plastic Shell for IFE Experiments | Institute of Laser Engineering Osaka Univ. 1, Institute for Laser Technology 2@*Nagata Mizuho 1, Fujita Masayuki 1,2, Somekawa Toshihiro 2, Fujimura Takeshi 1, Homma Hirofumi 1, Nakai Mitsuo 1, Norimatsu Takayoshi 1, Azechi Hiroshi 1 |
| 2 | Micro-machining of Silicon Substrate by focusing femtosecond laser pulses with an axicon.II | TokaiUniv. 1,@Odachi Go 1,Takagi Yuka 1,Sakai Hirotomo 1,Sugiura Kouji 1,Tukino Takahito 1, Sakamoto Ryousuke 1,Timura Yosihisa 1,Tuganezawa Natumi 1,Hara Kennto 1,*Takashi Yagi 1, |
| 3 | Femtosecond laser-driven shock hardening of aluminum | Osaka Univ 1,JST,CREST 2,National Defense Acad. 3,WERC 4@*Yutaro Isshiki 1, Tomokazu Sano 1,2,Tomo Ogura 1, Masayuki Okoshi 3, Narumi Inoue 3, Kojiro F. Kobayashi 4, Akio Hirose 1
|
| 4 | A new laser peening process - Potentiality of femtosecond laser | Osaka Univ. 1, JST, CREST 2, Nat. Defense Acad. 3, WERC 4@*Tomokazu Sano 1,2, Toru Nakashima 1, Takahiro Tsukada 1, Tomo Ogura 1, Masayuki Okoshi 3, Narumi Inoue 3, Kojiro F. Kobayashi 4, Akio Hirose 1 |
| 5 | Simulation on Laser Peening II | Inst. Laser Tech. 1, GPI 2@Furukawa Hiroyuki 1, Haya Manabu 2, Kato Yoshiaki 2 |
| 6 | Estimation of Cell Response upon Stimulation by Femutosecond Laser-induced Stress Wave | NAIST 1,Aichi Gakuin Univ.2,Tohoku Fukushi Univ.3,Univ.Tokyo 4,NCTU in Taiwan 5@Akihiro Hiraoka 1,Takanori Iiino 1,Yoichiroh Hosokawa 1,Tadahide Furuno 2,Kazunori Okano 1,3,Mitsuru Hagiyama 4,Akihiko Ito 4,Hiroshi Masuhara 1,5 |
| 7 | Local Force Detection System for Femtosecond Laser Tsunami Utilizing Atomic Force Microscope. Part. 4. | NAIST 1, Univ. Tokyo 2, Tohoku Fukushi Univ. 3, NCTU in Taiwan 4@Yoichiroh Hosokawa 1, Takanori Iino 1, Mitsuru Hagiyama 2, Akihiko Ito 2, Kazunori Okano 1,3, Hiroshi Masuhara 1,4 |
| 8 | Improvement of femtosecond laser-induced nucleation technique of protein in a gel solution | Osaka Univ. 1,CREST-JST 2,Univ. of Heidelberg 3,SOSHO Inc. 4,Tokyo Insti. of Tech. 5@*Masateru Kurata 1,2,Ryota Murai 1,2,Hiroshi Yoshikawa 3,Natsuko Iefuji 1,2,Mihoko Maruyama 1,2,Yoshinori Takahashi 1,2,Shigeru Sugiyama 1,2,Hiroaki Adachi 1,2,4,Kazuhumi Takano 1,2,4,Hiroyoshi Matsumura,1,2,4,Satoshi Murakami 2,4,5,Tsuyoshi Inoue 1,2,4,Yusuke Mori 1,2,4 |
| | | Break 15:00`15:15 | |
| 9 | Formation of transparent protective coat onto polycarbonate by F2 laser (2) | National Defense Academy 1, Renias Co., LTD. 2@*Yoshihiko Nojima 12, Masayuki Okoshi 1, Hidetoshi Nojiri 2, Narumi Inoue 1 |
| 10 | Fsub2/sub laser surface modification of UV transparent polymer for selective hydrophilic treatment | RIKEN 1, Tokyo Univ.of Science 2, RIKEN BSI 3@*Takayoshi Tsuchimoto 1,2, Yasutaka Hanada 1, Koji Sugioka 1,2, Hiroyuki Kawano 3, Atsushi Miyawaki 3, Iwao Miyamoto 2, Katsumi Midorikawa 1 |
| 11 | Patterning of aluminum thin films by F2 laser | National Defense Academy 1,RENIAS CO., LTD.2,@*Kazufumi Iwai 1,2,Masayuki Okoshi 1,Hidetoshi Nojiri 2,Narumi Inoue 1, |
| 12 | Synthesis of ZnO Nanowire with Layered Structure by Laser Ablation | Grad. Sch. of ISEE Kyushu Univ. 1, Grad. Sch. of Medical Sciences Kyushu Univ. 2@Daisuke Nakamura 1, Takafumi Matsumoto 1, Akio Kumeda 1, Kazuyuki Toya 1, Kota Okazaki 2, Mitsuhiro Higashihata 1, Tatsuo Okada 1 |
| 13 | GaN 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@*Kakumoto Soichiro 1, Yoshida Takehito 2, Umezu Ikurou 13, Sugimura Akira 13 |
| 14 | Preparation of silicon supersaturated with sulfur by YAG laser melting | Konan Univ. 1, Fukuoka Univ. 2, U.S. Army ARDEC 3, Australian National Univ. 4, Harvard Univ. 5@Nakagawa shou 1, A. Kohno 2, J. M. Warrender 3, J. S. Williams 4, S. Charnvanichborikarn 4, M. J. Aziz 5, Sugimura Akira 1, Umezu Ikurou 1 |
| 15 | Compositionally graded thin film fabrication mechanism by Gravity Assisted PLA | kyushu Univ. 1@*Morinaga Sachi, Nishiyama Takashi, Kajiwara Takashi, Nagayama Kunihito |
| 16 | Measurement of Strength for Concrete Drilling Using a High Power Laser | Sankyo Seisakusho 1, Tokai Univ. 2, Inst. for Appl. Optics 3@*Shigeki Muto 1, Heizaburo Kato 1, Kazuyoku Tei 2, Tomoo Fujioka 3 |
| 17 | UV laser source for pulsed laser deposition | Coherent GmbH@*Hiroshi Shimizu 1,
|