| 4 Quantum Electronics |
| 4.1 Quantum Optics and Atom Optics |
| Sept. 5 9:00〜12:00 |
| 5a-ZD- / III |
|
1 |
Differential quadrature phase shift quantum key distribution protocol |
Osaka Univ. 1, NTT Basic Res. Labs. 2, JST-CREST 3 *Iwai Yuki 1,3, Inoue kyo 1,2,3 |
|
2 |
Final key creation in differential-phase-shift quantum secret sharing |
Osaka Univ. 1,NTT Basic Res. Labs 2,JST-CREST 3 * Kukita Tatsuya 1,3, Ohashi Tetsuya 1,3, Honjo Toshimori 2,3, Inoue Kyo 1, 2, 3 |
|
3 |
Optimization of Secure Optical Communications Using Phase Fluctuations |
Hitachi ARL 1 Tomaru Tatsuya 1 |
|
4 |
Influence of Intercept-Resend Attack on DPS Quantum Key Distribution Utilizing Quantum Noise |
Osaka Univ. 1, NTT Basic Res. Labs 2, JST-CREST 3 *Ohashi Tetsuya 1 3 , Hayashi Syusaku 1 3 , Inoue Kyo 1 2 3 |
|
5 |
Telecom-band single-photon detection using a sinusoidally gated avalanche photodiode with grater than gigahertz repetition frequency |
Nihon Univ. 1 *Adachi Shunsuke 1, Namekata Naoto 1, Inoue Shuichiro 1 |
|
6 |
Efficient and low noise single-photon detection in 1550-nm band by frequency upconversion |
NTT Basic Research Labs. NTT Corp. 1, NTT Photonics Labs. NTT Corp. 2, H. Kamada 1, M. Asobe 2, O. Tadanaga 2, H. Takesue 1, T. Honjo 1, |
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Break 10:30〜10:45 |
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7 |
Improved quantum correlation of photon pairs generated using silicon wire waveguide |
NTT Basic Research Labs. 1, NTT Microsystem Integration Labs. 2, JST-CREST 3 *Ken-ichi Harada 1,3, Hiroki Takesue 1,3, Hiroshi Fukuda 2, Tai Tsuchizawa 2, Toshifumi Watanabe 2, Koji Yamada 2, Yasuhiro Tokura 1,3, Sei-ichi Itabashi 2 |
|
8 |
Generation of polarization entangled photon pair using a Type-II PPLN waveguide |
Nihon Univ. 1, NIMS 2 *Hasegawa Keisuke 1, Obinata Masasi 1, Namekata Naoto 1, Kurimura Sunao 2, Inoue Shuichiro 1 |
|
9 |
Broad-Band Source of Polarization-Entangled Photon-Pairs Suitable for Wavelength-Division-Multiplexed Entanglement Distribution |
Univ. Tokyo 1, AIST 2, JST-CREST 3 *Han Chuen Lim 1,2, Akio Yoshizawa 2,3, Hidemi Tsuchida 2,3, Kazuro Kikuchi 1 |
|
10 |
Telecom-band entanglement swapping using fiber-based photon-pair sources |
NTT Basic Research Laboratories 1, JST CREST 2 *Takesue Hiroki 1,2 |
|
11 |
“Quantum anti-erasure”: developing interference fringes upon reading “which-path information” |
Graduate School of Arts and Sciences, The Univ. of Tokyo 1 *Tamaoki Ikuya 1,Fukatsu Susumu 1 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| Sept. 2 9:15〜18:00 |
| 2a-V- / III |
|
1 |
Surface Emission and the Air Hole Design in the Vertical Direction of Two-Dimensinal Photonic-Crystal Lasers |
Kyoto Univ. 1, ROHM Co.,Ltd 2 Iwahashi Seita 1,Sakai Kyousuke 1,Kurosaka Yoshitaka 1,Miyai Eiji 1,2,Susumu Noda 1 |
| △ |
2 |
Band Structure Analysis of Two-Dimensional Photonic-Crystal Lasers with Supercell |
Kyoto Univ. 1, ROHM Co.,Ltd 2 Iwahashi Seita 1,Kurosaka Yoshitaka 1,Sakai Kyousuke 1,Ohnishi Dai 1,2,Kunishi Wataru 1,2,Miyai Eiji 1,2,Susumu Noda 1
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|
3 |
Lasing principle of 2D photonic-crystal surface-emitting laser consisting of different periodic complex resonators |
Kyoto Univ. 1, ROHM 2 *Kurosaka Yoshitaka 1, Iwahashi Seita 1, Sakai Kyosuke 1, Miyai Eiji 1,2, Ohnishi Dai 1,2, Kunishi Wataru 1,2, Noda Susumu 1 |
|
4 |
2D photonic-crystal surface-emitting laser consisting of continuously changing different periodic complex resonators |
Kyoto Univ. 1, ROHM 2 *Kurosaka Yoshitaka 1, Iwahashi Seita 1, Sakai Kyosuke 1, Miyai Eiji 1,2, Ohnishi Dai 1,2, Kunishi Wataru 1,2, Noda Susumu 1 |
|
5 |
Possibility of athermal cw photonic crystal nanolaser utilizing mixed liquids |
Yokohama Nat'l Univ. 1, JST-CREST 2 Shota Kita 1 2, Toshihiko Baba 1 2 |
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Break 10:30〜10:45 |
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6 |
Refractive index sensor utilizing photonic crystal nanolaser(IV) Large scale array for high resolution |
Yokohama Nat'l Univ. 1, JST-CREST 2 Shota Kita 1 2, Toshihiko Baba 1 2 |
| △ |
7 |
Focal spot properties of beams generated by two-dimensional photonic-crystal laser |
Kyoto Univ. 1, ROHM Co., Ltd. 2 Kitamura Kyoko 1, Sakai Kyosuke 1, Kurosaka Yoshitaka 1, Kunishi Wataru 1,2, Miyai Eiji 1,2, Ohnishi Dai 1,2, Noda Susumu 1 |
|
8 |
Polarizing dependence of vertical coupling on the photonic crystal waveguide by two-dimensional laterally blazed grating |
Osaka Pref. Univ. 1, NIMS 2, Univ. of Tsukuba 3 *Mizutani Akio 1, Kikuta Hisao 1, Ikeda Naoki 2, Ozaki Nobuhiko 3, Watanabe Yoshinori 3, Sugimoto Yoshimasa 2,3, Asakawa Kiyoshi 2,3 |
|
9 |
Topology optimization for optical coupling into 2D photonic crystal waveguides |
Univ. of Tsukuba 1, NIMS 2, Osaka Pre. Univ. 3 * Y. Watanabe 1, Y. Kaizu 1, N. Ikeda 2, A. Mizutani 3, N. Ozaki 1, Y. Sugimoto 1,2, K. Asakawa 1,2 |
|
10 |
Conversion of light from a point source to a collimation beam inside and outside of photonic crystal |
Yokohama Nat’l Univ. 1, JST–CREST 2 *Tomohiko Asatsuma 1,2, Toshihiko Baba 1,2 |
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Lunch 12:00〜13:00 |
|
| 2p-V- / III |
| △ |
1 |
Extraordinary optical activity in GaAs chiral photonic crystals |
Univ. of Tokyo 1, CRST(JST) 2, INQIE 3, RCAST 4, IIS 5 *Konishi Kuniaki 1,2, Nomura Masahiro 3, Watanabe Katsuyuki 3, Iwamoto Satoshi 3,4,5, Arakawa Yasuhiko 3,4,5, Kuwata-Gonokami Makoto 1,2 |
|
2 |
Optical property of flexible metamaterials in terahertz region |
Shinshu Univ. 1, PREST JST 2, ZACROS 3 *Fumiaki Miyamaru 1, 2, Mitsuo W. Takeda 1, Kazuo Taima 3 |
|
3 |
Signal Transmission Charactelristics through Surface Plasmon and Optical Near Field |
Toyohashi University of Technology 1 ,Maizuru National College of Technology 2 *Hiroya Funato 1, Naohiro Takemoto 1,Toyohisa Kodama 1, Ryouhei Sugiura 1, Makoto Tooyama 1, Shouta Yamamoto 1, Atsushi Utsumi 2, and Mitsuo Fukuda 1
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4 |
Characteristics of a MIM plasmonic waveguide with a slit plasmon resonator |
The Univ. of Tokushima 1 Tsuzura Tatsuro 1, Haraguchi Masanobu 1, Okamoto Toshihiro 1, Fukui Masuo 1 |
|
5 |
Nonlinear optical effect at wavelength of localized surface plasmon resonance in Au nanoparticles and Bi:YIG composite film |
Toyohashi University of Technology 1, Moscow State University 2 *Masahiro Koga 1, Kousuke Okada 1, Hironaga Uchida 1, O.A.Aktsipetrov 2, A.Baryshev 1, Mitsuteru Inoue 1 |
|
6 |
Mechanism of Light Emission Enhancement based on Plasmonics |
Kyoto Univ. 1, JST PRESTO 2 *Koichi Okamoto 1,2, Yoichi Kawakami 2 |
| △ |
7 |
Control of thermal radiation using intersubband transition in quantum wells and 2D photonic cystal slab |
Kyoto Univ. 1 * De Zoysa Menaka 1, Mochizuki Keita 1, Asano Takashi 1, Noda Susumu 1 |
|
8 |
Analysis of time-resolved photoluminescence from GaInN at room temperature by using power function |
Kyoto Univ. 1, ALPS Electric., 2 *Kitagawa Hitoshi 1,2, Kurokawa Youichi 1,2, Suto Toshihide 1,2, Fujita Masayuki 1, Kojima Kazunobu 1, Asano Takashi 1, Noda Susumu 1 |
|
9 |
Fabrication of current-injected Ge dots microcavity light emitters |
Musashi Inst. Technology 1, Tohoku Univ. 2 *Tominaga Ryuichiro 1, Xia Jinsong 1, Fukamizu Seiji 1, Usami Noritaka 2, Shiraki Yasuhiro 1 |
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Break 15:15〜15:30 |
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10 |
Control of luminescence characteristic of Si nano crystals using silicon two-dimensional photonic crystal |
QNERC, Tokyo Tech, JST-SORST *Hiroshi Sano, Yoshifumi Nakamine, Daihei Hippo, Ken Uchida, Syunri Oda |
|
11 |
Light-emission enhancement in silicon photonic crystal nanocavities at strong pumping condition |
Kyoto Univ. 1 Masayuki Fujita 1, Yoshinori Tanaka 1, Yasushi Takahashi 1 and Susumu Noda 1 |
|
12 |
Effect of cavity mode volume on silicon photoluminescence from photonic crystal nanocavities |
RCAST Univ. of Tokyo 1, IIS Univ. of Tokyo 2, INQIE Univ. of Tokyo 3 Nakayama Shigeru 1, Ishida Satomi 2, Iwamoto Satoshi 1-3, Arakawa Yasuhiko 1-3 |
|
13 |
Transmission of silicon photoluminescence from photonic nanocavity through a lateral waveguide |
Univ. of Tokyo 1, Tech. Univ. Munich 2 D. F. Dorfner 1,2, *S. Iwamoto 1, M. Nomura 1, S. Nakayama 1, J. J. Finley 2, G. Abstreiter 2, and Y. Arakawa 1 |
|
14 |
Direct observation of coupling characteristics of spontaneous emission in photonic crystal nanocavity systems |
Inst. of NanoQuantum Info. Electron. Univ. of Tokyo 1, RCAST Univ. of Tokyo 2, IIS Univ. of Tokyo 3 *Nomura Masahiro 1, Tandaechanurat Aniwat 2, Iwamoto Satoshi 1 2 3, Ota Yasutomo 2, Kumagai Naoto 1, Arakawa Yasuhiko 1 2 3 |
|
15 |
Measurement of 1100-nm-band Photonic Crystal Nanocavities at Low Temperature |
NTT Basic Research Laboratories 1, NII 2, Stanford Univ. 3 *Hisashi Sumikura 1, Eiichi Kuramochi 1, Masaya Notomi 1, Takasumi Tanabe 1, Takehiko Tawara 1, Yoshihisa Yamamoto 2,3 |
|
16 |
Characterization of exciton-photon coupling using cavity detuning by gas condensation |
NTT Basic Research Laboratories 1, Hirosaki Univ. 2 *Takehiko Tawara 1, Hidehiko Kamada 1, Hiroshi Okamoto 2, Masaya Notomi 1, Tetsuomi Sogawa 1 |
| △ |
17 |
A third peak in a strongly coupled system of a photonic nanocavity and a quantum dot under on-resonance conditions |
Kyoto Univ. 1 *Yamaguchi Makoto 1,Asano Takashi 1,Kojima Kazunobu 1,Fujita Masayuki 1,Noda Susumu 1
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18 |
Vacuum Rabi splitting with a quantum dot in H1 type photonic crystal nanocavity |
INQIE 1, RCAST 2 Univ. of Tokyo, NEC 3 *Yautomo Ota 1,2, Masayuki Shirane 1,3, Masahiro Nomura 1, Naoto Kumagai 1, Satomi Ishida 2, Satoshi Iwamoto1,2, Shinichi Yorozu 1,3, Yasuhiko Arakawa 1,2
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19 |
Control of coupling states between a nano cavity and a quantum dot (1) |
Dept. Electron. Sci. & Eng., Kyoto Univ. *Kazunobu Kojima 1, Makoto Yamaguchi 1, Takashi Asano 1, Susumu Noda 1 |
| 4.2 Photonic Nanostructures - Design, Fabrication and Physics |
| Sept. 3 9:30〜18:00 |
| 3a-V- / III |
| △ |
1 |
Development of Angled Plasma-Etching Technique for Three-Dimensional Nanostructure |
Kyoto Univ. 1 *Takahashi Shigeki 1, Suzuki Katsuyoshi 1, Noda Susumu 1 |
|
2 |
Introduction of InP Quantum Well into 3D Photonic Crystals Fabricated by Double Angled-Etching Technique |
Kyoto Univ. 1 *Suzuki Katsuyoshi 1, Nakamori Takeshi 1, Takahashi Shigeki 1, Ishizaki Kenji 1, Noda Susumu 1 |
|
3 |
Formation mechanism of photonic gap in photonic amorphous diamond |
IIS, Univ. Tokyo 1, NTT 2 , CREST-JST 3 *Imagawa Shigeki 1, Edagawa Keiichi 1, Notomi Masaya2,3 |
| △ |
4 |
Surface Structure Dependence of Surface Mode in Three-Dimensional Photonic Crystals |
Kyoto Univ. 1 *Ishizaki Kenji 1, Sun Qi 1, Noda Susumu 1 |
|
5 |
Enhancement of Nonlinear Effects in Low-Group-Velocity and Low-Dispersion Photonic Crystal Waveguide |
Yokohama Nat'l Univ. 1,JST-CREST 2 *Hamachi Yohei 1,2,Yamada Koshiro 1,Baba Toshihiko 1,2 |
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Break 10:45〜11:00 |
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6 |
Slow Pulse Propagation in Photonic Crystal Coupled Cavity Waveguides with Different Dispersions |
NTT Basic Research Laboratories 1, CREST-JST 2 *Kuramochi Eiichi 1 2, Tanabe Takasumi 1 2, Taniyama Hideaki 1 2, Notomi Masaya 1 2 |
|
7 |
Tuning of Slow Light Pulse in Photonic Crystal Coupled Waveguides with Chirped Structure (II) - Extension of the Tuning Range |
Yokohama Nat'l Univ. 1, JST CREST 2 *Sasaki Hirokazu 1,2, Adachi Jun 1,2, Baba Toshihiko 1,2 |
|
8 |
Improvement of Slow Light Characteristics in Photonic Crystal Coupled Waveguide via Turnup Chirping |
Yokohama Nat'l Univ. 1, JST CREST. 2 Adachi Jun 1,2, Sasaki Hirokazu 1,2, Saito Yuji 1,2, Baba Toshihiko 1,2 |
|
9 |
A photonic crystal directional coupler switch controled by micro-heater |
AIST Photonics 1, Univ. of Tsukuba 2 *Noritsugu Yamamoto 1, Jun-ichiro Sugisaka 1,2, Makoto Okano 1, Kazuhiro Komori 1 |
|
10 |
Evaluation of Polarization-Insensitive Si Wire AWGs for Reconfirming a Large Birefringence in SOI Layer |
Yokohama Univ. 1,JST-CREST. 2 *Hirahara Daichi 1,Baba Toshihiko 1,2 |
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Lunch 12:15〜13:30 |
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| 3p-V- / III |
|
1 |
Dynamic Q factor control of 2D photonic crystal nanocavities(9)〜light-trapping in high Q nanocavities〜 |
Kyoto Univ. 1 Tomoaki Sugiya 1, Yoshinori Tanaka 1, Takashi Asano 1, Susumu Noda 1 |
| ▲ |
2 |
Dynamic Q factor control of 2D photonic crystal nanocavities (10) –Increasing functionality- |
Kyoto Univ. 1 *Upham Jeremy 1, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
|
3 |
An Aprroach for the Stopping of Slow Light by the Dynamic Tuning of Photonic Crystal Waveguide Slow Light Device |
Yokohama Nat'l Univ. 1, JST-CREST, 2 *Saitou Yuji 1,2, Baba Toshihiko 1,2 |
|
4 |
Investigation of optical pulse trapping using dynamic change in two-dimensional photonic crystal waveguides |
Kyoto Univ. 1 *Sato Yoshiya 1,Tanaka Yoshinori 1,Asano Takashi 1,Noda Susumu 1 |
| ▲ |
5 |
Multi-step, on-the-fly wavelength conversion in 2D photonic crystals |
Kyoto Univ. 1 *Upham Jeremy 1, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
|
6 |
Demonstration of adiabatic wavelength shifting by dynamic tuning of an ultrahigh-Q photonic crystal nanocavity |
NTT Basic Research Labs. 1, CREST-JST 2 Takasumi Tanabe 1,2, Hideaki Taniyama 1,2, Eiichi Kuramochi 1,2, Masaya Notomi 1,2 |
|
7 |
Short pulse readout from an ultrahigh-Q photonic crystal nanocavity using adiabatic wavelength shifting |
NTT Basic Research Labs. 1, CREST-JST 2 Takasumi Tanabe 1,2, Hideaki Taniyama 1,2, Eiichi Kuramochi 1,2, Masaya Notomi 1,2 |
|
8 |
Ultra small and low power consumption all-optical bit memory based on InGaAsP photonic crystal nanocavity |
NTT-BRL 1, NTT-PH 2 Shinya Akihiko 1, Matsuo Shinji 2, Yosia 1, Tanabe Takasumi 1, Kuramochi Eiichi 1, Sato Tomonari 2, Kakitsuka Takaaki 2, Notomi Masaya 1 |
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Break 15:30〜15:45 |
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9 |
2D SiC photonic crystal at visible-wavelength range |
Kyoto Univ. 1, Sungkyunkwan Univ. 2 *Yamada Shota 1, Song Bong-Shik 1,2, Asano Takashi 1, Noda Susumu 1 |
|
10 |
Raman spectroscopy for the photonic crystal nanocavities (II) |
Kyoto Univ. Yasushi Takahashi 1, Yoshinori Tanaka 1, Masayuki Fujita 1, Takashi Asano 1, Susumu Noda 1 |
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11 |
Trimming of SOI photonic crystal devices by local oxidization of Si layer |
Yokohama Nat'l Univ. 1, JST CREST 2 *Ishikura Norihiro 1, Sasaki Hirokazu 1,2, Adachi Jun 1,2, Baba Toshihiko 1,2 |
|
12 |
100 GHz spaced ultrasmall channel drop filter using two-dimensional photonic crystal |
Kyoto Univ. 1 *Yasushi Takahashi 1, Takashi Asano 1, Susumu Noda 1 |
| ▲ |
13 |
Investigation of Photonic Nanocavities via their Spectral Reflectivity |
Kyoto University Wolfgang Stumpf 1, Takashi Asano 1, Takanori Kojima 1, Masayuki Fujita 1, Yoshinori Tanaka 1, Susumu Noda 1 |
|
14 |
FDTD Analysis of Electrically Pumped 2D Photonic Crystal Laser |
Osaka Univ. Mitamura Takashi 1, Nakaya Yousuke 1, *Morifuji Masato 1, Kondow Masahiko 1 |
|
15 |
Feasibility of Increase in Photonic Nanocavity Q by Controlling the Surrounding Field (2) |
Kyoto Univ. Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
|
16 |
Mode-gap-confined photonic crystal nanocavities in very thin photonic crystal barriers with air-slots: Theoretical study |
NTT BRL 1 *Kuramochi Eiichi 1, Taniyama Hideaki 1, Tanabe Takasumi 1, Shinya Akihiko 1, Notomi Masaya 1 |
|
17 |
Experimental demonstration of ultrahigh-Q photonic crystal nanocavities in very thin photonic crystal barriers with air-slots |
NTT BRL 1 *Kuramochi Eiichi 1, Tanabe Takasumi 1 Taniyama Hideaki 1, , Shinya Akihiko 1, Notomi Masaya 1 |
| 4.3 Laser Devices and Materials |
| Sept. 2 10:00〜18:00 |
| 2a-ZA- / III |
|
1 |
Development of Bi-Yb doped silica glass for super broadband optical amplification |
ILE Osaka Univ. 1, Kinki Univ. 2 *Shinya Kawashima 1, Eisuke Kawakami 1,2, Motoichiro Murakami 1,2, Masahito Goto 1,2, Yasushi Fujimoto 1, Masahiro Nakatuka 1, Hitoshi Nakano 2, Minoru Yoshida2
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2 |
Spectroscopic characteristic of the Bi-doped silica fiber for the broadband light source |
Osaka Univ. ILE 1, Kinki Univ. 2, Hamamatsu Photonics K.K. 3 *Kawakami Eisuke 1,2, Goto Masahito 1,2, Murakami Motoitiro 1,2, Kawashima shinya 1, Yoshida Minoru 2, Nakano Hitoshi 2, Fujimoto Yasushi 1, Nakatuka Masahiro 1, Maeda Jyunya 3, Kan Hirohumi 3 |
|
3 |
Development of an all solid state CW 244nm light source generated with a 976nm fiber laser |
Cyber-Laser Inc., *Orii Yosuke 1,Ando Tetsuo 1,Sumiyoshi Tetsumi 1 |
|
4 |
High-peak power ns pulse generation in Yb LMA fiber |
Inst. of Laser Engineering, Osaka Univ.1 *Hidetsugu Yoshida 1 , Koji Tsubakimoto 1 , Hisanori Fujita 1 , Masahiro Nakatsuka 1 , Noriaki Miyanaga 1 , Yasukazu Izawa 1 |
|
5 |
Development of Highly efficient Tm-doped fiber laser system |
Inst.of Laser eng, Osaka Univ.1 *Sasaki Kouhei 1,Yoshida Hidetugu 1,Tsubakimoto Koji 1,Fujita Hisanori 1,Nakatsuka Masahiro 1,Miyanaga Noriaki 1,Izawa Yasukazu 1 |
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Break 11:15〜11:30 |
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6 |
High-power Yb-doped solid-core photonic bandgap fiber amplifier at 1150-1200nm |
Univ. of ELectro-Comms ILS 1, Crystal Fibre A/S 2 *Maruyama Hiroki 1, Shirakawa Akira 1, Ueda Ken-ichi 1, Christina B. Olausson 2, Jens K. Lyngsø 2, Brian Mangan 2, Jes Broeng 2
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7 |
Brightness-enhancement of pulsed fiber source by double-clad Raman fiber |
ILS, Univ. Electro-Commun. 1 ORC, Univ. Southampton 2 Akira Shirakawa 1,2, C. A. Codemard 2, J. Ji 2, K. K. Chen 2, A. Malinowski 2, D. J. Richardson 2, J .K. Sahu 2, J. Nilsson 2 |
|
8 |
Transmission of high power pulse laser by large core multimode optical fibers (3) |
ILE Osaka Univ. 1,ILT 2,Kinki Univ. 3 *Higashizawa Tatsuyuki 1,Motokoshi shinji 2,Yoshida Minoru 3,Jitsuno Takahisa 1 |
|
9 |
Development of Cryogenic Yb-doped Fiber Laser |
ILE Osaka Univ. 1, ILT 2 Yasuno Yusuke 1, *Furuse Hiroaki 2, Yoshida Hidetsugu 1, Kawanaka Junji 1 |
| ▲ |
10 |
200mJ, 100Hz Diode-Pumped Cryogenic Yb:YAG MOPA – “GENBU-Kid”-laser |
Osaka Univ. 1, Hamamatsu Photonics K. K. 2
*Stuart Pearce 1, Ryo Yasuhara 1,2, Junji Kawanaka 1, Akira Yoshida 1,HIrofumi Miyajima 1,2, Toshiyuki Kawashima 1,2 and Hirofumi Kan 1,2 |
|
11 |
Characterization of a green frequency-shifted feedback laser |
Tohoku Univ. Cheikh Ndiaye, Takefumi Hara, Hiromasa Ito |
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Lunch 13:00〜14:00 |
|
| 2p-ZA- / III |
|
1 |
Kerr-lens mode-locked Yb-doped combined active media ceramic laser |
Inst. for Laser Science, Univ. of Electro-Communications 1,
Konoshima Chemical Co.Ltd.2, Inst. of Crystallography, Russian Academy of Sciences 3 *Masaki Tokurakawa 1, Hiroaki Kurokawa 1, Akira Shirakawa 1, Ken-ichi Ueda 1, Hideki Yagi 2, Takagimi Yanagitani 2, Alexander A. Kaminskii 3 |
|
2 |
High Average Power Diode-Pumped Yb:YAG Zig-Zag Slab Laser |
HPK Dev. Bureau 1, HPK CRL 2 *Tadashi Ikegawa 1, Toshiyuki Kawashima 2, Hirohumi Miyajima 2, Hirohumi Kan 2 |
|
3 |
Development of 3W, 100kHz-Femtosecond Yb:KGW Regenerative Amplifier System |
OMRON Laserfront Inc. Taisuke Miura 1, Shinji Ito 1 |
| ▲△ |
4 |
Study on a high-power high-efficient mode-locked Yb:YAG laser |
AIST * Xue Yinghong 1, Uemura Sadao 1, and Torizuka Kenji 1 |
|
5 |
High average power pico-second output from all fiber laser system |
Chiba University 1, JST-PRESTO 2 Yuichi Tanaka 1, Kenji Furuki 1, Takashige Omatsu 1,2 |
|
6 |
High average power sub-5ps output from a phase conjugate mixed vanadate laser system
|
Chiba Univ.1, JST-PRESTO2
Naoki Shiba1, Yasuhito Morimoto1, Takashige Omatsu1,2 |
|
7 |
Planar-waveguide intra-cavity SHG green laser (1) |
Mitsubishi Electric Corporation Hirano Yoshihito 1,Yanagisawa Takayuki 1,Yamamoto Shuhei,Koyata Yasuharu 1,Akino Yosuke 1,Okano Makoto 1,Seki Kojii 1,Yoshihara Toru 1,Nakamura Akira 1,Hamaguchi Tsuneo 1,Yagi Tetsuya 1 |
|
8 |
Planar-waveguide intra-cavity SHG green laser (2) |
Mitsubishi Electric Corporation Yamamoto Shuhei 1,Yanagisawa Takayuki 1,Koyata Yasuharu 1,Akino Yosuke 1,Okano Makoto 1,Seki Kojii 1,Yoshihara Toru 1,Nakamura Akira 1,Hamaguchi Tsuneo 1,Yagi Tetsuya 1,Hirano Yoshihito 1 |
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Break 16:00〜16:15 |
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9 |
Reduction of birefringence of two Nd:YAG rods
with different thermally induced characteristics |
Central Research Laboratory, Hamamatsu Photonics, K. K. 1, Solid-State Optical Science, RIKEN 2 Wang You1, *Inoue Koichi2, Kan Hirofumi1, Ogawa Takayo 2, Wada Satoshi 2 |
|
10 |
Frequency stabilization of a light source for next generation gravitational-wave detectors IV |
Univ. of Tokyo 1 Ohmae Noriaki 1, Moriwaki Shigenori 1, Mio Norikatsu 1 |
|
11 |
Photo-mechanical actuator for wide band control |
Dept. of Advanced Materials Science, Univ. of Tokyo 1 *Machida Kosuke 1, Moriwaki Shigenori 1, Mio Norikatsu 1 |
|
12 |
Optimization design of amplifier system of space solar pumping laser module -Amplification in the saturation fluence parameter- |
University of Fukui. 1 Wataru Urano 1, Jumpei Ogino 1, Yutaro Katayama 1, Takuma Shirahama 1, Hideaki Niki 1, Tadashi Kanabe 1 |
|
13 |
2 dimension amplifier and propagation simulation design of 10kJ・10PW glass laser system- chirp pulse amplification- |
University of Fukui 1, University of Osaka 2 Nishimura Naoki 1,Noga Takashi 1,Amino Hikaru 1,Niki Hideaki 1,Kanabe Tadashi 1
Azechi Hiroshi 2,Miyanaga Noriaki 2,Jitsuno Takahisa 2,Kawanaka Junji 2 |
|
14 |
High power Tm,Ho:YAG ceramic laser �V |
Megaopto Co. Ltd 1, RIKEN 2, Tokyo University of Science 3 *Yumoto Masaki 2,3, Urata Yoshiharu 1, Oleg A. Louchev 1, Saito Norihito 2, Wada Satoshi 1,2,3 |
|
15 |
Temperature property of a microchip solid-state blue laser with a BIBO crystal |
Univ. of Yamanashi 1 Suzuki Kenta 1.Harimoto Tetsuo 1 |
| 4.3 Laser Devices and Materials |
| Sept. 3 10:00〜17:45 |
| 3a-ZA- / III |
|
1 |
Generation of Axially Symmetric, Polarized Beams with Tunability and Narrow Linewidth Using A Segmented Half-wave Plate |
IMRAM., Tohoku Univ. *Akihiko Ohtsu, Yuichi Kozawa, Shunichi Sato |
|
2 |
Generation of radially polarized laser beam induced by thermal birefringence effect |
IMRAM, Tohoku Univ. 1 *Akihiko Ito 1, Kazuki Yonemoto 1, Yuichi Kozawa 1, Shunichi Sato 1 |
|
3 |
Single Mode Oscillation in a Higher-Order Radially Polarized Mode Using a Photonic Crystal Mirror |
IMRAM., Tohoku Univ. 1 *Yuichi Kozawa 1, Shunichi Sato 1 |
| △ |
4 |
Propagation of a Radially Polarized Laser Beam through a Yb-Doped Double Clad Fiber |
IMRAM., Tohoku Univ. 1 *Chubachi Tatsuya 1, Kozawa Yuichi 1, Sato Shunichi 1 |
|
5 |
Development of a triple-axicon optical resonator and generation of high-power, azimuthally polarized beam |
Dept. of Physics, Tokai Univ. Masamori Endo |
|
6 |
Generation of vortex beams with a laser-diode-pumped microchip solid-state laser |
Tokai Univ., 1 Tokunaga Keisuke 1,Ohtomo Takayuki 1,Otsuka Kenju 1 |
|
7 |
Investigation of the center intensity of first-and-second-order Laguerre-Gaussian beams with linear and circular polarization |
*PRESTO JST 1, Budapest University of Technology and Economics 2, Olympus 3, Tokyo Institute of Technology 4 Yoshinori Iketaki 1, Nandor Bokor 2,Takeshi Watanabe 3,Masaaki Fujii 4 |
| |
|
Break 11:45〜12:00 |
|
|
8 |
Second harmonic generation of a waveguide dye laser including a random active medium II. |
Kyushu Univ. 1, Chiba Univ. 2 *Watanabe Hirofumi 1, Oki Yuji 1, Omastu Takashige 2
|
|
9 |
Blue-violet LD pumped microcavity dye laser using nanoparticle-doped active layer |
Shizuoka Univ.1 Hidetaka Matsuura 1, Masami Fukuda 1, Hajime Sakata 1 |
|
10 |
Random lasing in weakly scattering systems based on macroporous silica infiltrated with organic dye solutions |
Kyoto Univ. 1,JST-PRESTO 2 *Mano Masafumi 1,Fujita Koji 1,2,Murai Shunsuke 1,Meng Xiangeng 1,Tanaka Katsuhisa 1 |
|
11 |
DFB-waveguided dye lasers fabricated by imprinting and pen-drawing technique |
I.S.E.E. Kyushu Univ. 1, AIST 2 Noriyuki Kamogawa 1, Yu Yang 1, Kenichi Yamashita 2, Hajime Imaoka 1, Hirofumi Watanabe 1, Masaya Miyazaki 2, Yuji Oki 1 |
| |
|
Lunch 13:00〜14:00 |
|
| 3p-ZA- / III |
|
1 |
Far infrared laser oscillations pumped by two wavelength CO2 lasers (II) |
Chubu Univ. 1, NIFS 2 *Nakayama Kazuya 1, Tomimoto Masahiro 1, Kaneba Takahiro 1, Matsubara Akihiro 1, Okajima Shigeki 1, Akiyama Tsuyoshi 2, Tanaka Kenji 2, Kawahata Kazuo 2 |
|
2 |
Development of longitudinally excited gas lasers by using Spiker Sustainer circuit |
Osaka Univ. 1, Kobe Shinwa Women’s Univ. 2, Japan Steel. 3, Kinki Univ. 4, *Hirose Kazuki 1. Nakamura Kenshi 2. Goto Tatsumi 3. Inoue Jin 4. Yamada Makoto 4. Nakano Hitoshi 4. Jitsuno Takahisa 1. |
| △ |
3 |
Production of a population inversion in the active medium of all gas-phase iodine laser(AGIL) |
Tokai Univ.1, Keio Univ.2 Tomonari Nakamura 1, Taizo Masuda 2, Masamori Endo 1, Taro Uchiyama 2 |
|
4 |
Incoherent emission source at 193 nm using a laser produced plasma |
Univ. of Miyazaki Yusuke Sato 1, Manabu Nagahara 1, Ikumi Yasuzawa 1, Masanori Kaku 1, Shoichi Kubodera 1 |
|
5 |
Characteristics of ultrashort-pulse coherent vacuum ultraviolet radiation using a harmonic generation |
Univ. of Miyazaki 1, CRC, Univ. of Miyazaki 2, ILE, Osaka Univ. 3 Kazuyoshi Oda 1,Tadashi Kamikihara 1, Masahito Katto 2, Masanori Kaku 1, Shoichi Kubodera 1, Noriaki Miyanaga 3, and Kunioki Mima 3 |
|
6 |
Generation of the quasi-cw 193-nm light by nonlinear crystal KBBF |
Univ. of Electro-Comms 1, ISSP Univ. of Tokyo 2, Chinese Academy of Science 3 *Yusuke Sato 1, Nobuyoshi Watanabe 1, Yun Zhang 1, Teruto Kanai 2, Yoshiko Okada 1, C.T.Chen 3, X.y.Wang 3, Shuntaro Watanabe 2 |
|
7 |
Development of a triply resonant cw optical parametric oscillator with a compound cavity |
NICT 1 *Kasai Katsuyuki 1 |
| |
|
Break 15:45〜16:00 |
|
|
8 |
Optical emission from waveguide excited by traveling electron beam III |
Kanazawa Univ. College of science and engineering 1 *Yuji Kuwamura 1, Takeshi Kanai 1, Hesham Fares 1, Minoru Yamada 1 |
|
9 |
VUV emission via two photon absorption with fs solid laser |
Inst. of Laser Eng. Osaka Univ. 1, The Inst. of Phys. and Chem. Res. 2,The Grad. Univ. for Adv. Studies3,The Inst. of Multidisciplinary Res. for Adv. Materials Tohoku Univ. 4, Tokuyama Corporation 5 *Nakazato Tomoharu 1,Furukawa Yusuke 2,Cadatal Marilou 3,Shimizu Toshihiko 1,Sarukura Nobuhiko 1,Yanagida Takayuki 4,Fukuda Kentaro 4,5,Suyama Toshihisa 5,Yoshikawa Akira 4,Saito Fumiyoshi4 |
|
10 |
Temperature dependence of the nonlinear refractive index in cooled YAG crystal |
ILE Osaka1, ILT2 ○Yasuki Takeuchi1, Masayuki Fujita2, Junji Kawanaka1 |
|
11 |
Damage Threshold of optical materials under low temperature (3) |
Insutitute for Laser Technology 1,ILE Osaka Univ. 2,Hamamatsu Photonics 3 *Mikami Katsuhiro 1,Motokoshi Shinji 1,Fujita Masayuki 1,Jitsuno Takahisa 2,Kawanaka Jyunji 2,Yasuhara Ryo 3 |
|
12 |
Measurements of excited-state absorption in Ce:YAG ceramics |
ILE Osaka Univ. 1, Inst. for Laser Technology 2, Kinki Univ. 3 *Tada Takashi 1, Motokoshi Shinji 2, Jitsuno Takahisa 1, Fujioka Kana 1, Saiki Taku 2, Nakatsuka Masahiro 1, Yoshida Minoru 3 |
|
13 |
Thermally induced birefringence in MgO ceramics |
Inst. for Laser Science, Univ. of Electro-Communications 1, Kounoshima Chemical Co.Ltd.2 Kurokawa Hiroaki 1,Tokurakawa Masaki 1,Shirakawa Akira 1,Ueda Ken-ichi 1,Kamakura Takahiro 2,Yagi Hideki 2,Yanagitai Takagimi 2 |
|
14 |
Optimizations of the ratio of Tm to Ho concentrations in Tm,Ho-codoped lasers |
Tohoku Inst. of Tech. 1, NIMS 2, NICT 3 *Atsushi Sato 1, Yohei Nitsuma 1, Tomohiro Terasaki 1, Kazuhiro Asai 1, Kiyoshi Shimamura 2, Encarnacion G. Villora 2, Shoken Ishii 3, Kohei Mizutani 3, Toshikazu Itabe 3 |
| 4.4 Ultrafast lasers and High Field Lasers |
| Sept. 3 |
| 3a-ZB- / III |
| |
Short Presentation (5min.) 10:00〜12:05
3a-ZB-1〜23 Poster Session 13:00〜15:00 |
| △ |
1 |
Control of saturable absorption by superimposing Polyamide/CNT films and optimized femtosecond optical pulse generation |
RIEC, Tohoku Univ. 1, Toray Industries Inc., Electronic and Imaging Materials Research Laboratories 2 *Fumio Shohda 1, Takafumi Shirato 1, Masataka Nakazawa 1, Junji Mata 2, Jun Tsukamoto 2 |
| △ |
2 |
Improvement of all polarization maintaining ultrashort pulse fiber laser using single-wall carbon nanotube |
Osaka Univ. 1,AIST 2 *Senoo Yumiko 1,Nishizawa Norihiko 1,Sumimura Kazuhiko 1,Sakakibara Youichi 2,Itoga Emiko 2,Kataura Hiromichi 2,Itoh Kazuyoshi 1 |
|
3 |
294-fs, polarization-maintaining, passively-mode-locked figure-eight laser |
Furukawa Electric 1, OFS Labs 2 *Oguri Atsushi 1, Nicholson, J.W. 2, Matsushita Shun-ichi 1 |
|
4 |
Repetition-rate tunable, 100 fs pulse light source at 1550 nm by using gain-switched laser diode and fiber pulse compression techniques |
Furukawa Electric 1 *Oguri Atsushi 1, Akutsu Takeshi 1, Shinozaki Jun-ichi 1, Okamura Kazurou 1, Uchino Tatsuji 1, Yagi Takeshi 1, Sakano Misao 1, Matsushita Shun-ichi 1 |
|
5 |
Wavelength Tunability of Ultrashort Optical Pulse Source using MZM-based Flat Comb Generator and DF-DDF |
Nat. Inst. Information and Communications Tech. Isao Morohashi 1, Takahide Sakamoto 1, Hideyuki Sotobayashi 1, Tetsuya Kawanishi 1, Iwao Hosako 1, Masahiro Tsuchiya 1 |
|
6 |
Independent control of the repetition rate and optical frequency of a harmonically and regeneratively mode-locked pulse laser |
RIEC, Tohoku Univ. 1 *Nakazawa Masataka 1, Yoshida Masato 1 |
|
7 |
Ultrastable mode-locked laser-type optical atomic clock with an optically pumped Cs gas cell |
RIEC, Tohoku Univ. 1, AIST 2 *Yoshida Masato 1, Nakazawa Masataka 1, Hagimoto Ken 2, Ikegami Takeshi 2 |
|
8 |
Ultra-broad linear scanning light source with absolute frequency based on a fiber frequency comb |
AIST 1, Tokyo univ. of science 2, Univ. of Fukui 3 *Takahashi Hisanari 1,2, Yoshiaki Nakajima 1,3, Hajime Inaba 1, Kaoru Minoshima 1,2 |
|
9 |
Carrier envelope offset locked frequency comb with low pulse energy by using V-groove splicing |
NTT Basic Research Lab. 1,NTT Access Network Service Systems Lab.2, NTT Photonics Lab.3, NEL Techno4, *Ishizawa Atsushi1, Nishikawa Tadashi1, Aozasa Shinichi2, Mori Atsushi3, Hiraki Yousuke3,4, Tadanaga Osamu3, Asobe Masaki3, Nakano Hidetoshi1 |
| △ |
10 |
Wide-band flat optical frequency comb generation using a fiber loop modulation |
Ritsumeikan Univ. 1 *Hirano Masaki 1 |
|
11 |
Wideband Spectrum Generation by a Fiber FM Laser |
Ritsumeikan Univ, 1 *Kouchi Kazuki 1, Hirano Masaki 1, Mitaki Masatoshi 1, Wada Taisuke 1, Morimoto Akihiro 1 |
| △ |
12 |
Ultrahigh speed wavelength tunable ultrashort pulse laser source around 1.0-1.4 μm |
Osaka Univ *Kazuhiko Sumimura, Norihiko Nishizawa, Kazuyoshi Itoh |
| |
|
Break 11:00〜11:10 |
|
|
13 |
Control of ultrahosrt pulse at visible region using pulse trapping in photonic crystal fibers |
Osaka Univ. 1 *Nishizawa Norihiko 1, Itoh Kazuyoshi 1 |
|
14 |
Development of a laser with 1.3GHz repetition rate via external repetition rate multiplication
|
Univ. of Tokyo 1,AIST 2,Shibaura Inst. of Technology 3,KEK 4,Hiroshima Univ. 5 Kawasaki Taisuke 1,*Kobayashi Yohei 2,Tani Shuichi 3,Yoshitomi Dai 2,Nakamura Norio 1,Kuriki Masao 5,Kawata Hiroshi 4,Torizuka Kenji 2 |
|
15 |
110W ultrashort pulse amplification by enhancement cavity |
SIT 1,AIST 2,JST CREST 3, *Tani Shuichi 1,Yokoi Hideki 1,Yoshitomi Dai 2,3,Kobayashi Yohei 2,3,Torizuka Kenji 2,3, |
|
16 |
Enhancement of Ti:Sapphire laser pulses with an external optical cavity |
NICT Tetsuya Ido |
|
17 |
80-MHz, high power, ytterbium-fiber CPA system |
AIST 1, JST-CREST 2 *Xiangyu Zhou 1,2, Yohei Kobayashi 1,2, Dai Yoshitomi 1,2, Kenji Torizuka 1,2 |
|
18 |
Chirp compensation with liquid-crystal spatial light modulator from ultraviolet to near infrared II |
Hokkaido Univ. 1, JST-CREST 2 *Sakakibara Yu 1,2, Fang Shao Bo 1,2, Tanigawa Takashi 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2 |
|
19 |
Improvement of spectral phase measurement system for ultrabroadband pulse generated by induced-phase modulation |
Hokkaido Univ. 1 , JST-CREST. 2 *Katayose Masato 1,2 , Yamane Keisaku 1,2 , Sekikawa Taro 1,2 , Yamashita Mikio 1,2 |
| △ |
20 |
High-resolution spectral shearing interferometer |
ILS/UEC *Hitoshi Tomita 1, Hajime Nishioka 1 |
|
21 |
Characterization of Fourier-synthesized waveforms using interference of simultaneous frequency-mixing processes |
AIST 1, JST-CREST 2 *Dai Yoshitomi 1,2, Yohei Kobayashi 1,2, Kenji Torizuka 1,2 |
|
22 |
Analytical Study on the Spectral Phase of Multiple CARS Signals in LiNbO3 |
Hokkaido Univ., CREST-JST Eiichi Matsubara, Taro Sekikawa, M. Yamashita |
|
23 |
Phase characterization of multiple CARS signals with over-one octave bandwidth in KTaO3 towards ultrashort pulse generation |
Department of Applied Physics,Hokkaido Univ. 1,JST-CREST. 2 *Yuta Kawamoto 1,2, Eiichi Matsubara 1,2, Taro Sekikawa 1,2, Mikio Yamashita 1,2 |
| 4.4 Ultrafast lasers and High Field Lasers |
| Sept. 4 9:15〜10:00 |
| 4a-ZB- / III |
|
1 |
Reviw Paper Award: Recent progress in the technique of ultrashort-pulse generation |
University of Tokyo Shuntaro Watanabe, Shunsuke Adachi |
|
2 |
Generation of high-order sum and difference frequencies by combining a tunable laser field |
Grad. Scholl of Sci. the Univ. of Tokyo 1 *Oguchi Yuichiro 1, Minemoto Shinichirou 1, Sakai Hirofumi 1 |
| 4.4 Ultrafast lasers and High Field Lasers |
| Sept. 4 |
| 4a-ZB- / III |
| |
ショートプレゼンテーション(各5分)10:00〜12:00
4a-ZB-3〜24 ポスター展示時間13:00〜15:00 |
|
3 |
Development of the technique to truncate two-color laser fields toward the control of molecular orientation |
Univ. of Tokyo 1 *Keita Oda 1, Shinichirou Minemoto 1, Masahiro Muramatsu 1, Hirofumi Sakai 1
|
| △ |
4 |
Induction of a coherent molecular motion through two-color stimulated Raman scattering |
Graduate School of Eng. 1, Center for Future Chem. 2, Kyushu Univ. *Yuichiro Kida 1, Shin-ichi Zaitsu 1, Totaro Imasaka 1,2 |
| △ |
5 |
Effect of the degree of molecular alignment on high-order harmonic generation |
Kyoto Univ. 1 *Kazumichi Yoshii 1, Godai Miyaji 1, Kenzo Miyazaki 1
|
|
6 |
Above-threshold Ionization and High harmonic generation by mid- and far-infrared pulses |
Inst. of Adv. Energy, Kyoto Univ. 1 Liu Chengpu*, Nakajima Takashi, Sakka Tetsuo, Ohgaki Hideaki
|
|
7 |
Quantum path selection in high harmonic generation by phase-locked two-color fields |
ISSP 1, CREST 2, PRESTO 3 *Nobuhisa Ishii 1,2, Atsushi Kosuge 1,2, Teruto Kanai 1,2, Jiro Itatani 1,3, Shunsuke Adachi 1,2, Shuntaro Watanabe 1,2 |
|
8 |
High-order harmonic generation in polyatomic molecules and the selection rule of the field-induced rescattering electron spectroscopy |
RIKEN *Kanai Tsuneto 1, Takahashi Eiji J. 1, Nabekawa Yasuo 1, Midorikawa Katsumi 1 |
|
9 |
Development of 2D TOF mass spectrometer for attosecond-pulse-train autocorrelation measurement |
RIKEN 1, Univ. Tokyo 2 Furukawa Yusuke 1, Nabekawa Yasuo 1, Okino Tomoya 2, Yamanouchi Kaoru 2, Midorikawa Katsumi 2 |
| |
|
Break 10:35〜10:45 |
|
|
10 |
Generation of Broadband Raman sidebands stabilized to an optical frequency standard |
Univ.of Elentro-Comm. 1, AIST 2, JST-PRESTO 3, *Kentarou Shiraga 1, Feng-Lei Hong 2, Masayuki Katuragawa 1,3, Takayuki suzuki 1,3, Masaki arakawa 1
|
|
11 |
Generation of self-phase-stabilized pulses for intense few-cycle laser system |
ILE Osaka Univ.1, Hamamatsu Photonics K. K. 2, JAEA3 , ILT4, Univ.Electro-Commu5, JST ICORP6, JST CREST7 ○K. Sueda1,7, T. Hontani1, Z. Baozhen1,6, T. Kawashima2,7, K. Yamakawa3.7, M. Fujita4,7, J. Kawanaka1,7, T. Kbayashi5,6, N. Miyanaga1,7
|
|
12 |
Chirped pulse amplification of high-energy diode-pumped zig-zag slab laser |
ILE Osaka Univ.1, Hamamatsu Photonics K. K. 2, JAEA3 , ILT4, Univ.Electro-Commu5, JST ICORP6, JST CREST7 ○K. Sueda1,7, T. Kurita2,7, T. Sekine2,7, T. Kawashima2,7, K. Yamakawa3.7, M. Fujita4,7, J. Kawanaka1,7, T. Kbayashi5,6, N. Miyanaga1,7 |
|
13 |
Generation of TW-class, 2 cycle pulses using a hollow fiber (2) |
RIKEN 1, Tokai Univ. 2 *Bohman Samuel 1,2, Suda Akira 1, Kanai Takuya 2, Kamba Yasuhiro 2, Yamaguchi Shigeru 2, Midorikawa Katsumi 1 |
|
14 |
Generation of high-powered optical pulses in monocycle regime by use of angularly-dispersed noncollinear optical parametric amplification |
Hokkaido Univ. JST-CREST 1 Keisaku Yamane 1, Takashi Tanigawa 1, Taro Sekikawa 1, Mikio Yamashita 1 |
|
15 |
Study of a Pulse Stretcher and a Pulse Compressor for an OPCPA System |
AIST 1, SIT 2 Takada Hideyuki 1, Ebine Tetsuya 2, Kakehata Masayuki 1, Torizuka Kenji 1, Homma Tetsuya 2 |
|
16 |
10-mJ class femtosecond optical parametric amplifier for generating soft x-ray harmonics |
RIKEN Extreme Photonics Res. 1
RIKEN Laser Tech. Lab. 2 Eiji J. Takahashi 1, Tsuneto Kanai 2, Yasuo Nabekawa 1, Katsumi Midorikawa 1 |
| △ |
17 |
Ultrabroadband optical parametric chirped-pulse amplification system (6)
-Diode-pumped cryogenically-cooled Yb:LiYF4 chirped-pulse amplification system toward higher output energy- |
JAEA 1,JST-CREST 2,ILE Osaka 3,ILS 4,ILT 5 *Kanade Ogawa 1 2,Yutaka Akahane 1 2,Makoto Aoyama 1 2,Koichi Tsuji 1,Junji Kawanaka 2 3,Hazime Nisioka 4,Masayuki Fujita 2 3 5,Koichi Yamakawa 1 2 |
|
18 |
Numerical analysis of ultrabroad optical parametric chirped pulse amplification pumped with two beams |
Univ. of Yamanashi 1, Japan Atomic Energy Agency 2 *Ikegaya Kazutaka 1, Harimoto Tetsuo 1, Yamakawa Koichi 2 |
|
19 |
Development of a refracting telescope with large aperture for ultra high power lasers |
MITSUBISHI ELECTRIC Co. 1 *Jiro Suzuki, Yasuhisa Tamagawa, Yoshihito Hirano |
|
20 |
Vacuum ultraviolet rare-gas excimer amplifier excited by a high-intensity laser |
Univ. of Miyazaki 1, CRC, Univ. of Miyazaki 2, ILE, Osaka Univ. 3 Shunsuke Touge 1, Shinya Harano 1, Masahito Katto 2, Masanori Kaku 1, Atsushi Yokotani 1, Shoichi Kubodera 1, Noriaki Miyanaga 3, and Kunioki Mima 3 |
| △ |
21 |
Measurement of Electron Emission Area of Electron Sources Produced by Intense Laser |
ICR Kyoto Univ. 1,GSS kyoto Univ. 2 *Inoue Shunsuke 1,2 ,Tokita Shigeki 1,2 ,Masuno Shinichiro 1,2 ,Hashida Masaki 1,2 ,Shuji Sakabe 1,2 |
|
22 |
Control of divergence at quasi-monoenergetic electron beam driven by intense laser |
JAEA 1, Facul. of Eng., Osaka U 2, Inst. of Laser Eng., Osaka U 3 Michiaki Mori 1, Yoshio Mizuta2,3, Kiminori Kondo1, Mamiko Nishiuchi1, Masataka Kado1, Masaki Kando1,Alexander Pirozhkov1 Hideyuki Kotaki1, Koichi Ogura1, Hironori Sugiyama1, Timur Esrikepov1, Sergei Bulanov1, Hiroyuki Daido1, Kazuo Tanaka2,3, and Hiroaki Nishimura3 |
|
23 |
Laser induced forward transferred target for generation of high energy particles (II). |
Inst. for Chemical Research, Kyoto Univ. 1, Grad. School of Science 2 *Shin-ichiro Masuno 1 2, Shigeki Tokita 1 2, Masaki Hashida 1 2, Shuji Sakabe 1 2 |
|
24 |
Development of femto-second X-ray diffraction V |
Kyoto Univ. 1, JST-CREST 2 *Masaki Hada 1,2, Jiro Matsuo 1,2 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| Sept. 2 9:00〜12:00 |
| 2a-ZB- / III |
|
1 |
Generation of ultraviolet Raman emissions pumped by an ultrashort pulse using a hollow fiber |
Graduate School of Eng. 1,Center for Future Chem. 2 *Shakano taku 1,Zaitsu Shin-ichi 1,Imasaka Totaro 1,2 |
|
2 |
Spectral broadening of mid-infrared ultrashort pulses by self-phase modulation |
Tokyo Univ.of Agri. & Tech. 1, PRESTO/JST. 2 ○Y .Kawahara1 and S.Ashihara1,2 |
|
3 |
Generation of an ultrashort pulse train by phase-locked continuous-wave multiple-wavelength Raman laser |
Graduate School of Eng. 1, Center for Future Chem. 2, Kyushu Univ. *H. Izaki 1, S. Zaitsu 1, T. Imasaka 1,2 |
|
4 |
Quantitative First Principles Calculations of THG Nonlinear Optical Susceptibilities of Materials |
Advanced Res Lab., Hitachi Ltd. 1, NIMS 2 Tomoyuki Hamada 1, Takahisa Ohno 2 |
|
5 |
Generation and characterization of mid- and far–infrared ultrashort pulses in DAST |
IIS Univ. of Tokyo 1,Tokyo Univ. of Agriculture and Technology 2,PRESTO/JST3 , Grad. Sch. Eng., Osaka Univ. 4 *Yoshihiro Toya 1,Shunsuke Yamamoto 1,Takuya Satoh 1,Satoshi Ashihara 2,3,Tsutomu Shimura 1,Kazuo Kuroda 1,Yoshinori Takahashi 4,Masashi Yoshimura 4,Yusuke Mori 4, Takatomo Sasaki 4 |
| |
|
Break 10:15〜10:30 |
|
|
6 |
Increase of THz output power with increasing thickness of DAST crystal |
Furukawa Co. Ltd.1,RIKEN Sendai 2,ECEI Tohoku Univ. 3, *Hamano Akihide 1,Ohno Seigo 2,Suzuki Chisato 1,Miyamoto Katsuhiko 2,Ito Hiromasa 2,3, |
| △ |
7 |
Evaluation of THz-TDS system using DAST crystal |
Inst. of Lser Engineering ,Osaka Univ. 1 , OTSUKA ELECTRONICS CO.,LTD. 2 ,Graduate School of Engineering, Osaka University 3 *Y. Takemoto 1, K. Takeya 1, I. Kawayama 1, H. Murakami 1, Y. Izutani 2, K. Kitagishi 2, T. Matsukawa 3, Y. Takahashi 3, M. Yoshimura 3, Y. Kitaoka 3, Y. Mori 3, T. Sasaki 3, M. Tonouchi 1 |
| △ |
8 |
Transmission enhancement of metallic periodic structure with bow tie shaped apertures |
Advantest Labs. 1, Nagoya Univ. 2, RIKEN 3 *Kato Eiji 1 2, Sizu Koji 2, Kawase Kodo 2 3 |
| △ |
9 |
Dependence of optical nonlinearities in silicon on incident pulse width |
Shizuoka Univ. *Shinkawa kenta , Ogusu Kazuhiko |
|
10 |
Laser-Ablation Generated Sub-wavelength Gratings Formed on Silicon Surfaces for Anti-reflection in Terahertz Region |
Utsunomiya Univ. 1, Tochigi Nikon 2 *Oyama Satoshi 1, Kuroo Shinichi 1 2, Fukushima Kazushiro 2, Sasho Hiroyuki 1, Yoda Hidehiko 1, Shiraishi Kazuo 1 |
| △ |
11 |
Reflection characteristics of metallic photonic crystals in terahertz region |
Shinshu Univ. 1, PREST JST 2, RIKEN 3 *Sasagawa Yuuki 1,Miyamaru Fumiaki 1,2,3,Takeda Mituo 1,Otani Chikou 3 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| Sept. 3 10:00〜18:00 |
| 3a-ZE- / III |
|
1 |
Terahertz emission characteristics from H-Fractal Antenna
|
Faculty of Science, Shinshu Univ. 1, PREST.JST 2, Hong Kong Univ. of Science and Technology 3 Yuu Saito 1, Fumiaki Miyamaru 1,2, Mitsuo Wada 1, TakedaLiyu Liu 3,Bo Hou 3,Weijia Wen 3,Ping Sheng 3 |
|
2 |
Transmitting effect of metal wire-grid on its thickness ranging through THz reigion |
Murata. Mfg. 1, Kyoto Univ. 2 *Takashi Fujii 1, Yukio Sakabe 1, Kazuyuki Hirao 2 |
|
3 |
Resonant terahertz transmission through incommensurate metal hole arrays |
Inst. of Laser Engineering, Osaka Univ. 1, Tohoku Univ. 2, Osaka Univ. 3, Nihon Univ. 4, Shinshu Univ. 5 Takano Keisuke 1, Izumi Keita 2, Hiroshi Miyazaki 2, Ozeki Yasuyuki 3, Kazuyoshi Itoh 3, Jinba Yoji 4, Miyamaru Fumiaki 5, Masanori Hangyo 1 |
|
4 |
Josephson plasma excitation in intrinsic Josephson junction
under external mgnetic field and direct current |
RIST 1 *Mikio Iizuka 1, Hisashi Nkamura 1 |
|
5 |
Observation of surface plasmon on the metal wire-grid with THz attenuated total reflection method |
Kyoto Univ. 1, Murata Mfg. 2 Takanori Okada1, Takashi Fujii2, Yuuya Maruyama1, Katsuhisa Tanaka1, Yosuke Minowa1, Masaya Nagai1, Koichiro Tanaka1 |
| |
|
Break 11:15〜11:30 |
|
|
6 |
One-dimensionally mapped coupled equation for optical parametric process under ultrafast and tilted wavefront excitation |
Dep. Physics, Kyoto Univ. 1, PREST JST 2, iCeMS Kyoto Univ. 3 Nagai Masaya 12, Jewariya Mukesh 1 , Tanaka Koichiro 13 |
| ▲ |
7 |
CW Terahertz-wave Generator for High Resolution Spectroscopy |
Tohoku Univ. 1, TOYOTA Central R&D Labs., Inc. 2, Tokyo Metropolitan Univ. CPA 3 *Ragam Srinivasa 1, Tanabe Tadao 1, Ohkado Makoto 2, Oyama Yutaka 1, Fujikawa Hisayoshi 2, Yamada Naoyuki 2, Sasaki Tetsuo 3, Nishizawa Jun-ichi 3 |
| ▲ |
8 |
Two directional continuous-wave THz wave generator by pumping two semiconductor lasers with a single fiber amplifier |
Tohoku Univ. 1, TOYOTA Central R&D Labs., Inc. 2, Tokyo Metropolitan Univ. CPA 3 *Ragam Srinivasa 1, Tanabe Tadao 1, Ohkado Makoto 2, Oyama Yutaka 1, Yamada Naoyuki 2, Sasaki Tetsuo 3, Nishizawa Jun-ichi 3 |
| ▲ |
9 |
CW Terahertz wave output power dependence with GaP crystal length and beam spot size of Laser diodes |
Tohoku Univ. 1, TOYOTA Central R&D Labs., Inc. 2, Tokyo Metropolitan Univ. CPA 3 *Ragam Srinivasa 1, Tanabe Tadao 1, Ohkado Makoto 2, Oyama Yutaka 1, Fujikawa Hisayoshi 2, Yamada Naoyuki 2, Sasaki Tetsuo 3, Nishizawa Jun-ichi 3 |
|
10 |
THz Radiation by direct optical modulation of spontaneous polarization in ferroelectric material |
Osaka Univ. *M. Tonouchi, D. Rana, K. Takahashi, I. Kawayama, H. Murakami |
| ▲ |
11 |
Oscillation Characteristics of Integrated Patch Antennas in 0.2THz Oscillating TUNNETT Diodes |
Tohoku Univ. *Balasekaran Sundararajan 1, Endo Kazuomi 1, Tanabe Tadao 1, Oyama Yutaka 1 |
| |
|
Lunch 13:00〜14:00 |
|
| 3p-ZE- / III |
|
1 |
Elliptically polarized THz-wave generation from GaP waveguide |
Tohoku Univ. 1,Tokyo Metropolitan Univ. 2 *Kyosuke Saito 1,Tadao Tanabe 1, Yutaka Oyama 1, Tomoyuki Kimura 2, Tetsuo Sasaki 2, Jun-ichi Nishizawa 2 |
|
2 |
Tunable Terahertz-wave Parametric Generator pumped by Microchip Nd:YAG Laser |
RIKEN 1, Tohoku Univ. 2, Nagoya Univ. 3, Hamamatsu Photonics K. K. 4, Nagaoka Univ. of Tech. 5, Inst. for Molecular Science 5 Shin'ichiro Hayashi 1, 2, Takayuki Shibuya 1, 3, Hiroshi Sakai 4, Takanari Yasui 5, Takunori Taira 6, Yuichi Ogawa 2, Chiko Otani 1, and Kodo Kawase 1, 2, 3 |
|
3 |
Development of a compact and high-power mid-infrared tunable optical parametric oscillator |
Osaka Univ. 1,Tokyo Univ. of Science 2,RIKEN 3 *Hisanao Hazama 1,Masaki Yumoto 2,3,Takayo Ogawa 3,Satoshi Wada 2,3,Kunio Awazu 1 |
|
4 |
Development and application of high power THz radiation sources- Gyrotrons |
University of Fukui, Research Center for Development of Far Infrared Region Idehara Toshitaka 1 |
|
5 |
Indirect Pump Scheme for High Temperature Operation of THz Quantum Cascade Lasers |
Hamamatsu Photonics K.K., Central Reserch Labs. 1 *Yamanishi Masamichi 1, Fujita Kazuue 1, Edamura Tadataka 1, Kan Hirofumi 1 |
|
6 |
A development of high repetition rate pump source for quasi-CW THz generation |
RIKEN Sendai1, Chiba Univ.2, Tohoku Univ.3 K. Miyamoto1, T. Omatsu2, H. Minamide1, H. Ito1,3 |
|
7 |
Improvement of sensitivity of slot antenna coupled GaAs SBDs at 100 GHz band |
National Defense Academy 1,Fukui Univ. 2 *Hayashi Kousuke 1,Uchida Takashi 1,Furuya Takeshi 2,Tachiki Takashi 1,Idehara Toshitaka 2, Yasuoka Yoshizumi 1,2 |
|
8 |
Sub-THz RTD Oscillators Integrated with Planar Horn Antennas for Horizontal Radiation |
Tokyo Tech. 1,NTT Photonics Laboratories 2 *Urayama Kenta 1,Suzuki safumi 1,Asada Masahiro 1,Sugiyama Hiroki 2,Yokoyama Haruki 2 |
| |
|
Break 16:00〜16:15 |
|
|
9 |
Fabrication and Characteristics of InP Schottky Barrier Diode with Bow-Tie Antenna and THz Signal Detection |
Tokyo Tech 1 *Ryo Yokoyama 1, Satoshi Aoki 1, Kouichi Karashima 1, Masahiro Asada 1 |
|
10 |
Terahertz-wave detection by InP-based Schottky barrier diode fabricated using UTC-PD epi-layers |
Kitasato Univ. 1, NTT PH Labs. 2, Osaka Univ. 3, NEL 4 *Hiroshi Ito 1, Fumito Nakajima 2, Tetsuichiro Ohno 2, Tomofumi Furuta 2, Tadao Nagatsuma 3, and Tadao Ishibashi 4 |
|
11 |
The propagation characteristic of the THz pulse in the discontinuous point of a Micro Strip-lines |
Hiroshima Univ. 1 *Sato Naoko 1,Kitagawa Jiro 1,Kadoya Yutaka 1 |
|
12 |
Terahertz Integrated Device with Vertical Electric Field Type Photoconductive Switches II |
Canon 1, RIKEN 2 *Kasai Shintaro 1, Tanabashi Akihiro 2, Kajiki Kousuke 1, Yamashita Masatsugu 2, Ito Hiromasa 2, Ouchi Toshihiko 1,2 |
|
13 |
Vibrational noise of THz photoconductive semiconductor detector system with a 4K Cryocooler for sensing on the ground |
Shizuoka Univ. 1, JAXA 2, Tokai Univ. 3 *Makoto Aoki 1, Kento Mochizuki 1, Saroj Tripathi 1, Norihisa Hiromoto 1,
Kentaroh Watanabe 2, Hiroshi Murakami 2, Moriaki Wakaki 3
|
|
14 |
THz dielectric response photo-excited carriers in quantum wells |
Hiroshima Univ. 1 Tone Takayuki 1,Yoshioka Takashi 1,Kadoya Yutaka 1 |
|
15 |
Terahertz time-domain spectroscopy for characterization of dielectric thin films |
Yokohama National Univ. 1, Osaka Univ. 2,3, PRESTO JST 4 *Katayama Ikufumi 1, Shimosato Hiroshi 2, D. S. Rana 3, Kawayama Iwao 3, Tonouchi Masayoshi 3, Ashida Masaaki 2,4 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| Sept. 4 10:00〜18:00 |
| 4a-ZE- / III |
|
1 |
Fabrication of Three-Dimensional Diamond Terahertz Photonic Crystals with Spherical Lattice |
Tohoku Univ. 1 Takagi Kenta 1, Omote Masanori 1, Kawasaki Akira 1 |
|
2 |
Analysis of Enzyme Reaction Using THz Chemical Microscope |
Okayama Univ. 1, ILE, Osaka Univ. 2 Toshihiko Kiwa 1, Iwao Kawayama 2, Masayoshi Tonouchi 2, Keiji Tsukada 1 |
|
3 |
Water level mapping of sliced samples using THz wave |
RIKEN Sendai1, Tohoku Univ.2,3 T. Ikari1, S. Aiba2, Y. Ito2, M. Hiroaki1, H. Ito1,3 |
|
4 |
Terahertz time domain spectroscopy of structure-II gas hydrates |
Osaka Univ. ILE. 1, Osaka Univ. Graduate School of Eng. 2 Takeya Kei 1, Kawayama Iwao 1, Murakami Hironaru 1, Matsukawa Ken 2, Takahashi Yoshinori 2, Yoshimura Masashi 2, Kitaoka Yasuo 2, Mori Yusuke 2, Sasaki Takatomo 2, Tonouchi Masayoshi 1 |
|
5 |
Terahertz Spectroscopy of Polyaniline films on Metal Surface |
Tohoku Univ. 1, DENSO CORPORATION 2, Tokyo Metropolitan Univ. CPA 3 *Tanabe Tadao 1, Takagi Tomomi 2, Gotou Takayuki 1, Oyama Yutaka 1, Sobue Susumu 2, Hayashi Hitoshi 2, Sasaki Tetsuo 3, Nishizawa Jun-ichi 3 |
| |
|
Break 11:15〜11:30 |
|
|
6 |
ATR Spectroscopy of ethanol in water by using GaP THz signal generator |
Tohoku Univ. 1, TOYOTA Central R&D Labs., Inc. 2, Tokyo Metropolitan Univ. CPA 3 *Tanabe Tadao 1, Gotou Takayuki 1, Ohkado Makoto 2, Oyama Yutaka 1, Yamada Naoyuki 2, Sasaki Tetsuo 3, Nishizawa Jun-ichi 3 |
|
7 |
THz Spectroscopy of polar solvents |
Tohoku Univ. 1,Tokyo Metropolitan Univ. 2 *Hideyuki Oyama 1,Tadao Tanabe 1,Yutaka Oyama 1,Tetsuo Sasaki 2,Jun-ichi Nishizawa 2 |
|
8 |
Negative dynamics conductivity of graphene in the terahertz band at room temperature |
Tohoku Univ.1, Univ. of Aizu2, JST-CREST3 Hiromi Karasawa1, Taiichi Otsuji1,3, Maxim Ryzhii2,3, Victor Ryzhii2,3 |
|
9 |
Analysis of electron spin resonance spectrum by terahertz time domain spectroscopy |
Institute of Laser Engineering, Osaka Univ. 1, Molecular Photoscience Research Center, Kobe Univ. 2 *Kohei Kozuki 1, Takeshi Nagashima 1, Masanori Hangyo 1, Susumu Okubo 2, Hitoshi Ohta 2 |
|
10 |
THz detection using a hybrid device of a carbon nanotube and a two-dimensional electron gas in GaAs |
RIKEN 1, JST PRESTO 2 Kawano Yukio 1,2, Uchida Takao 1, Ishibashi Koji 1 |
|
11 |
Observation of bio related and agrichemical materials by terahertz time domain spectroscopy |
Univ of Tokyo Yamada Yuki 1,Uno Takeshi 1,Seki Munetoshi 1,Tabata Hitoshi 1 |
| |
|
Lunch 13:00〜14:00 |
|
| 4p-ZE- / III |
|
1 |
Spectral analysis of medicine by GaP THz spectrometer |
Tokyo Metro. Univ. CPA 1, Tohoku Univ. 2 Jun-ichi Nishizawa 1, *Tetsuo Sasaki 1, Tadao Tanabe 2 |
|
2 |
Terahertz Spectroscopy of Leucine by Using GaP THz Signal Generator |
Tohoku Univ. 1, NIHS 2, Tokyo Metro. Univ. CPA 3 Tadao Tanabe 1, Tomoaki Sakamoto 2, *Tetsuo Sasaki 3, Tooru Kawanishi 2, Yukio Hiyama 2, Yutaka Oyama 1, Jun-ichi Nishizawa 3 |
|
3 |
Wide band terahertz spectroscopy for analysis of pathological specimen 2nd report |
Iwate Med. Univ.1, Empen Univ.2, Tokyo Metro. Univ.3 Miura Yasuhiro1, Jin Reishun2, Sawai Takashi1, Nishizawa Jun-ichi3, Sasaki Tetsuo3 |
|
4 |
THz-wave detection using nonlinear optical up-conversion with organic crystal DAST |
RIKEN Sendai 1, Tohoku Univ. 2 *Minamide Hiroaki 1, Guo Ruixiang 1, Ohno Seigo 1, Miyamoto Katsuhiko 1, Ikari Tomofumi 1, Ito Hiromasa 1,2 |
|
5 |
Doppler frequency conversion using an optical delay circuit with a reflector array |
NIT *Nishihara Hiroto 1, Suzuki Sho 1,Nawa Shintaro 1,Bae Jongsuck 1 |
|
6 |
Solid-State Frequency Converter Using the Doppler Effect in the THz Region |
N.I.T. *Suzuki Sho 1, Sintarou Nawa 1, Bae Jongsuck 1 |
|
7 |
Tapered Slot Antennas using for the Doppler Frequency Converter at Terahertz Band |
Nagoya Inst. of Tech. Nawa Shintaro 1,Suzuki Sho 1,Bae Jongsuck 1 |
|
8 |
Study of Spectroscopy by a 2D-Plasmon Resonant Microchip Emitter in THz range |
Tohoku Univ,1 *Tsuneyoshi Komori 1, Yuki Tsuda 1,,Chen Hibo 1, Yahya Meziani 1, Taiichi Otsuji 1 |
| |
|
Break 16:00〜16:15 |
|
|
9 |
Consideration on THz spectrometer using photomixing of multimode LD V |
Japan Coast Guard Academy 1, Osaka Univ. 2 *Morikawa Osamu 1, Fujita Masami 1, Hangyo Masanori 2 |
| △ |
10 |
Polarization of Terahertz Radiation from Laser-induced Gas Plasmas |
Institute of Laser Engineering, Osaka University. 1,Fukui University. 2 *Hirayama Heijiro 1, Nagashima Takeshi 1, Hangyo Masanori 1, Tani Masahiko 2 |
| △ |
11 |
Direct Conversion from Optical Signal to THz and Sub-THz Signals by Photogenerated Carrier Modulation |
Dept. of Electrical and Electron. Engineering1, Dept. of Electron. and Appl. Phys.2, Quantum Nanoelectronics Research Center, Tokyo Tech3 *Yuki Numajiri1, Ryo Yokoyama2, Mizuki Shirao1, Nobuhiko Nishiyama1, Masahiro Asada2,3, and Shigehisa Arai1,3 |
| △ |
12 |
Development of Laser Scanning Terahertz Emission Microscope using Galvano meters |
Institute of Laser Engineering, Osaka Univ. 1, RIKEN 2, HAMAMATSU Hotonics 3 *Kaneko Daisuke 1, Kim Sunmi 1, Yamashita Masatsugu 2, Matsumoto Toru 3, Murakami Hironaru 1, Otani Chiko 2, Tonouchi Masayoshi 1 |
|
13 |
Terahertz beam steering by using difference frequency mixing and the principle of phased array antennas |
RIKEN 1, Nagoya univ. 2 ○ Ken-ichiro Maki 1, Takayuki Shibuya 2, Chiko Otani 1, Kodo Kawase 1,2 |
| △ |
14 |
Development of Terahertz laser polarimeter with photoelastic modulators |
NIFS 1, Chubu Univ. 2 Akiyama Tsuyoshi 1, Kawahata Kazuo 1, Okajima Shigeki 2, Nakayama Kazuya 2 |
| △ |
15 |
Construction of Laser Scanning THz Imaging System |
Institute of Laser Engineering, Osaka univ. 1 *Mizuno Shori 1,Kim Sunmi 1,Kawayama Iwao 1,Murakami Hironaru 1,Tonouchi Masayoshi 1 |
| 4.5 Nonlinear Optics and THz-wave synthesis |
| Sept. 5 9:00〜11:30 |
| 5a-ZE- / III |
|
1 |
Non-destructive search of soot removal filter using THz-wave |
Nagoya Univ. 1,RIKEN 2 *Goto Yasunori 1,Shibuya Takayuki 1,2,Suzuki Tomotaka 1,Takayanagi Jun 1,Suizu Kouji 1,Kawase Kodo 1,2 |
|
2 |
THz spectroscopy using phonon polariton responses |
Chuo Univ. 1,The Univ. of Electro-Communications 2,Massachusetts Inst. of Technology *Hayato inoue 1,Kenji katayama 1,Qing Shen 2,Taro Toyoda 2,Keith A Nelson 3 |
|
3 |
Configuration of THz-TDS for reflection measurement with polarization |
Shizuoka Univ. 1 Kento Mochizuki1,Makoto Aoki1,Saroj R.Tripathi1,Norihisa Hiromoto1 |
|
4 |
Measurement of small amounts of samples using THz time-domain spectroscopy |
Otsuka Elect. *Izutani Yusuke 1, Kitagishi Keiko 1 |
| |
|
Break 10:00〜10:15 |
|
|
5 |
Improvement and Experiment of Fourier Domain THz Optical Coherence Tomography System |
STAMIC, Osaka Univ., 1, Research Center for Development of Far-infrared Region, Fukui Univ., 2, ILE, Osaka Univ., 3 *Hideaki Kitahara 1, Masahiko Tani 2, Masanori Hangyo 3 |
|
6 |
Real-time, terahertz time-of-flight radar using asynchronous optical sampling technique |
Grad. Sch. Engg. Sci., Osaka Univ. *Takeshi Yasui , Yasuhiro Kabetani , Shuko Yokoyama , Tsutomu Araki |
|
7 |
The first stage of real-time reflective imaging using a DAST-DFG |
RIKEN Sendai 1, Furukawa Co. Ltd. 2, ECEI Tohoku Univ. 3 *S. Ohno 1, K. Miyamoto 1, A. Hamano 2, T. Ikari 1 , H. Minamide 1, H. Ito 1 3 |
| ▲ |
8 |
Examination of accuracy in optical parameters of ZnTe measured by THz-TDS |
Shizuoka University1,NICT2 ,Nippon Mining and Metal3 *Saroj R. Tripathi1,Mochizuki Kento1, Makoto Aoki1, Norihisa Hiromoto1, Iwao Hosako2, Toshiaki Asahi3 |
|
9 |
Simulation of THz Radiation for LSI Failure Analysis Using Laser THz Emission Microscope |
Gra. Sch. Information Science and Technology, Osaka Univ.1, RIKEN2, Inst. Laser Engineering, OsakaUniv.3, NEC Electronics Corp.4 *Yoshihiro Midoh 1, Koji Nakamae 1, Masatsugu Yamashita 2, Masayoshi Tonouchi3, Kiyoshi Nikawa4 |
| 4.6 Laser Spectroscopy and Instrumentation |
| Sept. 2 10:00〜16:00 |
| 2a-ZE- / III |
|
1 |
Remote sensing of hydrogen gas concentration using Raman scattering effect |
Shikoku Research Inst. 1, Central Research Inst. of Electric Power Industry 2, Chiba Univ. 3, Tokai Univ. 4 Hideki Ninomiya 1, Sachiyo Sugimoto 1, Ippei Asahi 1, Yuuzou Shimamoto 1, Tetsuo Fukuchi 2, Tatuo Shiina 3, Sigeru Yamaguchi 4 |
|
2 |
4 \mu m band difference frequency generation in a direct-bonded QPM-LN ridge waveguide and CO isotopomer observation. |
NTT Photonics Labs. 1 *Yanagawa Tsutomu 1, Tadanaga Osamu 1, Magari Katsuaki 1, Asobe Masaki 1 |
|
3 |
Development of fiber-based wavelength locking circuit for 1.6 micron CO2 monitoring DIAL system |
Mitsubishi Electric Corporation *Masaharu Imaki, Shumpei Kameyama, Yoshihito Hirano |
|
4 |
Development of 1.6 micron CW modulation DIAL system for CO2 monitoring |
Mitsubishi Electric Corporation 1, JAXA 2 Kameyama Shumpei 1, Imaki Masaharu 1, Hirano Yoshihito 1, Ueno Shinichi 1, Kawakami Shuji 2, Nakajima Masakatsu 2 |
|
5 |
Monitoring System of a Gas Concentration by using CCD Detector |
Tokyo Polytechnic University 1 *Niwa Yuta 1, Yasuda Yoji 1, Nishimiya Nobuo 1, Suzuki Masao 1 |
|
6 |
Laser Absorption Spectroscopy for CO2 Gas in the Microwave Iron Making II |
Chubu Univ. 1. NIFS. 2 *Matsubara Akihiro, Nakayama Kazuya, Kaneba Takahiro, Akiyama Ryuichi, Takayama Sadatsugu, Sato Motoyasu, and Okajima Shigeki. |
| |
|
Break 11:30〜11:45 |
|
|
7 |
High-sensitivity measurement of salt concentration in concrete by dual-pulse LIBS |
Tokyo Tech 1, CRIEPI 2 *Kiyohiro Sugiyama 1, Takashi Fujii 2, Takuro Matsumura 2, Yuzo Shiogama 2, Koshichi Nemoto 1,2 |
|
8 |
Incoherent Doppler lidar wind measurements with a 1.5µm FBG filter 1 |
Tokyo Metropolitan Univ. 1 *Shibata Yasukuni 1, Nagasawa Chikao 1, Abo Makoto 1 |
| △ |
9 |
Multiple-field-of-view Depolarization Measurement of Clouds Using the a White Light Lidar System |
Inst. Laser Tech. 1, Earth & Space Sci., Osaka Univ. 2, Inst. Laser Eng., Osaka Univ. 3 *Toshihiro Somekawa 1, Chihiro Yamanaka 2, Masayuki Fujita 1,3 |
|
10 |
Distinctive Behavior in Ultrafast Photoisomerization Dynamics of Azobenzene Derivative |
Hokkaido Univ. 1, JST-CREST 2, Nagoya Univ. 3 *Yamaguchi Atsushi 1,2, Nakagawa Naoya 1,2, Igarashi Kazumasa 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2, Asanuma Hiroyuki 2,3 |
|
11 |
Optical control of excited states dynamics of DTTCI molecule by femtosecond shaped pulse |
Kobe Univ. 1, Tokyo Tech. 2 Arnab Halder 1, Kochi Furuta 1, Ikuya Otake 2, Akihide Wada 1 |
| |
|
Lunch 13:00〜14:00 |
|
| 2p-ZE- / III |
|
1 |
Sensitive Detection of Magnetic Birefringence of Noble Gases Using an Optical-Cavity-Based Ellipsometer |
Tokyo Univ of A&T.1 *Morisawa Kazuki 1, Muroo Kazuyuki 1, Takubo Yoshitaka 1 |
|
2 |
Detection of Resonant Voigt Effects of Magnetic-Field Induced Lines in O2 Using Polarimetric Differential
Cavity Ring-Down Method |
Tokyo Univ of A&T. 1 *Yamamoto Satoshi 1,Muroo Kazuyuki 1,Takubo Yoshitaka 1 |
|
3 |
Nuclear polarization of 3He atoms through metastability exchange optical pumping in a hollow cathode discharge |
Osaka City University 1 Tabata Yutaka 1, Maeda Shingo 1, *Kumagai Hiroshi 1, Kobayashi Ataru 1 |
|
4 |
Distributions of the higher order light in the EUV-FEL studied by the recoil ion momentum spectroscopy |
IMRAM, Tohoku Univ. 1, Kyoto Univ. 2, NMIJ/AIST 3, MPI Heidelberg 4, Frankfurt Univ. 5, RIKEN 6, JASRI 7 *H. Fukuzawa1,6, G. Pruemper1,6, X.-J. Liu1,6, M. Okunishi1, K. Shimada1, K. Ueda1,6, T. Harada1, M. Toyoda1, M. Yanagihara1, M. Yamamoto1, H. Iwayama2,6, K. Nagaya2,6, M. Yao2,6, K. Motomura3,6, N. Saito3,6, A. Rudenko4,6, J. Ullrich4, L. Foucar5, A. Czasch5, R. Doerner5, K. Ishikawa6, M. Nagasono6, A. Higashiya6, M. Yabashi6, R. Tanaka6, T. Ishikawa6, Ohashi6,7, H. Kimura6,7 |
|
5 |
Deuterium Analysis in Zircaloy-4 by Using Laser-induced Breakdown Spectroscopy at Low Pressure of Helium |
Graduate School of Engineering, University of Fukui 1, Faculty of Education and Regional Studies, University of Fukui 2 *Junichi Washida 1, Hiroki Sarai 1, Atsushi Takegoshi 1, Hideaki Niki 1, Kenichi Fukumoto 1, Kiichiro Kagawa 2 |
|
6 |
Optogalvanic spectroscopy of silicon atoms using a single-frequency 252-nm nanosecond pulsed light |
Osaka City Univ. 1 Aoki Yuta 1, *Shiomi Yasutomo 1, Yamamoto Takeshi 1, Kumagai Hiroshi 1, Kobayashi Ataru 1 |
|
7 |
Resonant Four-Wave-Mixing Spectra of Semiconductor Dopde Glass |
Ishinomaki Senshu Univ. 1, Ishinomaki Senshu Univ Professor. 2 *Akira Kato 1, Yuuta Fujisawa 1, Hirotoshi Souma 2 |
|
8 |
Nano Second Resonant Four-Wave-Mixing Spectra with Periodic Energy Structures |
Isinomaki Senshu Univ. 1, Isinomaki Senshu Univ. Professor *Fujisawa Yuuta 1, Kato Akira 1, Souma Hirotoshi 2 |
| 4.7 Laser Processing |
| Sept. 4 9:30〜18:15 |
| 4a-V- / III |
|
1 |
High luminance application of ophthalmic orange fiber laser III |
NIDEK Co., Ltd. *Koichi Ito, Jun Suzuki, Jun Nakanishi, Kazunobu Kojima, Tokio Ueno, Ken-ichi Hayashi |
|
2 |
Adaptive Compensation of Spherical Aberration using a Spatial Light Modulator |
Hamamatsu Photonics K.K. *Haruyasu Itoh,Takashi Inoue, Norihiro Fukuchi,Naoya Matsumoto,Tsutomu Hara |
|
3 |
Development of local force detection system for femtosecond laser micro “Tsunami” using atomic force microscope |
Grad. Sch. Mat. Sci., NAIST 1, Tohoku Fukushi Univ. 2, NCTU in Taiwan 3 Yoichiroh Hosokawa 1, Kazunori Okano 1, 2, Hiroshi Masuhara 1, 3 |
|
4 |
Ultrashort laser scribing of thin glass substrates for flat panel displays manufacturing |
Cyber Laser Inc Masanao Kamata, Kazuya Takasago, Sugio Wako, Tomohiro Imahoko, Norihiro Inoue, Tetsumi Sumiyoshi, Hitoshi Sekita |
|
5 |
Incident angle dependence of periodic nanostructure formation on hard thin-film surface with femtosecond laser pulses |
Kyoto Univ. 1 Miyaji Godai 1, Zhan Kaifeng 1, Miyazaki Kenzo 1 |
|
6 |
Mechanism for Self-Organization of Periodic Grating Structures by Nano-Ablation with Femtosecond-Pulse Lasers |
ICR Kyoto Univ.1, GSS Kyoto Univ.2 Sakabe Shuji 1,2, Hashida Masaki 1,2, Tokita Shigeki 1,2, Okamuro Kiminori 1,2, Namba Shin 1,2 |
| |
|
Break 11:00〜11:15 |
|
|
7 |
Structure control induced with femto-second irradiation by modifying laser pattern at pupil plane using a cylindrical lens |
Shizuoka Univ. 1, Hamamatsu Photonics K. K. 2 *Shunji Miyake 1, Shingo Oishi 2, Shinichiro Aoshima 2, Yoshimasa Kawata 1
|
|
8 |
Microfabrication of UV transparent polymer using femtosecond laser direct writing |
RIKEN 1 Hanada Yasutaka 1, Sugioka Koji 1, Midorikawa Katsumi 1 |
|
9 |
Preparation of Highly Efficient Diffractive Grating by Femtosecond Laser Irradiation within Polymer |
AIST 1, Osaka Univ. 2, OMRON Corp. 3 *Hiroyuki Mochizuki 1, Wataru Watanabe 1, Yasuyuki Ozeki 2, Kazuyoshi Itoh 2, Katsumi Matsuda 3, Satoshi Hirono 3 |
|
10 |
Surface modification of iron and steels using femtosecond laser pulses |
Osaka Univ. 1, SPring-8 2, National Defence Academy 3 *Toru Nakashima 1, Tomokazu Sano 1, Osami Sakata 2, Masayuki Okoshi 3, Narumi Inoue 3, Akio Hirose 1 |
|
11 |
Phase transition of silicon by wavelength tunable femtosecond laser |
ILE Osaka Univ. 1, ILT 2 *Izawa Yusaku 1, Fujita Masayuki 2, Norimatsu Takayoshi 1, Izawa Yasukazu 1 |
| |
|
Lunch 12:30〜13:30 |
|
| 4p-V- / III |
| △ |
1 |
Estimation of electrical conductivity for femtosecond laser modified SiC |
The University of Tokushima 1,NICT 2 Masahiro Iwami 1, Takuro Tomita 1,Shigeki Matsuo 1,Shuichi Hashimoto 1,Takahiro Kitada 1,Yoshinori Nakagawa 1,Toshiro Isu 1,Shingo Saito 2 |
| △ |
2 |
Mechanism for nano-ablation of metals with femtosecond laser II |
ICR Kyoto Univ.1, GSS Kyoto Univ.2 *Namba Shin 1,2, Hashida Masaki 1,2, Okamuro Kiminori 1,2, Tokita Shigeki 1,2, Sakabe shuji 1,2 |
| △ |
3 |
Micro-optical elements with high refractive index contrast fabricated by femtosecond laser lithography |
Osaka Univ. 1, AIST 2 *Sugawara Akiyoshi 1, Nishiyama Hiroaki 1, Mizoshiri Mizue 1, Nishii junji 2, Kasa Haruya 2, Hirata Yoshinori 1 |
| △ |
4 |
High strain defects of femtosecond laser-shock loaded silicon |
Osaka Univ. 1,SPring-8 2,National Defense Acad. 3 *Masashi Tsujino 1,Tomokazu Sano 1,Norimasa Ozaki 1, Osami Sakata 2, Shigeru Kimura 2,Masayuki Okoshi 3,Narumi Inoue 3,Ryosuke Kodama 1,Akio Hirose 1 |
| △ |
5 |
Bubble generation by the irradiation of femtosecond laser pulse into water |
Shizuoka Univ.1,CRL, Hamamatsu Photonics K.K.2 * Daiji Sone 1,Manabu Yamamoto 1,Shingo Oishi 2,Shin-ichiro Aoshima 2,Takayuki Saito 1 |
|
6 |
Laser-induced shape conversions of silver nanoparticles in PVP solution. |
Inst. Mater. Chem. & Eng. Kyushu Univ. 1, Grad. Sch. Eng. Sci. Kyushu Univ. 2 *Takeshi Tsuji 1, Shogo Ozono 2, Takeshi Mizuki 2, Masaharu Tsuji 1 |
| △ |
7 |
Development of an efficient analytical method for nanoparticles prepared by laser ablation in liquids. |
Grad. Sch. Eng. Sci. Kyushu Univ. 1, Inst. Mater. Chem. & Eng. Kyushu Univ. 2 Takeshi Mizuki 1, *Takeshi Tsuji 2, Masataka Nakanishi 1, Masaharu Tsuji 2, Takayuki Doi 2, Junichi Yamaki 2 |
| △ |
8 |
Synthesis of Au nanoparticles by laser ablation in high temperature pressurized water. |
Nagoya University 1,3, AIST 2 *Nakano Tetsutaro 1, Soliman Wafaa 1, Takada Noriharu 1, Sasaki Takeshi 2, Sasaki Koichi 3 |
| △ |
9 |
Cutting and Drilling Experiments by a 1kW Azumuthally Polarized Laser |
Amada Advanced Technology Development 1, Dept. of Physics Tokai Univ. 2 Toshimitsu Kuragane 1, Masamori Endo 2 |
| △ |
10 |
Analysis of laser welding mechanism at glass and plastic II |
Tokai Univ. 1,MATSUNAMI GLASS IND.,LTD. 2 Maehara Takahiro 1,Nakamoto Kenjirou 2,Murotani Hiroshi 1,Wakaki Moriaki 1 |
| |
|
Break 16:00〜16:15 |
|
|
11 |
Effect of surface hydrogenation on the formation of aggregated Si nanocrystallites by pulsed laser ablation |
Konan Univ. 1,Quantum Nano Tech. Lab.2 *Okubo Shunto 1,Umezu Ikurou 1,2,Sugimura Akira 1,2 |
|
12 |
Boron carbide particle fabrication by pulsed laser irradiation in liquid: influence of liquid phase |
AIST1, Kagawa Univ.2 *Ishikawa Yoshie 1,2, Sasaki Takeshi 1, Koshizaki Naoto 1, Feng Qi 2 |
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13 |
Preparation of Gold Nanoparticle Solution by a Method of Pulsed Laser Ablation in Liquid |
Nat.Inst.Adv.Ind.Sci.Tech. Nanotech.Res.Inst. 1, Poland-Inst.Nuc.Phys. 2, Kagawa Univ. Eng. 3 *Kawaguchi Kenji 1, Jaworski Jacek 2, Ishikawa Yoshie 3, Sasaki Takeshi 1, Koshizaki Naoto 1 |
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14 |
Synthesis of platinum nanoparticles in intense laser field -dependence of intensity- |
IMRAM., Tohoku Univ. *Takahiro Nakamura 1, Kouichi Takasaki 1, Shunichi Sato 1 |
| ▲ |
15 |
Laser light scattering by nanoparticles in a cavitation bubble induced by liquid-phase laser ablation |
Nagoya Univ. 1 *Soliman Wafaa 1, Nakano Tetsutaro 1, Takada Noriharu 1, Sasaki Koichi 1 |
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16 |
Formation of etch-pit on the target surface by collapse of cavitation bubbles induced by liquid-phase laser ablation |
Nagoya University 1, Suzuka National College Technologh 2 *Takada Noriharu 1, Nakano Tetsutarou 1, Wafaa Soliman 1, Shibagaki Kanji 2, Sasaki Kouichi 1 |
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17 |
Mechanism of re-excitation of liquid phase ablation plume produced by a long ns laser pulse |
Kyoto University 1 Mitsuyoshi Sakata 1, Tetsuo Sakka 1, Kazuhiro Fukami 1, Yukio H.Ogata 1, |
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18 |
Effects of solute on the optical emission of the plume produced by liquid phase laser ablation |
Kyoto Univ. Tetsuo Sakka 1, Hisayuki Oguchi 1, Kazuhiro Fukami 1, Yukio H. Ogata 1 |
| 4.7 Laser Processing |
| Sept. 5 9:00〜12:00 |
| 5a-V- / III |
|
1 |
Fluid mechanics verification of usefulness of double nozzle at thick plate cutting |
Tokai Univ. 1,Amada ATDD. 2, Kotaro Kawai 1, Toshimitsu Kuragane 2, Hiroaki Ishiguro 2, Masamori Endo 1, Hiroshi sako 2 |
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2 |
Optical optimization of hologram based on uniformity estimation of parallel laser beam |
CORE, Utsunomiya Univ. 1 *Hasegawa Satoshi 1, Hayasaki Yoshio 1 |
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3 |
Microchip Fabrication for photo stimulation of cells on UV transparent polymer |
RIKEN 1,Tokyo Univ. of Sience 2 *Tsuchimoto Takayoshi 1,2,Hanada Yasutaka 1,Sugioka Koji 1,2,Midorikawa Katsumi 1 |
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4 |
Void formation into transparent resin material using nano-second pulse laser |
Graduate School of Engineering,SOKA University *Sasaki Masataka 1,Tokita Daisaku 1,Watanabe Kazuhiro 1 |
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5 |
Formation of photoluminescent layer on silicone rubber by ArF laser (4) |
National Defense Academy 1,Kanto Gakuin Univ. 2 *Iyono Minako 1,Okoshi Masayuki 1,Inoue Narumi 1,Yamashita Tsugito 2 |
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6 |
Formation of Photoresist Nanopatterns by Nano-Photolithography |
RIES, Hokkaido Univ. 1, PRESTO-JST 2 *Takabatake Satoaki 1, Ueno Kosei 1,2, Nishijima Yoshiaki 1, Mizeikis Vygantas 1, Juodlkazis Saulius 1, Misawa Hiroaki 1 |
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Break 10:30〜10:45 |
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7 |
Structure control of self-organized porous films by laser light illumination |
Shizuoka Univ. 1 Matsumura Yukimasa 1,Kawata Yoshimasa 1 |
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8 |
Direct observation of sidewalls of deep microtrenches fabricated by LIBWE |
AIST,PRI *Sato Tadatake 1, Kurosaki Ryozo 1, Kawaguchi Yoshizo 1, Narazaki Aiko 1, Niino Hiroyuki 1 |
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9 |
Patterning of Thin Film Indium Tin Oxide Using Laser Transfer Method |
Osaka Univ. 1, Nihon Denki Kagaku Co., Ltd. 2, General Technology Co., Ltd. 3, Ion Engineering Research Inst. Co. 4 *Iwasaki Shogo 1, Sano Tomokazu 1, Katsura Sumio 2, Yoshida Katsuhiro 3, Nakayama Akira 4, Hirose Akio 1 |
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10 |
Pulse laser ablation for observation of grain in local heating system for controlling microstructures |
Graduate School of Eng., Osaka Univ. 1,JWRI, Osaka Univ. 2 Yagi Saburo 1,Yamashita Takuto 1,Tsukamoto Masahiro 2,Shibayanagi Toshiya 2,Abe Nobuyuki 2 |
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11 |
Fabrication of ferroelectric PZT thin films on Si substrate by laser lift off |
Matsushita Electric Works, Ltd. 1, Kyoto Univ. 2 *Tomoaki Matsushima 1, Norihiro Yamauchi 1, Kazuyuki Yamae 1,
Kenichiro Tanaka 1, Kiyotaka Wasa 2, Isaku Kanno 2
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