| 4 Quantum Electronics |
| 4.2 Photonic
Nanostructures - Design, Fabrication and Physics |
| September 6 |
| 6a-P9-@/ III |
| |
|
Poster
Session
6a-P9-1`16@9:30`11:30 |
| ’ |
1 |
Fabrication of GaN-Based Photonic Crystals using
low-index-material buried by re-growth technique |
Kyoto Univ. 1, Sumitomo Electric Indust. 2@*Susumu
Yoshimoto 1 2, Hideki Matsubara 1 2, Yue Jianglin 1, Yoshinori Tanaka 1,
Susumu Noda 1 |
| |
2 |
Green Photo Luminescence of InGaN photonic crystal
at room temperature |
Kyoto Univ. 1, ALPS Elecrtic. 2@*Kitagawa Hitoshi
1,2, Suto Hidetoshi 1,2, Tanaka Yoshinori 1, Fujita Masayuki 1, Asno Takashi
1, Noda Susumu 1 |
| |
3 |
Group-velocity dependence of nonlinear refractive
index due to instantaneous optical Kerr-effect in AlGaAs-based photonic-crystal-slab
waveguide |
Chitose Inst. of Sci. Techn. 1, AIST 2, U. Tsukuba
3, @*Hisaya Oda 1, Yasuhiro Mikami 1, Kuon Inoue 1, Naoki Ikeda 2, Hitoshi
Kawashima 2, Hiroshi Ishikawa 2, Nobuhiko Ozaki 3, Yoshinori Kitagawa 3,
Yoshimasa Sugimoto 3, Kiyoshi Asakawa 3 |
| |
4 |
Criterion for removing a delayed peak from the
nonliniear response of photonic crystal/ quantum dot waveguides |
UEC 1,Univ.Tsukuba 2,NIMS 3@*Honma Masanori 1,Salleras
Ferran 1,Sakaguchi Jun 1,Ueno Yoshiyasu 1,Kitagawa Yoshinori 2,Ozaki Nobuhiko
2,Asakawa Kiyoshi 2,Ikeda Naoki 3,Sugimoto Yoshimasa 2 3 |
| £ |
5 |
Optical Characteristics of Mechanical-Contact-Based
Submicron-Si-Waveguide Optical Microswitch. |
Tohoku Univ. 1@*Erdal Bulgan 1, Yoshiaki Kanamori
1, Kazuhiro Hane 1 |
| |
6 |
Designing of efficient guiding branch in two-dimensional
optical waveguides |
Graduate School of Eng.Sci.,Osaka Univ. 1,TRI of
Osaka Pref. 2@*Nishimori Masato 1,Kusunoki Fumihiri 2,Takahara Junichi 1,Nagatsuma
Tadao 2 |
| |
7 |
Time domain characteristics of 2D-PC double pulse
generators |
AIST Photonics 1, Univ. of Tsukuba 2@* Noritsugu
Yamamoto 1, Jun-ichiro Sugisaka 1 2, Hirofumi Shimada 1 2, Makoto Okano
1, Kazuhiro Komori 1 |
| |
8 |
Localization of multistep heterostructure around
nanocavity |
Kyoto Univ.@Yasushi Takahashi 1, Hiroyuki Hagino
1, Yoshinori Tanaka 1, Takashi Asano 1, Susumu Noda 1 |
| |
9 |
SiC-based 2D photonic crystal waveguides and nanocavities |
Kyoto Univ.1, Sungkyunkwan Univ.2@*Bong-Shik Song
1,2, Takashi Asano 1, and Susumu Noda 1 |
| |
10 |
Optical bistability in 2D-photonic crystal hetero
waveguides |
AIST 1@*Kawashima Hitoshi 1, Ikeda Naoki 1, Hasama
Toshifumi 1, Ishikawa Hiroshi 1 |
| ’ |
11 |
Numerical analysis of localized modes within a
waveguide structure surrounded by a random medium |
RIES, Hokkaido Univ.@*Yosuke Hamabata 1,Hideki
Fujiwara 1, Keiji Sasaki 1 |
| |
12 |
Characteristics of complex resonator consists of
different periodic 2D photonic-crystals |
Kyoto Univ. 1,ROHM 2@*Kurosaka Yoshitaka 1, Sakai
Kyosuke 1, Kashiwagi Jyunichi 1, Ohtsuka Koji 1, Miyai Eiji 1,2, Ohnishi
Dai 1,2, Kunishi Wataru 1,2, Noda Susumu 1 |
| ’ |
13 |
Coupled Wave Analysis of Non-band-edge Region |
Kyoto Univ. 1,Rohm Co.Ltd. 2@Koji Otsuka 1,Sakai
Kyosuke 1,Kunishi Wataru 1,2,Onishi Dai 1,2,Noda Susumu 1 |
| |
14 |
Observation of Guided-Resonance in Photonic Crystal
Slabs with Liquid Crystal (III) - Comparison between Liquid Crystal States
and Types |
Yokohama Nat'l Univ.@*Inoue Naoko 1, Baba Toshihiko
1 |
| |
15 |
Light Transmission Characteristics of All Semiconductor
Photonic Crystal Active Waveguide Under Current Injection |
Yokohama Nat'l Univ. 1 The Furukawa Electric 2@*Watanabe
Hideki 1,Kiyota Kazuaki 2,Nakada Takeharu 1,Baba Toshihiko 1,Kise Tomofumi
2,Yokouchi Noriyuki 2 |
| |
16 |
Active/Passive-Integrated Photonic Crystal Slab
− Improvement of Efficiency by Chirped Structure |
Yokohama Nat'l Univ. 1@*Watanabe Hideki 1,Baba
Toshihiko 1 |
| 4.2 Photonic
Nanostructures - Design, Fabrication and Physics |
| September 6 |
| 6p-P11-@/ III |
| |
|
Poster Session
6p-P11-1`12 13:00`15:00 |
| £ |
1 |
Fabrication and optical characterization of Photonic
Crystal Nanocavities with Colloidal Nanocrystals |
IIS INQIE RCAST Univ. of Tokyo 1, NNL-ISUFI Univ.
del Salento 2@L. Martiradonna 1 2, L. Carbone 2, A. Tandaechanurat 1, M.
Kitamura 1,M. Nomura 1,M. Nishioka 1,S. Ishida 1,B. Antonazzo 2,T. Nakaoka
1,S. Iwamoto 1,R. Cingolani 2,Y. Arakawa 1 |
| |
2 |
Laterally blazed grating coupler for normal incidence
in the integrated photonic crystal waveguide |
Univ. Tsukuba 1, NIMS 2 @*Mizutani Akio 1, Ikeda
Naoki 2, Ozaki Nobuhiko 1, Takata Yoshiaki 1, Kitagawa Yoshinori 1, Watanabe
Yoshinori 1, Sugimoto Yoshimasa 1,2, Asakawa Kiyoshi 1 |
| |
3 |
Influence of cross section shape of unit cell structure
in Photonic Crystal Organic Light Emitting Diode |
KONICA MINOLTA TECHNOLOGY CENTER, INC. 1@Mitsuru
Yokoyama 1, Shigeto Omori 1, Takayuki Okano 1 |
| ’ |
4 |
Consideration of emission controlled by tow-dimensional
photonic crystal nanocavity (2) |
Kyoto Univ. 1@*Yamaguchi Makoto 1,Menaka Zoysa
1,Asano Takashi 1,Wolfgang Stumpf 1,Fujita Masayuki 1,Noda Susumu 1 |
| |
5 |
Theoretical Analysis of Single Artificial Atom
Laser |
INQIE Univ. of Tokyo 1, RCAST 2, IIS 3@*Nomura
Masahiro 1, Iwamoto Satoshi 1 2 3, Arakawa Yasuhiko 1 2 3 |
| ’ |
6 |
Focal spot properties of doughnut-beams generated
by two-dimensional photonic-crystal laser II |
Kyoto Univ 1, KUPRU 2, ROHM Co., Ltd. 3@*Kitamura
Kyoko 1, Sakai Kyosuke 1,2, Kurosaka Yoshitaka 1, Kunishi Wataru 1,3, Miyai
Eiji 1,3, Ohnishi Dai 1,3, Noda Susumu 1 |
| |
7 |
Fine tuning of polarization mode splitting of photonic
crystal cavity |
NEC Corp. 1, INQIE, Univ. of Tokyo 2, RCAST, Univ.
of Tokyo 3@Shirane Masayuki 1,2, Kono Shunsuke 1,2, Ota Yasutomo 2,3, Nomura
Masahiro 2, Kumagai Naoto 2, Watanabe Katsuyuki 2, Ishida Satomi 2,3, Iwamoto
Satoshi 2,3, Arakawa Yasuhiko 2,3 |
| £ |
8 |
Demonstration of High-Q Photonic Crystal H1-defect
Nanocavities after Closing of Photonic Bandgap |
Univ. of Tokyo INQIE 1, Univ. of Tokyo RCAST 2,
Univ. of Tokyo IIS 3@*Tandaechanurat Aniwat 1,2, Iwamoto Satoshi 1,2,3,
Nomura Masahiro 1, Kumagai Naoto 1, Arakawa Yasuhiko 1,2,3 |
| £’ |
9 |
Design of Polarization-degenerated Modes in Photonic
Crystal Nanocavities in Square Lattice with Modulated Air Hole Radius |
Univ. of Tokyo INQIE 1, Univ. of Tokyo RCAST 2,
Univ. of Tokyo IIS 3@*Tandaechanurat Aniwat 1,2, Iwamoto Satoshi 1,2,3,
Arakawa Yasuhiko 1,2,3 |
| |
10 |
Wideband Slow Light in Photonic Crystal Coupled
Waveguides with Chirped Structure |
Yokohama Nat'l Univ.1@*Kawasaki Takashi 1, Adachi
Jun 1, Mori Daisuke 1, Kubo Shosaku 1, Baba Toshihiko |
| |
11 |
Investigation of Low-Group-Velocity and Low-Dispersion
Photonic Crystal Waveguides (III) \Clear LVLD and Transmission of Short
Optical Pulse |
Yokohama Nat'l Univ. 1@*Kubo Shousaku 1, Hamachi
Youhei 1, Mori Daisuke 1, Baba Toshihiko 1 |
| |
12 |
Investigation of Low-Group-Velocity and Low-Dispersion
Photonic Crystal Waveguides (IV) \ Point Shift Type |
Yokohama Nat'l Univ.,@*Hamachi Youhei 1, Kubo Shousaku
1, Mori Daisuke 1, Baba Toshihiko 1 |
| 4.2 Photonic
Nanostructures - Design, Fabrication and Physics |
| September 7 10:45`19:00 |
| 7a-R-@/ III |
| |
1 |
Photonic bandgap effect of Silicon Three-Dimensional
Photonic Crystal Fabricated by Two-Directional Etching Method |
QNERC Tokyo Tech. 1, Southampton Univ. and Tokyo
Tech 2, Dept. of E&E Eng. Tokyo Univ. of A&T 3, SORST-JST 4 @*Daihei Hippo
1, Yoshishige Tsuchiya 1,4, Hiroshi Mizuta 2,4, Kei Urakawa 3, Nobuyoshi
Koshida 3,4, Shunri Oda 1,4 |
| ’ |
2 |
Fabrication of Three-Dimensional Photonic Crystals
Using Double-Angled Etching Technique (IV) |
Kyoto Univ. 1@*Takahashi Shigeki 1, Nakamori Takeshi
1, Noda Susumu 1 |
| ’ |
3 |
Investigation of Light Emitting Layer Introduction
in 3D Photonic Crystals Fabricated by Double Angled-Etching Technique |
Kyoto Univ. 1@*Nakamori Takeshi 1, Takahashi Shigeki
1, Ishizaki Kenji 1, Noda Susumu 1 |
| |
4 |
Investigation on fabrication processes of 3D photonic
crystals by using ICP dry etching technique 2 |
NCRC Univ. of Tokyo 1, OITDA 2, Hitachi CRL 3@*Hosomi
Kazuhiko 1 2 3, Yamada Hiroji 2, Akamatsu Shouji 1 2, Sagawa Misuzu 1 2
3, Katsuyama Toshio 1 2, Arakawa Yasuhiko 1 |
| |
5 |
Investigation of Surface Electromagnetic Modes
in Three-Dimensional Photonic Crystals |
Kyoto Univ. 1@*Ishizaki Kenji 1,Kawashima Shoich
1,Sun Qi 1,Noda Susumu 1 |
| |
6 |
Emission from Three-Dimensional Photonic Crystal
Nanocavity at Optical Communication Wavelength |
IIS, Univ.Tokyo 1@*Kanna Aoki1, Denis Guimard1,
Masao Nishioka1, Masahiro Nomura1, Satoshi Iwamoto1, Yasuhiko Arakawa1 |
| ’ |
7 |
Fabrication and characterization of vertical and
in-plane waveguides in three-dimensional photonic crystals |
Kyoto Univ. 1@Shoichi Kawashima 1, Kenji Ishizaki
1, Susumu Noda 1 |
| |
8 |
Silver-copper nanoparticles for metal-enhanced
fluorescence |
1Department of Chemical Engineering, 2Nanomaterials
and Nanomanufacturing Research Center, 3Department of Mechanical Engineering,
University of South Florida@S. Chowdhury1, M. Hirai2, V. R. Bhethanabotla1,
and A. Kumar2,3 |
| |
9 |
Surface Plasmon Enhanced Light Emission from Solid-State
Devices |
JST PRESTO 1, Kyoto Univ. 2, Caltech 3@*Koichi
Okamoto 1,2, Axel Scherer 3, Yoichi Kawakami 2 |
| |
|
Lunch 13:00`14:00 |
|
| 7p-R-@/ III |
| |
1 |
Propagation loss analysis of SiON/SiO2 channel
waveguide on Si substrate |
MIRAI-Selete 1, NTT Microsystem Integration Labs.
2@*Jun Ushida 1, Akiko Gomyo 1, Junichi Fujikata 1, Daisuke Okamoto 1, Kenichi
Nishi 1, Keishi Ohashi 1, Toshifumi Watanabe 2, Tai Tsuchizawa 2, Koji Yamada
2, Seiichi Itabashi 2 |
| |
2 |
Low optical propagation-loss SiON/SiO2
waveguides around 800-nm wavelength |
MIRAI-Selete 1, NTT Microsystem Labs. 2@Akiko Gomyo
1, Jun Ushida 1, Junichi Fujikata 1, Daisuke Okamoto 1 , Kenichi Nishi 1,
Keishi Ohashi 1, Tai Tsuchizawa 2 , Toshifumi Watanabe 2, Kouji Yamada 2
, Seiichi Itabashi 2 |
| |
3 |
Elements for Polarization-Independent Photonic
Circuit based on Silicon Wires: Proposal for Polarization Rotators |
NTT MI Labs. 1@*Fukuda Hiroshi 1, Tsuchizawa Tai
1, Watanabe Toshifumi 1, Yamada Koji 1, Shinojima Hiroyuki 1, Itabashi Sei-ichi
1 |
| |
4 |
Refractive index sensor utilizing photonic crystal
nanolaser array (II) Observation of device operation |
Yokohama Nat'l Univ.@*Shota Kita 1, Kengo Nozaki
1, Toshihiko Baba 1 |
| |
5 |
Low Coherence Photonic Crystal Laser with Chirped
Structure |
Yokohama Nat'l Univ.@*Keisuke Yokoyama 1, Hideki
Watanabe 1, Toshihiko Baba 1 |
| |
6 |
Room temperature CW lasing characteristics in photonic
crystal nanolaser by resonant photopumping |
Yokohama Nat'l Univ. 1@*Kengo Nozaki 1, Yoshiki
Arita 1, Shota Kita 1, Toshihiko Baba 1. |
| ’ |
7 |
High-Power Single-Mode Operation of Surface-Emitting
Two-Dimensional Photonic-Crystal Laser |
Kyoto Univ. 1, ROHM Co.,Ltd. 2@*Kashiwagi Junichi
1, Kunishi Wataru 1,2, Ohnishi Dai 1,2, Miyai Eiji 1, Sakai Kyosuke 1, Kurosaka
Yoshitaka 1, Otsuka Koji 1, Noda Susumu 1 |
| |
8 |
Effects of hole-radius fluctuation in Surface-Emitting
Two-Dimensional Photonic-Crystal Laser |
Kyoto Univ. 1, ROHM Co.,Ltd. 2@*Kashiwagi Junichi
1, Miyai Eiji 1, Sakai Kyosuke 1, Kurosaka Yoshitaka 1, Otsuka Koji 1, Kunishi
Wataru 1,2, Ohnishi Dai 1,2, Noda Susumu 1 |
| |
9 |
Two-Dimensional Photonic-Crystal Laser Resonator
with Double Hole Unit Cell Structure |
kyoto Univ. 1,Rhom Co.Ltd.@Otsuka Koji 1,Sakai
Kyosuke 1,Kurosaka Yoshitaka 1,Kunishi Wataru 1,2,Onishi Dai 1,2,Noda Susumu
1 |
| |
|
Break 16:15`16:30 |
|
| ’ |
10 |
GaAs 2D photonic crystal slab on Si substrate |
AIST Photonics 1@*Makoto Okano 1, Noritsugu Yamamoto
1, Kazuhiro Komori 1 |
| ’ |
11 |
Investigation of Ultra-high Q Multistep Heterostructure
Nanocavity(II) |
Kyoto Univ. 1@*Hagino Hiroyuki 1,Takahashi Yasushi
1,Tanaka Yoshinori 1,Asano Tkashi 1,Noda Susumu 1 |
| |
12 |
Optical properties of low density quantum dots
embedded in line-defect nanocavity |
NTT Basic Research Labs. 1, Arizona State Univ.
2, NTT Photonics Labs. 3 @Takehiko Tawara 1, Hidehiko Kamada 1, Takasumi
Tanabe 1, Eiichi Kuramochi 1, Nicholas I. Cade 1, Yong-Hang Zhang 1,2, Hiroshi
Okamoto 3, Hideki Gotoh 1, Masaya Notomi 1, Tetsuomi Sogawa 1 |
| |
13 |
Highly efficient selective excitation of single
quantum dot using double resonant effect of photonic crystal nanocavity |
INQIE Univ. of Tokyo 1, RCAST Univ. of Tokyo 2,
NEC 3@*Ota Yasutomo 1,2, Nomura Masahiro 1, Kumagai Naoto 1, Watanabe Katsuyuki
1, Ishida Satomi 1,2, Iwamoto Satoshi 1,2 Shirane Masayuki 1,3, Kono Shunsuke
1,3, Yorozu Shinichi 1,3, Arakawa Yasuhiko 1,2 |
| £ |
14 |
Q-Factor Estimation of Photonic Nanocavities with
Active Elements via the Reflectance Spectrum |
Kyoto Univ. 1@*Stumpf Wolfgang 1, Fujita Masayuki
1, Yamaguchi Makoto 1, Asano Takashi 1, Noda Susumu 1 |
| |
15 |
Fabrication and optical evaluation of Si-microdisk
with Ge self-assembled quantum dots. |
ARL Musashi Inst. of tech. 1,IMR Tohoku Univ. 2,HORIBA
3@*K. Nemoto 1,J.S. Xia 1,Y. Ikegami 1,R. Tominaga 1,N. Usami 2,Y. Nakata
3,Y. Shiraki 1 |
| |
16 |
Cavity-Mode Light Emission in Silicon Photonic
Nanocavities |
Kyoto Univ.@M. Fujita 1, Y. Tanaka 1, S. Noda 1 |
| |
17 |
Time-resolved measurement for photoluminescence
from silicon photonic crystal nanocavities |
INQIE/RCAST/IIS Univ. of Tokyo 1, Nano Electronics
Res.Labs., NEC Corp. 2@*Iwamoto Satoshi 1, Gomyo Akiko 2, Arakawa Yasuhiko
1 |
| ’ |
18 |
Consideration of thermal radiation from two-dimensional
photonic crystal nano cavity using rate equation |
Kyoto Univ. 1@*Mochizuki Keita 1, Asano Takashi
1, Yamaguchi Makoto 1, Noda Susumu 1 |
| |
19 |
Design of Photonic Crystal Microcavities for Quantum
Cascade Lasers |
INQIE, RCAST, and IIS, Univ. of Tokyo@Yuki Wakayama,
Aniwat Tandaechanurat, Satoshi Iwamoto, Yasuhiko Arakawa |
| 4.2 Photonic
Nanostructures - Design, Fabrication and Physics |
| September 8 9:00`15:00 |
| 8a-ZS-@/ III |
| |
1 |
Calculation of dispersion relation of evanescent
modes in photonic crystals utilizing the FDTD method |
Tohoku Univ. 1@*Ohtera Yasuo |
| |
2 |
Sharp-cut wavelength filters utilizing multilayer-type
photonic crystal |
Tohoku Univ. 1, Photonic Lattice Inc. 2@*Ohtera
Yasuo 1, Inoue Yoshihiko 2, Kawashima Takayuki 2, Kawakami Shojiro 2 |
| |
3 |
Topology optimization for 2D photonic crystal slab
waveguides with intersections and Z-bends |
U. Tsukuba 1, NIMS 2@*Y. Watanabe 1, N. Ikeda 2,
Y. Takata 1, Y. Kitagawa 1, A. Mizutani 1, N. Ozaki 1, Y. Sugimoto 1,2,
and K. Asakawa 1 |
| ’ |
4 |
Measurement of switching of the photonic crystal
directional coupler switch with short switching length |
AIST Photonics 1, Inst. Appl. Phys. Univ. of Tsukuba
2@*Sugisaka Jun-ichiro 1 2,Yamamoto Noritsugu 1,Okano Makoto 1,Komori Kazuhiro
1,Yatagai Toyohiko 2,Itoh Masahide 2 |
| |
5 |
Improvement of extinction ratio of photonic crystal
directional coupler with small coupling length |
AIST Photonics 1, Inst. Appl. Phys. Univ. of Tsukuba
2@*Shimada Hirofumi 1,2, Yamamoto Noritsugu 1, Sugisaka Jun-ichiro 1,2,
Okano Makoto 1, Komori Kazuhiro 1, Itoh Masahide 2, Yatagai Toyohiko 2 |
| |
6 |
Group velocity of photonic crystal coupled resonator
optical waveguides |
*Kuramochi Eiichi 1 2, Tanabe Takasumi 1 2, Taniyama
Hideaki 1 2, Notomi Masaya 1 2@*Kuramochi Eiichi 1 2, Tanabe Takasumi 1
2, Taniyama Hideaki 1 2, Notomi Masaya 1 2 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Index Chirping in Photonic Crystal Waveguide Induced
by Local Heating |
Yokohama Nat'l Univ. 1@*Sasaki Hirokazu 1, Mori
Daisuke 1, Baba Toshihiko 1 |
| |
8 |
Experimental Demonstration of Tunable Slow Light
by Index Chirped Photonic Crystal Waveguides |
Yokohama Nat'l Univ. 1@*Mori Daisuke 1, Hirokazu
Sasaki 1, Baba Toshihiko 1 |
| |
9 |
Dynamic Q factor control of 2D photonic crystal
nanocavities (5)-Analysis- |
Kyoto Univ. 1@*Tomoaki Sugiya 1, Yoshinori Tanaka
1, Jeremy Upham 1, Takashi Asano 1, Susumu Noda 1 |
| |
10 |
Dynamic Q Factor Control of 2D Photonic Crystal
Nanocavities (6) -Discussion of Trapping Lifetime- |
Kyoto Univ.@*Tanaka Yoshinori 1, Upham Jeremy 1,
Asano Takashi 1, Noda Susumu 1 |
| £’ |
11 |
Dynamic Q factor control of 2D photonic crystal
nanocavities (7) –Introduction of a 2nd pulse - |
Kyoto Univ. 1@*Upham Jeremy 1, Tanaka Yoshinori
1, Sugiya Tomoaki, Asano Takashi 1, Noda Susumu 1 |
| |
|
Lunch 12:00`13:00 |
|
| 8p-ZS-@/ III |
| |
1 |
Imaging and Image Transfer by Isotropic Negative
Refraction in Photonic Crystals |
NTT Basic Research Labs.@*Notomi Masaya 1,2, Sasaki
Yousuke 1,2, Kuramochi Eiichi 1 |
| |
2 |
Compensation for aberration using composite photonic
crystal superlens |
Yokohama Nat'l Univ. 1, @*Asatsuma Tomohiko 1,
Matsumoto Takashi 1, Baba Toshihiko 1 |
| |
3 |
Thermo-Optic Modulation Property of Group Delay
of Pillar-Photonic-Crystal Waveguide |
NEC, Nano Electronics Research Labs. 1@*Tokushima
Masatoshi 1, Nakamura Shigeru 1 |
| ’ |
4 |
Fabrication of nonlinear LiNbO3 photonic
crystals by the selective deep chemical etching of polarization-inverted
domains |
Kyushu Univ.1, Tokyo Inst. of Tech. 2@Ritsumeikan
Univ.3@*Shin-ichiro Inoue 1, Shiyoshi Yokoyama 1, Yoshinobu Aoyagi 2,3 |
| |
5 |
Strong enhancement of Raman scattering at the band
edge in AlGaAs-based photonic-crystal-slab waveguide |
Chitose Inst. of Sci. Tech. 1, AIST 2, U. Tsukuba
3.@*Hisaya Oda 1, Kuon Inoue 1, Akio Yamanaka 1, Naoki Ikeda 2, Hitoshi
Kawashima 2, Yoshimasa Sugimoto 3, Kiyoshi Asakawa 3, |
| £ |
6 |
Wavelength conversion in 2D photonic crystal waveguide
(2) |
Kyoto Univ. 1@*Upham Jeremy 1, Tanaka Yoshinori
1, Asano Takashi 1, Noda Susumu 1 |
| |
7 |
Optical nonlinearity-induced phase shift by selective-area-grown
quantum dots embedded in a photonic crystal waveguide |
Univ.of Tsukuba 1, NIMS 2, NEC 3, AIST 4@Ozaki
Nobuhiko 1, Kitagawa Yoshinori 1, Takata Yoshiaki 1, Ikeda Naoki 2, Watanabe
Yoshinori 1, Mizutani Akio 1, Ohkouchi Shunsuke 1,3,4, Sugimoto Yoshimasa
1,2, Asakawa Kiyoshi 1 |
| |
8 |
Phase shift of a signal pulse induced by repetitive
control pulses in quantum dots embedded in a photonic crystal waveguide. |
U. Tsukuba 1, NIMS 2@*Kitagawa Yoshinori 1, Ozaki
Nobuhiko 1, Takata Yoshiaki 1, Ikeda Naoki 2, Watanabe Yoshinori 1, Mizutani
Akio 1, Sugimoto Yoshimasa 1,2, Asakawa Kiyoshi 1 |
| 4.3 Laser
Devices and Materials |
| September 7 9:00`19:00 |
| 7a-F-@/ III |
| £ |
1 |
Wavelength conversion from 1 to 2 micron by a PPMgLN
based optical parametric oscillator |
ILE Osaka Univ 1, Inst. for Mol. Sci. 2@ *Ravi
Bhushan 1,Hidetsugu Yoshida 1,Koji Tsubakimoto 1,Hisanori Fujita 1,Masahiro
Nakatsuka 1,Hideki Ishizuki 2,Takunori Taira 2 |
| |
2 |
Development of 244nm Deep UV All Solid-State Light
Source Using Optical Parametric Oscillation |
Graduate School of Engineering, Osaka Univer.,1,College
of Optical Sciences, Univ., of Arizona2@Miyazono Kenshi 1,Shimatani Hiroya
1,Kaneda Yushi 2,Yoshimura Masashi,Kitaoka Yasuo 1,Mori Yusuke 1,Sasaki
Takatomo 1 |
| |
3 |
Generation of vacuum-ultraviolet light by KBBF
crystal |
ISSP Univ. of Tokyo 1, CREST 1, Chinese Academy
of Science 2@@*Kanai Teruto 1, Adachi Shunsuke 1, Watanabe Shuntaro 1, Wang
Xiaoyan 2, Chen Chuangtian 2 |
| |
4 |
Compact, efficient 266nm coherent light source
based on FHG of 1064nm fiber laser |
Cyber-laser Inc.@Shenghong Huang, Jun Sakuma, Tetsuo
Ando, and Tetsumi Sumiyoshi |
| |
5 |
Generation of ultrashort-pulse coherent vacuum
ultraviolet radiation |
Univ. of Miyazaki 1, CRC, Univ. of Miyazaki 2,
ILE, Osaka Univ. 3@Kazuyoshi Oda 1, Akira Hosotani 2, Masahito Katto 2,
Masanori Kaku 1, Atsushi Yokotani 1, Shoichi Kubodera 1, Noriaki Miyanaga
3, and Kunioki Mima 3 |
| |
6 |
Optical amplification of vacuum ultraviolet argon
excimers excited by an ultrashort-pulse high-intensity laser (2) |
Univ. of Miyazaki 1, CRC, Univ. of Miyazaki 2,
ILE, Osaka Univ. 3@Yuta Taniguchi 1, Akira Hosotani 2, Masahito Katto 2,
Masanori Kaku 1, Atsushi Yokotani 1, Shoichi Kubodera 1, Noriaki Miyanaga
3, and Kunioki Mima 3 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Vacuum ultraviolet absorption spectroscopy of high-pressure
rare gases |
Univ. of Miyazaki 1@*Masanori Kaku1, Yusuke Sato1,
Kenichiro Suehara1, and Shoichi Kubodera1 |
| |
8 |
Generation of an active medium for all gas-phase
iodine laser |
Tokai Univ.1, Keio Univ.2@Tomonari Nakamura 1,
Taizo Masuda 2, Masamori Endo 1, Taro Uchiyama 2 |
| |
9 |
Rediscovery of Iodine Dissociation Mechanism in
Chemical Oxygen-Iodine Lasers |
Tokai Univ. 1@*Kuramaru Kouta 1, Baba Masahumi
1, Endo Masamori 1 |
| |
10 |
Far infrared laser oscillations pumped by two wavelength
CO2 lasers |
Chubu Univ. 1, NIFS 2@*Tomimoto Masahiro 1, Nakayama
Kazuya 1, Kaneba Takahiro 1, Matsubara Akihiro 1, Okajima Shigeki 1, Kawahata
Kazuo 2 |
| |
11 |
Observation of emitted light from high-refractive
index waveguide excited by traveling electron beam |
Kanazawa Univ. 1@*Okamoto Ryuichi 1, Hesham Fares
1, Takeshi Kanai 1, Yuji Kuwamura 1, Minoru Yamada 1 |
| |
|
Lunch 12:00`12:45 |
|
| 7p-F-@/ III |
| £ |
1 |
Technology Integration Line (TIL) and Shen Guang-III
Laser for Inertial Fusion Research in China |
Research Center of Laser Fusion, CAEP, China@Feng
Jing |
| |
2 |
Development of Dielectric Multilayer Coatings with
High Damage Resistance for High Average Power Lasers(II) |
Inst. for Laser Tech. 1, ILE Osaka Univ. 2@*Motokoshi
Shinji 1, Jitsuno Takahisa 2, Yoshida Hidetsugu 2, Fujita Hisanori 2, Nakatsuka
Masahiro 2, Izawa Yasukazu 2 |
| |
3 |
Damage threshould of optical materials under low
temperature. |
Institute for Laser Technology 1,ILE Osaka Univ.
2,Hamamatsu Photonics 3@*Katsuhiro Mikami 1,Shinji Motokoshi 1,Masayuki
fujita 1,Takahisa Jitsuno 2,Jyunji Kawanaka 2,Ryo Yasuhara 3 |
| |
4 |
Preparation by FZ method and efficient near-infrared
emission from Ni:MgGa2O4 single crystals |
Toyota Tech. Inst.@Takenobu Suzuki 1, Yusuke Arai
1, Guanshi Qin 1, Yasutake Ohishi 1 |
| ’ |
5 |
Temperature characteristics on cryogenic cooled
TGG ceramic |
Hamamatsu Photonics K.K. 1, Institute for Chemical
Research, Kyoto University 2, Institute of Laser Engineering, Osaka University
3, Konoshima Chemical Co. Ltd 4@*Ryo Yasuhara1,3, Shigeki Tokita2, Junji
Kawanaka3,Hideki Yagi4, Hoshiteru Nozawa4, Takagimi Yanagitani4,Yasushi
Fujimoto3, Hidetsugu Yoshida3, Masahiro Nakatsuka3, Toshiyuki Kawashima1,Hirofumi
Kan1 |
| |
6 |
The novel numerical model for thermal conductivities
for optical materials. |
Inst. Mol. Sci. 1@*Sato Yoichi 1, Akiyama Jun 1,
Ishizuki Hideki 1, Taira Takunori 1 |
| ’ |
7 |
Tunable Yb3+:Y2O3
ceramic laser
|
ILS UEC 1, Kounoshima Chemical 2, Russian Academy
of Sciences 3@*Tokurakawa Masaki 1,Shirakawa Akira 1,Ueda Kenichi 1,Yagi
Hideki 2,Yanagitani Takagimi 2,Alexander A. Kaminskii 3 |
| |
8 |
Development of ceramic YAG composite with Nd3+
gradient structure and its laser oscillation property |
Osaka Inst. of Technology 1, Osaka Inst. of Technology
Nano material laboratory 2, Niihama National College of Technology 3, Okamoto
Optics Co 4, World-Lab. Co., Ltd 5@@Kawaguchi Yutaka 1, Kamimura Tomosumi
1,2, Nakayama Susumu 3, Okamoto Takayuki 4, Lin Aung Yan 5, Ikesue Akio
5 |
| |
9 |
Development of High Repetition Rate Femtosecond
Yb:KGW laser |
Laserfront Technologies, Inc.@*Ito Shinji, Miura
Taisuke, Yosioka Masao, Mukaihara Katsuji |
| |
10 |
Highly-efficient low-repetition-rate mode-locked
cryogenic Yb:YAG laser |
ICR Kyoto Univ. 1, ILE Osaka Univ. 2, Inst. Laser
Tech. 3, Hamamatsu Photonics K.K. 4@*Shigeki Tokita 1, Junji Kawanaka 2,
Masayuki Fujita 3, Toshiyuki Kawashima 4, Masaki Hashida 1, Shuji Sakabe
1, Yasukazu Izawa 2 |
| |
11 |
Diode-pumped CW self-stimulating Nd:YVO4
Raman Laser |
Neoark Corp. 1, Chiba Univ 2@*Furuya Yasushi 1,
Ito Satoshi 1, Hatano Satoshi 1, Omatsu Takashige 2 |
| |
|
Break 15:45`16:00 |
|
| |
12 |
MW pulses from a side-diode-pumped Nd:YVO4
slab amplifier with a phase conjugate mirror |
Chiba Univ. 1, PREST JST 2,@*Koji Nawata 1, Goma
Masahiro 1, Omatsu Takashige 1 2, |
| |
13 |
High brightness diode-pumped passively Q-switched
Nd:YAG microchip-laser with amplifier |
Inst. for Molecular Science 1, Hamamatsu Photonics
K.K.@*Taira Takunori 1, Sakai Hiroshi 1,2, Sone Akihiro 1,2, Kan Hirohumi2 |
| |
14 |
Continuous wave 10W green light generation by Vanadate
single crystal microchip laser. |
Tohoku R&D Center,R&D Group,Ricoh Co.,Ltd. 1,Institute
for Molecular Science 2@ Higashi Yasuhiro 1,Satoh Yasuhiro 1,Hiroi Masaki
1,Suzudo Tsuyoshi 1, Sato Yoichi 2,Ishizuki Hideki 2,Taira Takunori 2 |
| |
15 |
Development of 9.6W green small package solid-state
laser unit |
Tohoku R&D Center R&D Group Ricoh Co. Ltd.1, Institute
for Molecular Science2@Masaki Hiroi 1,Yasuhiro Higashi 1,Yasuhiro Satoh
1,Hironobu Mifune1,Takeshi Suzudo 1,Hidetaka Ishizuki 2, Yoichi Sato 2,Takunori
Taira 2 |
| |
16 |
Development of High-average-power Nd:YAG Laser
System for EUV Generation |
ILE Osaka Univ. 1@*Tsubakimoto Koji,Yoshida Hidetsugu,Fujita
Hisanori,Nakatsuka Masahiro,Miyanaga Noriaki,Izawa Yasukazu |
| |
17 |
High-power and High-brightness, Nd:YAG/Cr:YAG Passive
Q-switch Micro Lasers |
JST 1, IMS 2@*Tsunekane Masaki 1, Taira Takunori
2 |
| |
18 |
Simulation design of 10kJE10PW charped-pulse-amplification
glass laser system - Pedestal Free - |
Univ. of Fukui 1, Univ. of Osaka 2@*Nishimura Naoki
1, Yoshida Haruo 1, Noga Takashi 1, Niki Hideaki 1Kanabe Tadashi 1, Azechi
Hiroshi 2, Miyanaga Noriaki 2, Jitsuno Takahisa 2, Kawanaka Junji 2 |
| |
19 |
Simulation design of 10kJ LFEX laser system -propagation
with divergence- |
Univ. of Fukui 1, Univ. of Osaka 2@*Yoshida Haruo
1, Nishimura Naoki 1, Noga Takashi 1, Niki Hideaki 1, Kanabe Tadashi 1,
Azechi Hiroshi 2, Miyanaga Noriaki 2, Jitsuno Takahisa 2, Kawanaka Junji
2 |
| |
20 |
Development of a 50 kHz, 14.5 W Ti:Sapphire femtosecond
laser system |
Cyber-laser Inc.@Norihiro INOUE 1,Tomohiro IMAHOKO
1, Kazuya TAKASAGO 1, Tetsumi SUMIYOSHI 1 |
| |
21 |
Development of low-repetition-rate, mode-locked
Ti:Sapphire lasers with a multiple-pass cavity |
Osaka City Univ.@*Shigeki Nashima 1, Kazuya Kojima
1, Yoshinori Tsutsumi 1, Shunsuke Maehara 1, and Makoto Hosoda 1 |
| |
22 |
Availability of Semiconductor-Saturable-Absorber-Mirror
in low-repetition-rate, mode-locked Ti:Sapphire lasers |
Osaka Ctiy Univ. 1, Doshisha Univ. 2, NICT. 3@*Maehara
Shunsuke 1,Nashima Shigeki 1,Kojima kazuya 1,Hosoda Makoto 1,Otani naoki
2,Yamamoto naokatu 3,Akahane kouichi 3 |
| |
23 |
Pulsed Laser Operation using a c-cut Ti:sapphire
Crystal |
Tohoku Univ. 1@Kawauchi Hikaru 1, Kozawa Yuichi
1, Sato Shunichi 1 |
| 4.3 Laser
Devices and Materials |
| September 8 9:00`15:00 |
| 8a-F-@/ III |
| |
1 |
Fabrication of gratings with moiré mechanism |
Chitose Institute of Science and Technology 1,
Chitose Institute of Science and Technology 2, Chitose Institute of Science
and Technology 3@* Kazunori Miura 1, Naoya Nakai 2, Makoto Fukuda 3 |
| |
2 |
Time domain characterisitics of holographic DFB
solid-state dye laser |
Chitose Institute of Science and Technology 1@Hiroaki
Yamamoto 1,Naoya Nakai 1,Makoto Fukuda 1 |
| |
3 |
Study of the Upper Limit of Optical–Optical
Conversion Efficiency in Solar-Pumped Solid-State Lasers |
Tokai Univ. 1@Taguchi Keiki 1, Obara Satoshi 1,
Endo Mosamori 1 |
| |
4 |
Optimization design of pumping optical system of
10 MW space solar pumping laser module |
Univ. of Fukui 1 @*Wakamoto Mitsuhiro 1,Ogata Toshihiro
1,Doi Natsuko 1,Urano Wataru 1,Niki Hideaki 1,Kanabe Tadashi 1 |
| |
5 |
Development of 200W Class Nd/Cr:YAG Ceramic Active-Mirror
Laser with Quasi-Solar Pumping |
Institute for Laser Technology 1, Institute of
Laser Engineering Osaka Univ. 2, Japan Aerospace Exploration Agency 3@*T.Saiki
1, S.Motokoshi 1, K.Imasaki 1, K.Fujioka 2, H.Fujita 2, M.Nakatsuka 2, Y.Izawa
2, C.Yamanaka 1, T.Fujita 3, M.Mori 3 |
| |
6 |
Evaluation of fluorescence property of new materials
for solar-pumping laser |
ILE, Osaka Univ. 1, Inst.for Laser Tech. 2, Kansai
Electric Power 3@*Kana Fujioka 1, Taku Saiki 2, Shinji Motokoshi 2, Yasushi
Fujimoto 1, Hisanori Fujita 1, Masahiro Nakatsuka 1, Hideo Mori 3, Kazuo
Imasaki 2 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Linewidth control of high power single polarization
ytterbium-doped double cladding fiber laser based MOPA |
THE FURUKAWA ELECTRIC CO., LTD. FITEL PHOTONICS
LABORATRY@Jun Nishina, Naoto Yoshizawa, Kanji Tanaka and Akira Fujisaki |
| |
8 |
- Development of Yb fiber laser system for high-average
Nd:YAG laser (II) - |
ILE Osaka Univ.@Hidetsugu Yoshida 1, Koji Tsubakimoto
1, Hisanori Fujita 1, Masahiro Nakatsuka 1, Noriaki Miyanaga 1, Yasukazu
Izawa 1 |
| |
9 |
Development of 1053nm pulsed fiber laser |
The Furukawa Electric CO.,LTD@Tobioka Hideaki1,Tominaga
Keisuke1,Tanaka Kanji1,Fujisaki Akira1 |
| |
10 |
Property Changes of Yb-doped Optical Fiber Induced
by Gamma Irradiation |
Optical and Electronics Lab., Fujikura Ltd. 1@Tomofumi
Arai 1, Shoji Tanigawa 1, Kentaro Ichii 1, Shoichiro Matsuo 1 |
| |
11 |
Transmission of high power pulse laser by large
core multimode fiber |
ILE Osaka Univ. 1, ILT 2, Kinki Univ. 3@*Tatsuyuki
Higashizawa 1, Shinji Motokoshi 2, Minoru Yoshida 3, Takahisa Jitsuno 1 |
| |
|
Lunch 12:00`12:45 |
|
| 8p-F-@/ III |
| |
1 |
Young Scientist Award for the Presentation of an
Excellent Paper
Direct generation of high power Laguerre-Gaussian output from a side-diode-pumped
Nd3+ vanadate bounce laser |
Chiba Univ. 1, Univ. of Tsukuba, PRESTO-JST@Okida
Masahito 1,Hayashi Yasushi 1,Itoh Masahide 2,Yatagai Toyohiko 2,Omatsu Takashige
1,3 |
| |
2 |
Single-frequency Ince-Gaussian mode operation of
LD-pumped miniature solid-state lasers |
Tokai Univ. 1@*Kamikariya Koji 1, Ohtomo Takayuki
1, Kenju Otsuka 1 |
| |
3 |
Single-frequency, linearly polarized emission from
laser-diode-pumped miniature ceramic lasers composed of microcrystalline
grains |
Tokai Univ. 1@*Ohtomo Takayuki 1, Otuka Kenju 1,
Kamikriya Koji 1 |
| |
4 |
Generation of higher order Hermite-Gaussian mode
by resonator |
Hokkaido Univ 1@Mineta@Yuriya 1, Hamazaki Junichi
1, Morita Ryuji 1 |
| |
5 |
Generation of Cylindrical Vector Beam by Use of
a Photonic Crystal Mirror |
IMRAM., Tohoku Univ.1, Photonic Lattice, Inc. 2@*Yuichi
Kozawa 1, Shunichi Sato 1, Takashi Sato 2, Yoshihiko Inoue 2, Shojiro awakami
2 |
| |
6 |
Frequency stabilization of a light source for next
generation gravitational wave detectors II |
Univ. of Tokyo 1, AIST 2@*Ohmae Noriaki 1, Takeno
Kohei 2, Moriwaki Shigenori 1, Mio Norikatsu 1 |
| |
7 |
Phase compensation of a laser-diode-pumped Nd:YAG
rod laser amplifier |
Univ. of Tokyo@*Machida Kosuke 1,Moriwaki Shigenori
1,Mio Norikatsu 1 |
| |
8 |
Development of the technique of stabilization of
nanosecond Deep-UV coherent light with injection locking |
Osaka City Univ. 1,@Yamamoto Takeshi 1,*Shiomi
Yasutomo 1,Kumagai Hiroshi 1,Kobayashi Ataru 1 |
| ’ |
9 |
Application as pumping light source of electronically
tuned picosecond pulsed SHG laser |
Tokyo University of Science1,RIKEN2@Yasuhiro Maeda1,Masaki
Yumoto1,Norihito Saito2,Takayo Ogawa2,Kazuo Kurokawa2, Akihiko Nakano2,Masahumi
Yamashita1,Ssatoshi Wada2 |
| 4.4 Ultrafast
lasers and High Field Lasers |
| September 6 9:30`18:00 |
| 6a-Y-@/ III |
| |
1 |
Spectral Phase Measurement of Attosecond Pulses
Using the Quantum Beats between the P1/2 and P3/2
of Alkali Atoms |
JAEA-KPSI 1@Itakura Ryuji 1 |
| |
2 |
Interferometric measurement of the electric field
in the attosecond region |
RIKEN 1, Univ. of Tokyo 2 @*Toshihiko Shimizu 1,
Ri Ma 1,2, Yasuo Nabekawa 1, Kaoru Yamanouchi 1,2, Katsumi Midorikawa 1 |
| |
3 |
Development of complete characterization of attosecond
pulses by photoelectron wavepackets interference |
Hokkaido Univ. 1, CREST 2@*Okamoto Tatsuya, Haraguchi
Eisuke, Tanigawa Takashi, Yamashita Mikio, Sekikawa Taro |
| ’ |
4 |
Complete characterization of high harmonics pulse
with photoelectron wave packet by spectrum shearing interferometry |
Hokaido Univ. 1, JST CREST 2,@Haraguchi Eisuke
1 2,Okamoto Tatuya 1 2,Tanigawa Takashi 1 2,Yamashita Mikio 1 2,Sekikawa
Taro 1 2, |
| £ |
5 |
Isolated single cycle attosecond pulses |
Politecnico di Milano 1, CNR-IMIP Area della Ricerca
di Roma 2, Universit di Padova 3, Universit di Napoli 4@G. Sansone 1, E.
Benedetti 1, F. Calegari 1, C. Vozzi 1, S. Stagira 1, S. De Silvestri 1,
M. Nisoli 1, L. Avaldi 2, R. Flammini 2, L. Poletto 3, P. Villoresi 3, C.
Altucci 4, R. Velotta 4 |
| |
|
Break 10:45`11:00 |
|
| |
6 |
Generation of intense sub-10fs pulses using a pressure
gradient hollow fiber |
RIKEN 1, Tokai Univ. 2@*Bohman Samuel 1,2, Kaku
Masanori 1, Kanai Takuya 2, Suda Akira 1, Yamaguchi Shigeru 2, Midorikawa
Katsumi 1 |
| |
7 |
Wavelength dependence of high-order harmonic generation |
University of Tokyo 1, JST 2@*Kenichi L. Ishikawa
1,2, Yuya Takahashi 1 |
| |
8 |
Roles of the internal motion of atoms and molecules
in high harmonic generation in mixed gases |
RIKEN@*Kanai Tsuneto 1, Takahashi Eiji J. 1, Nabekawa
Yasuo 1, Midorikawa Katsumi 1 |
| |
9 |
High-order harmonic generation from H2/D2
molecules with femtosecond 1.3Κm laser pulses |
The Univ. of Tokyo@Hiroki Mizutani, Shinichirou
Minemoto, Yuichirou Oguchi, and Hirofumi Sakai |
| ’ |
10 |
Laser intensity dependence of high-order harmonic
generation from nonadiabatic aligned N2 molecules |
Kyoto Univ. 1, Univ. Bielefeld 2@Kazumichi Yoshii
1, Yohei Ueno 1, Godai Miyaji 1, Kenzo Miyazaki 1, F.H.M.Faisal 2 |
| ’ |
11 |
Generation of broad Raman-sidebands and thier application
for self-stabilizing carrier-envelope phase |
Univ. of Electro-Comms. 1, JST 2@*Takayuki Suzuki
1,2, Masataka Hirai 1, Masayuki Katsuragawa 1,2 |
| |
|
Lunch 12:30`13:30 |
|
| 6p-Y-@/ III |
| ’ |
1 |
Multi-kilowatt-peak-power 1Κm-band-wavelength-tunable
light pulse source utilizing a modelocked semiconductor laser |
Tohoku Univ.NICHe 1,JST 2,Sumitomo Osaka Cement
Co.Ltd 3@*Takashima Keijiro 1.2,Mure Masahito 3,Hengchang Guo 1,Yokoyama
Hiroyuki 1 |
| |
2 |
Two-photon fluorescence imaging of GFP-expressing
mouse-neurons utilizing a mode-locked semiconductor laser |
Tohoku Univ. NICHe 1,JST 2,Tohoku Univ. Information
Science3,Kobe Univ. Biosignal Res.Ctr. 4,Sumitomo Oska Cemento Co.Ltd 5@Aya
Sato 1,2,Keijirou Takasima 1,2,Hengchang Guo 1,Masahito Mure 3,Hiroyuki
Yokoyama 1,Hiroshi Tsubokawa 4,Naoaki Saito 5 |
| |
3 |
Generation of ultrashort pulses from a mode-locked
ytterbium fiber laser oscillator |
AIST 1, SIT 2@*Zhou Xiangyu 1,Tani Shuuichi 2,Yoshitomi
Dai 1,Kobayashi Yohei 1,Torizuka Kenji 1 |
| |
4 |
28W-femtosecond Yb-fiber amplifier system |
SIT 1,AIST 2@*Tani Shuuichi 1,Onuma Taketo 1,Zhou
Xiangyu 2,Yokoi Hideki 1,Yoshitomi Dai 2,Kobayashi Yohei 2,Torizuka Kenji
2 |
| |
5 |
Development of Ultra-stable mode-locked laser |
SIT 1, AIST 2@*Onuma Taketo 1, Yokoi Hideki 1,
Kobayasi Yohei 2, Torizuka Kenji 2 |
| |
6 |
The characterization of a fundamental soliton pulse
from a PCF for CARS spectroscopy |
Chitose Institute of Science and Technology@*Tada
Kazuhiro 1, Karasawa Naoki 1 |
| ’ |
7 |
Generation of visible supercontinuum using all-fiber
system |
Nagoya Univ. 1,Osaka Univ 2@*Mitsuzawa Hideyuki
1,Takayanagi Jun 1,Sumimura Kazuhiko 2,Nisizawa Norihiko 2 |
| |
8 |
Ultrawideband high quality super continuum generation
using high energy ps pulse |
Osaka Univ. 1, Nagoya Univ. 2@*Nishizawa Norihiko
1, Hori Masaru 2 |
| |
9 |
Demonstration of high-efficient generation of spectrum
more than one octave to control carrier-envelope offset (CEO) |
NTT Basic Research Lab. 1,NTT Photonics Lab. 2,
NTT Network Innovation Lab. 3@*Ishizawa Atsushi 1, Nishikawa Tadashi 1,
Aozasa Shinichi 2, Mori Atsushi 2, Kubota Hirokazu 3, Nakano Hidetoshi 1 |
| |
|
Break 15:45`16:00 |
|
| |
10 |
Ultrashort optical pulse generation using optical
frequency comb and DF-DDF |
NICT@Isao Morohashi 1, Takahide Sakamoto 1, Hideyuki
Sotobayashi 1, Tetsuya Kawanishi 1, Iwao Hosako 1, Masahiro Tsuchiya 1 |
| |
11 |
Stable Confinement of Nanosecond Pulse in High
Finesse Resonance Cavity |
Univ. Electro-Comms. 1, JST 2@Yokota Hiroyuki 1,
Tanaka Ryo 1, Matsuzawa Taku 1, Suzuki Takayuki 1,2, Fujii Yasuhiro 1, Katsuragawa
Masayuki 1,2 |
| ’ |
12 |
Strong self-phase-modulation in self-pulsating
laser diodes |
Tohoku Univ. NICHe 1, Sony Corp. 2, Sony Shiroishi
Semiconductor Inc. 3@Ohta Makoto 1,2,3, Kuramoto Masaru 2,3, Ikeda Masao
1,2, Yokoyama Hiroyuki 1 |
| |
13 |
Broadband group delay dispersion compensation based
on taper-shaped deformable mirror |
Osaka Univ.@*Omura Gen 1, Ozeki Yasuyuki 1, Itoh
Kazuyoshi 1 |
| |
14 |
Development of a spatial light modulator from ultraviolet
to near-infrared region II |
Hokkaido Univ. 1, JST-CREST 2@*Hazu Kouji 1,2,
Nakagawa Naoya 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2 |
| |
15 |
Spectral Shearing Interferometer with a Dual Color
Local oscillator |
ILS/UEC@*Tomita Hitoshi 1, Nishoka Hajime 1 |
| |
16 |
Few-cycle optical pulse amplification by two-photon
induced photorefractive effect |
ILS/UEC@*Ohta Shuji 1, Tomita Hitoshi 1, Hayasaka
Keisuke 1, Nishioka Hajime 1 |
| |
17 |
Phase Characterization of Multiple CARS Signals
in a Crystal at Room Temperature Towards the Generation of Extremely Short
Optical Pulses II |
Hokkaido Univ. 1, CREST-JST 2@Matsubara Eiichi
1 2, Kawamoto Yuta 1, Morita Ryuji 1 2, Sekikawa Taro 1 2, Yamashita Mikio
1 2 |
| 4.4 Ultrafast
lasers and High Field Lasers |
| September 7 9:30`17:45 |
| 7a-Y-@/ III |
| |
1 |
Chirped pulse amplification in Kerr-lens mode locking
oscillator |
Osaka Univ. 1, Chiba Univ. 2@*Kiminori Kondo 1,
Takashige Omatsu 2 |
| |
2 |
Noncollinear optical parametric amplification pumped
by third harmonics of Ti:Sapphire laser II |
Hokkaido Univ. 1, JST-CREST 2@Tanigawa Takashi
1,2, Yamane Keisaku 1,2, Sekikawa Taro 1,2, Yamashita Mikio 1,2 |
| |
3 |
Development of 1-kHz, sub-terawatt optical parametric
chirped-pulse amplification system |
ISSP, Univ. of Tokyo; CREST@Shunsuke Adachi, *Nobuhisa
Ishii, Hiroki Ishii, Teruto Kanai, Shuntaro Watanabe |
| ’ |
4 |
Ultrabroadband optical parametric chirped-pulse
amplification system (4) -Extension of amplified bandwidth with angular
dispersive pump beam- |
JAEA 1,ILE Osaka 2,ILS 3,ILT 4@*Kanade Ogawa 1
3,Yutaka Akahane 1,Makoto Aoyama 1,Koichi Tsuji 1,Junji Kawanaka 2,Hazime
Nisioka 3,Masayuki Fujita 5,Koichi Yamakawa 1 |
| |
5 |
Ultrabroadband optical parametric chirped-pulse
amplification system (5) - Generation of white-light seed pulses in optical
substrates - |
JAEA 1, ILE OSAKA 2, ILS UEC 3, ILT 4@*Akahane
Yutaka 1,Aoyama Makoto 1, Ogawa Kanade 12, Tsuji Koichi 1, Kawanaka Junji
2, Nishioka Hajime 3, Fujita Masayuki 4, Yamakawa Koichi 1 |
| |
6 |
Development of pulse shape control system of a
high-energy PW laser |
ILE Osaka Univ.@Keiichi Sueda, Kiminori Kondo,
Ryuji Mizoguchi, Kouji Tauchi and Noriaki Miyanaga |
| |
|
Break 11:00`11:15 |
|
| |
7 |
Development of a tunable few cycle laser system
- Near-infrared optical parametric amplification system - |
JAEA1, Univ. of Tokyo2@*Makoto. Aoyama 1, Tomoya
Okino 2, Yutaka Akahane 1, Koichi Yamakawa 1, Kaoru Yamanouchi 2 |
| |
8 |
Developement of a terawatt class sub-10 fs laser
system (II) |
RIKEN 1, Univ. of Tokyo 2, JST 3@*A. Amani Eilanlou
1,2 ,Y. Nabekawa 1, K. L. Ishikawa 2,3, H. Takahashi 2, K. Midorikawa 1 |
| |
9 |
Stabilizing an intense femtosecond laser by pointing
and power controls |
RIKEN 1,Tokai Univ. 2@*Takuya Kanai 2,Samuel Bohman
2,Akira suda 1,Shigeru Yamaguchi 2,Katsumi Midorikawa 1 |
| ’ |
10 |
Auto Power Management System@for industrial femtosecond
laser amplifier |
Cyber-Laser Inc. 1@*Koji Yoshida 1, Kazuya Takasago
1, Takeshi Kaneko 1, Tomohiro Imahoko 1, Norihiro Inoue 1, Tetsumi Sumiyoshi
1,@Hitoshi Sekita 1 |
| ’ |
11 |
Generation of a sub-30-fs single ultraviolet pulse
by transiently excited coherent molecular rotations |
Graduate School of Eng. 1, Center for Future Chem.
2, Kyushu Univ.,@*Kida Yuichiro 1, Zaitsu Shin-ichi 1, Imasaka Totaro 1,2 |
| |
|
Lunch 12:30`13:30 |
|
| 7p-Y-@/ III |
| ’ |
1 |
Ultrafast dynamics of electrons and phonons in
carbon nanotubes |
NIMS 1, Univ. Pittsburgh 2@*Kato Keiko 1, Ishioka
Kunie 1, Kitajima Masahiro 1,Tang Jie 1, Petek Hrvoje 2 |
| |
2 |
Development of femto-second X-ray diffraction III |
Kyoto Univ. 1, Kyoto Univ. QSEC 2@*Hada Masaki
1, Matsuo Jiro 2 |
| |
3 |
Photoluminescence of ZnO by EUV laser |
ILE Osaka Univ. 1, JAEA 2, Tohoku Univ. 3@*Furukawa
Yusuke 1,Murakami Hidetoshi 1,Saito Shigeki 1,Sarukura Nobuhiko 1,Nishimura
Hiroaki 1,Mima Kunioki 1,Tanaka Momoko 2,Nishikino Masaharu 2,Yamatani Hiroshi
2,Nagashima Keisuke 2,Kimura Toyoaki 2,Kagamitani Yuji 3,Yoshikawa Akira
3,Fukuda Tsuguo 3 |
| ’ |
4 |
Controlling alignment and orientation of linear
molecules with combined electrostatic and shaped laser fields |
Graduate School of Science, The Univ. of Tokyo
1@*Goban Akihisa 1, Minemoto Shinichirou 1, Sakai Hirofumi 1 |
| ’ |
5 |
Field-free molecular orientation using shaped two-color
laser pulses |
Grad. Sc. of Science, The Univ. of Tokyo 1@Masahiro
Muramatsu 1, Hirofumi Sakai 1 |
| |
6 |
Is there any phase-dependent effects observed by
chirped laser pulses? |
Kyoto Univ. 1, Univ. of Bordeaux 2@*Takashi Nakajima
1 , Eric Cormier 2 |
| |
7 |
Ultrafast nuclear spin polarization induced by
short laser pulses II -for large nuclear spin- |
Kyoto Univ. 1@*Takashi Nakajima 1 |
| |
8 |
THz-wave generation from Plasma Photonic Device
using Electromagnetically Induced Transparency I |
Osaka University 1,Utsunomiya University 2,JST-CREST
3@*Makoto Nakagawa 1,Ryosuke Kodama 1,Zhenglin Chen 1,3,Zhan Jin 1,3,Motoaki
Nakatsutsumi 1,Akinori Nishida 1,Noboru Yugami 2,Takeshi Higashiguchi 2,Nobuo
Ohata 2 |
| |
|
Break 15:30`15:45 |
|
| |
9 |
Proton acceleration experiment by intense excimer
laser (I) |
AIST 1@*Takahashi Eiichi 1, Kato Susumu 1, Matsumoto
Yuji 1, Okuda Isao 1 |
| |
10 |
Research of an Irradiation Target for generating
Heavy Ions |
Hamamatsu Photonics 1@*Matsukado Koji 1, Fujimoto
Masatoshi 1, Takahashi Hironori 1, Kawada Yoichi 1, Ohsuka Shinji 1, Aoshima
Shin-ichiro 1, Tsuchiya Yutaka 1 |
| |
11 |
Production of short-lived radioactive nuclei using
a tabletop, intense, femtosecond laser |
Hamamatsu Photonics 1@*Fujimoto Masatoshi 1, Matsukado
Koji 1, Takahashi Hironori 1, Kawada Yoichi 1, Ohsuka Shinji 1, Aoshima
Shin-ichiro 1, Tsuchiya Yutaka 1 |
| |
12 |
Improvement of the JAEA J-KAREN Laser and Its Applications
to High Field Science High-peak-power, high-contrast OPCPA pre-amplifier/cryogenic-cooled
Ti:sapphire power amplifier laser system |
JAEA, Advanced Photon Research Center@*Kiriyama
Hiromitsu 1, Mori Michiaki 1, Daito Izuru 1, Kotaki Hideyuki 1, Kanazawa
Shuhei 1, Kondo Shuji 1, Nakai Yoshiki 1, Shimomura Takuya 1, Tanoue Manabu
1, Akutsu Atsushi 1, Okada Hajime 1, Motomura Tomohiro 1, Daido Hiroyuki
1, Bulanov Sergei 1, Kimura Toyoaki 1 |
| |
13 |
Improvement of the JAEA J-KAREN laser and Its Applications
to High Field Science (2) - High-energy high-quality electron beam generation
by using an intense laser - |
Japan Atomic Energy Agency@*H. Kotaki, M. Kando,
I. Daito, T. Homma, T. Kameshima, K. Kawase, L.-M. Chen, Y. Fukuda, H. Kiriyama,
S. Kondo, S. Kanazawa, Y. Nakai, T. Shimomura, M. Tanoue, A. Akutsu, H.
Okada, T. Motomura, H. Daido, S. V. Bulanov |
| |
14 |
Improvement of the JAEA J-KAREN Laser and Its Applications
to High Field Science: Single-Shot Diagnosis of Wakefields via the Detection
of Spectrum and Phase of the Transmitted Laser Pulse |
JAEA 1, SLAC 2@@Yuji Fukuda 1, Paul R. Bolton 2,
Masaki Kando 1, Izuru Daito 1, Jinglong Ma 1, Hideyuki Kotaki 1, Yukio Hayashi
1, Takayuki Homma 1, Alexander S. Pirozhkov 1, Liming Chen 1, Michiaki Mori
1, Hiromitu Kiriyama 1, Timur Zh. Esirkepov 1, James K. Koga 1, Hiroyuki
Daido 1, Sergei V. Bulanov 1, Toyoaki Kimura 1, Toshiki Tajima 1 |
| |
15 |
Improvement of the JAEA J-KAREN Laser and Its Applications
to High Field Science -Phase rotation technique of the intense and short
pulse laser driven proton beam by synchronous rf field |
JAEA@1, ICR Kyoto Univ.@2, CRIEPI 3@Mamiko Nishiuchi1,
Hiroyuki Daido1, Akifumi Yogo1, Michiaki Mori1, Hiromitsu Kiriyama1, Shuhei
Kanazawa1, Akito Sagisaka1, Koichi Ogura1, Satoshi Orimo1, Shuji Kondo1,
Youichi Yamamoto1, Takuya Shimomura1, Manabu Tanoue1, Yoshiki Nakai1, Atsushi
Akutsu1, Sergei.V. Bulanov1, Toyoaki Kimura1, Toshiki Tajima1, Masahiro
Ikegami2, Shu Nakamura2, Yoshihisa Iwashita2, Toshiyuki Shirai2, Hikaru
Souda2, Yujiro Tajima2, Akira Noda2, Yuji Oishi3, Koshichi Nemoto3 |
| |
16 |
UV harmonics generation in high-energy proton acceleration
with thin-foil targets |
Japan Atomic Energy Agency 1, Central Research
Inst. of Electric Power Industry 2@*Sagisaka Akito 1, Daido Hiroyuki 1,
Pirozhkov Alexander 1, Ma Jinglong 1, Yogo Akifumi 1, Ogura Koichi 1, Orimo
Satoshi 1, Mori Michiaki 1, Nishiuchi Mamiko 1, Kawachi Tetsuya 1, Bulanov
Sergei 1AEsirkepov Timur 1AOishi Yuji 2, Nayuki Takuya 2, Fujii Takashi
2, Nemoto Koshichi 2 |
| 4.5 Nonlinear
Optics and THz-wave synthesis |
| September 6 9:30`18:30 |
| 6a-ZB-@/ III |
| |
1 |
Nonblocking communications for peer-to-peer self-organized
optical network using optical nonlinearity and pseudorandom noise |
Doshisha Univ. 1@*Oshima Naoki 1,Shiotani Ai 1,Sasaki
Wakao 1 |
| |
2 |
Effects of Bias Injection Current on Optically
Injected Vertical-Cavity Surface-Emitting Lasers |
Shizuoka University@*Itoh Masahiko 1, Shogenji
Rui 2, Ohtsubo Junji 2 |
| ’ |
3 |
TE-TM Mode Dynamics in Semiconductor Lasers Subjected
to Polarization-Rotated Optical Feedback |
Shizuoka Univ.@*Yasutoshi Takeuchi,Rui Shogenji,
Junji Ohtsubo |
| ’ |
4 |
Fast Periodic Oscillations in Broad-Area Semiconductor
Lasers with Short Optical Feedback |
Shizuoka University@*Tachikawa Tomokazu 1, Shogenji
Rui 2, Ohtsubo Junji2 |
| ’ |
5 |
Numerical Analysis of Optical Injection Dynamics
in Broad-Area Semiconductor Lasers |
Shizuoka Uni. 1@*Hideo Mitsui 1,Junji Ohtsubo 1,Rui
Shogenji 1 |
| |
|
Break 10:45`11:00 |
|
| |
6 |
Simple expression for semiconductor laser multimode
rate equations including band tail effects |
Osaka Pref. Univ. 1@*Zhu Jiaxun 1, Wada Kenji 1,
Matsuyama Tetsuya 1, Horinaka Hiromichi 1 |
| |
7 |
A effect of polarization on a chaotic oscillation
in a single mode class A laser |
Kagoshima National College of Technology 1, Fukui
Univ. 2@*Fumiyoshi Kuwashima 1, Yuuichi Kominato 1, Sinnichirou Taniguchi1,
Hiroshi Iwasawa 2 |
| |
8 |
Improvement of the laser damage threshold by reduction
of water molecule impurities in CsLiB6O10 crystal |
Graduate School of Eng., Osaka University 1, Oxide
Co. 2, College of Optical Science, University of Arizona 3@Honda Yoshiyuki
1, Shimizu Yohei, Nishioka Masato 1, Yoshimura Masashi 1, Kitaoka Yasuo
1, Mori Yusuke 1, Sasaki Takatomo 1, Miyamoto Akio 2, Furukawa Yasunori
2, Kaneda Yusi 3 |
| |
9 |
Second-harmonic generation of near IR lasers in
AgxGaxGe1-xS(e)2 |
Chitose Inst. Sci. Tech. 1, Max-Born Inst. 2, Okamoto
Optics Work, Inc. 3@*Miyata Kentaro 1, Petrov Valentin 2, Banerjee Saumyabrata
1, Mikami Takuya 1,3, Umemura Nobuhiro 1, Kato Kiyoshi 1 |
| |
10 |
Narrow linewidth PPLN-Optical Parametric Oscillator
injected by single-frequency semiconductor laser beam |
Tohoku Institute of Technology 1,Tohoku Univ. 2@*Iwabuchi
Hiroshi 1,Uesugi naoshi 1,Itou Hiromasa 2 |
| |
11 |
Nonlinear optical properties for K2S2O6 |
Chitose Inst. Sci. Tech. 1, Okamoto Optics Work,
Inc. 2@*Shido Tomokazu 1, Mikami Takuya 1,2, Tanno Hiroaki 1, Kato Kiyoshi
1 |
| |
|
Lunch 12:30`13:30 |
|
| 6p-ZB-@/ III |
| |
1 |
An injection seeded ZnGeP2 parametric
oscillator |
RIKEN Sendai 1, Graduate School of Science Tohoku
Univ. 2, Graduate School of Engineering Tohoku Univ. 3@Katsuhiko Miyamoto
1, Hiroaki Minamide 1, Yoshiyuki Matsuda 2, Asuka Fujii 2 and Hiromasa Ito
1,3 |
| |
2 |
Generation of continuous-wave anti-Stokes emission
by four-wave mixing in a dispersion compensated cavity |
Graduate School of Eng. 1, Center for Future Chem.
2, Kyushu Univ.A@Izaki Hirotomo 1, Zaitsu shin-ichi 1, Imasaka Totaro 1,2 |
| |
3 |
Observation of four-wave mixing process in a dispersion
compensated cavity pumped by continuous-wave laser |
Graduate School of Eng., Kyushu Univ. 1, Center
for Future Chem., Kyushu Univ. 2@*Zaitsu Shin-ichi 1, Izaki Hirotomo 1,
Imasaka Totaro 1,2 |
| |
4 |
High sensitive detection of THz-wave at room temperature
using difference frequency process in MgO:LiNbO3 |
RIKEN sendai 1,Graduate School of Engineering,
Univ. Tohoku@2@Ruixiang GUO@1ATomofumi Ikari1, *Hiroaki Minamide@1, Semgo
Ohno@1, Hiromasa Ito@1,2 |
| |
5 |
Development of high power THz-wave source using
difference frequency generation |
Nagoya Univ. 1, RIKEN 2, Daiichi pure chemicals
CO.,LTD. 3@*Akiba Takuya 1, Shibuya Takayuki 1,2, Suizu Koji 1, Uchida Hirohisa
3, Kawase Kodo 1,2 |
| |
6 |
Generation and detection of terahertz wave inside
ferroelectric crystals using near-field heterodyne transient grating method |
Chuo Univ. 1, The Univ. of Electrocommunications
2, Massachusetts Institute of Technology 3@*Kenji Katayama 1, Hayato Inoue
1, Qing Shen 2, Taro Toyoda 2, Keith Nelson 3 |
| |
|
Break 15:00`15:15 |
|
| |
7 |
Characterization of the low-temperature grown GaAs
substrate for the broadband THz time-domain spectroscopy |
Osaka Univ. 1, NICT KARC 2, PRESTO JST 3, Hiroshima
Univ. 4@Hiroshi Shimosato 1, *Ikufumi Katayama 1, Singo Saito 2, Masaaki
Ashida 1,3, Tadashi Itoh 1, Yutaka Kadoya 4, Kiyomi Sakai 2 |
| |
8 |
Influence of magnetic field polarity on the teraheltz
radiation of GaAs-based modulation-doped heterostructure with different
AlGaAs spacer-layer thicknesses |
ILE, Osaka Univ. 1, Inst. for Molecular Science
2, Univ. Philippines 3@Estacio E 1,Furukawa Y 1, Murakami H 1, Sarukura
N 1, Ponseca CS 2, Somintac A 3,Bailon-Somintac M 3, Salvador 3 |
| |
9 |
High power sub-terahertz electromagnetic wave radiation
from GaN Photoconductive switch |
Semiconductor Device Research, Semiconductor Company,
Matsushita Electric Industrial Co., Ltd.@Osamu Imafuji 1, Brahm Pal Singh
1, Yutaka Hirose 1, Yasuyuki Fukushima 1, Shinichi Takigawa 1 |
| |
10 |
Characteristics of the THz radiation from InGaAs
photoconductive switch |
Osaka Univ.@*Hiroki Koga 1,Masato Suzuki 1,Iwao
Kawayama 1,Hironaru Murakami 1,Masayosi Tonouchi 1 |
| £ |
11 |
THz performance of ZnTe and its emitter/detector
characteristics in THz-TDS |
Shizuoka University 1, NICT 2 , Nippon Mining and
Metal 3@Saroj R. Tripathi 1, Makoto Aoki 1, Norihisa Hiromoto 1, Iwao Hosako
2, Toshiaki Asahi 3 |
| |
12 |
Analysis of Smith-Purcell radiation in the optical
region |
Hokkaido Univ. 1, RCIQE 2 @*Taga Shinpei 1, Inahune
Koji 1, Sano Eiichi 1 |
| |
|
Break 16:45`17:00 |
|
| |
13 |
ATR Spectroscopy of liquid samples by using GaP
THz signal generator |
Tohoku Univ. 1, Semiconductor Research Inst. 2@*Tadao
Tanabe 1, Atsushi Kenmochi 1, Tetsuo Sasaki 2, Yutaka Oyama 1, Ken Suto
2, Jun-ichi Nishizawa 2 |
| |
14 |
Sub-THz GaAs TUNNETT Diode and Imaging Application |
Tohoku Univ. 1,Semiconductor Research Inst. 2,Iwate
Prefectural Univ. 3@Li Zhen 1,Munehito Kagaya 1,Toru Kurabayashi 3,Hiroki
Makabe 2,Tomoyuki Hamano 2,Kazuomi Endo 1,Yutaka Oyama 1,Tadao Tanabe 1,Jun-ich
Nishizawa 2 |
| |
15 |
Cr:Forsterite laser for shoebox-sized GaP terahertz
signal generator |
Tohoku Univ. 1, Semiconductor Research Inst. 2@Hozumi
Norimitsu 1, Tanabe Tadao 1, Sasaki Tetsuo 2, Oyama Yutaka 1, Suto Ken 2,
Nishizawa Jun-ichi 2 |
| £ |
16 |
CW THz generation system by Enhancing power destines
of two lasers with a single Fiber amplifier |
Tohoku Univ. 1, Semiconductor Research Inst. 2@Tadao
Tanabe 1, *Srinivasa Ragam 1, Tetsuo Sasaki 2, Yutaka Oyama 1, Ken Suto
2, Jun-ichi Nishizawa 2 |
| |
17 |
Characterization of polarization of THz-wave from
GaP waveguide structure |
Tohoku Univ. 1, Semiconductor Research Inst. 2@*Saito
Kyosuke 1,Tanabe Tadao 1,Oyama Yutaka 1,Suto Ken 2,Nishizawa Jun-ichi 2,Sasaki
Tetsuo 2,Kimura Tomoyuki 2 |
| |
18 |
THz spectroscopy of molecular conductor complex
:TTF-TCNQ |
Tohoku Univ. 1, Semiconductor Research Inst. 2@*
Ohashi Takahiro 1, Tanno Takenori 2, Tanabe Tadao 1, Oyama Yutaka 1, Suto
ken 2, Nishizawa Jun-ichi 2 |
| 4.5 Nonlinear
Optics and THz-wave synthesis |
| September 7 9:30`18:45 |
| 7a-ZB-@/ III |
| ’ |
1 |
THz photoconductive semiconductor detectors with
a 4K Cryocooler for sensing on the ground |
Shizuoka Univ. 1, JAXA 2, Tokai Univ. 3@Makoto
Aoki 1, Tripathi Saroj R. 1, Norihisa Hiromoto 1, Kentaroh Watanabe 2, Hiroshi
Murakami 2, Moriaki Wakaki 3 |
| |
2 |
CARS imaging of periodically poled lithium niobate
using terahertz-frequency phonon modes |
Res. Inst. Electrical Communication, Tohoku Univ.
1, Graduate School of Eng., Tohoku Univ. 2@*Shikata Jun-ichi 1, Endo Kazuhisa
1, Nagano Shigehiro 1, Ito Hiromasa 2 |
| |
3 |
Real time spectroscopy using a rapid and random
wavelength tuned mid-infrared laser |
Tokyo University of Science 1, RIKEN 2@*Masaki
Yumoto 1,2, Yasuhiro Maeda 1, Norihito Saito 2, Takayo Ogawa 2, Masafumi
Yamashita 1, Satoshi Wada 1,2 |
| |
4 |
Terahertz sensor using metallic mesh |
Nagoya Univ. 1,Tohoku Univ. 2,Riken 3,Advantest
Labs. Ltd. 4@*Yoshida Shigeki 1,Kato Eiji 1,4,Ogawa Yuichi 2,Kawase Kodo
1,2,3 |
| |
5 |
Non-destructive search of soot removal filter using
millimeter-wave |
Nagoya Univ. 1,RIKEN 2@Gotou Yasunori 1,Shibuya
Takayuki 1,2,Otani Chiko 2,Kawase Kodo 1,2 |
| |
|
Break 10:45`11:00 |
|
| |
6 |
THz-wave real time gas sensing using Ag-coated
hollow fiber |
RIKEN Sendai 1, Graduate School of Engineering,
Tohoku Univ. 2@* S. Ohno 1, H. Minamide 1, R. GUO 1, Y. Matsuura 2, H. Ito
12 |
| |
7 |
Study on High-Power Terahertz Time Domain Spectroscopy
System with Optical-Fiber-Coupled Module Heads |
Central Research Lab. Hitachi 1,Defense Sys. Hitachi
2@Yong Lee 1, Shigehisa Tanaka 1, Sumiko Fujisaki 1,Naohito Uetake 2 |
| |
8 |
Consideration on THz spectrometer using photomixing
of multimode LD III |
Japan Coast Guard Acad. 1, Osaka Univ. 2@@Osamu
Morikawa 1, Masami Fujita 1, Masanori Hangyo 2 |
| |
9 |
The improvement in spatial resolution of Laser
Terahertz emission microscope |
Inst. of Laser Engineering, Osaka Univ. 1@@*Kim
Sunmi 1, Murakami Hironaru 1, Tonouchi Masayoshi 1 |
| ’ |
10 |
Development of the precise terahertz pump-probe
spectroscopy system |
ISSP, The Univ. of Tokyo 1@*Nakajima Makoto 1,
Seki Takashi 1, Suemoto Tohru 1 |
| |
11 |
A compact THz-TDS system for rapid and stable measurements |
OTSUKA ELECTRONICS@*Izutani Yusuke 1, Kitagishi
Keiko 2 |
| |
|
Lunch 12:30`13:30 |
|
| 7p-ZB-@/ III |
| |
1 |
Young Scientist Award for the Presentation of an
Excellent Paper
Frequency-tunable sensing of terahertz photons using carbon nanotube quantum
dots |
RIKEN 1, JST PRESTO 2,Tokyo Univ. of Sci. 3, JST
CREST 4@Kawano Yukio 1,2, Toyokawa Seiko 1,3, Fuse Tomoko 1, Uchida Takeo
1, Ishibashi Koji 1,4 |
| |
2 |
Measurement of refractive index of metal using
THz TDS |
NICT 1@Hiroaki Yasuda 1, Iwao Hosako 1 |
| |
3 |
Electromagnetic responses of cut-wire grid structure
in terahertz region. |
Inst. of Laser Engineering, Osaka Univ 1, Mitsubishi
electric corporation 2@Takano Keisuke 1, Shibuya Kyoji 1, Koichi Akiyama
2, Masanori Hangyo 1 |
| |
4 |
Texture of Wire-grid in THz region by Nishijin
brocade technology |
Murata Mfg., Co., Ltd. 1, Zaiki 2, KKVP 3, Kyoto
Univ. 4@*Fujii Takashi 1, Sakabe Yukio 1, Zaiki Shouji 2, Shinohara Nagamasa
3, Hirao Kazuyuki 4 |
| |
5 |
Structure and material influence of wire-grid fabricated
into metal plate on its performance for THz electromagnetic wave |
Murata Mfg., Co., Ltd. 1, Mutsumi Corp. 2, Kyoto
Univ. 3@*Fujii Takashi 1, Sakabe Yukio 1, Muto Kazuyoshi 2, Hirao Kazuyuki
3 |
| |
6 |
Transmission characteristics of metallic H fractal
in terahertz region |
Shinshu Univ. 1, The Hong Kong Univ. of Science
and Technology 2@Fumiaki Miyamaru 1, Yu Saito 1, Mitsuo Wada Takeda 1, Lyu
Liu 2, Hou Bo 2, Weijia Wen 2, Ping Sheng 2 |
| |
7 |
Terahertz response of fractal metamaterials |
Shinshu Univ. 1, The Hong Kong Univ. of Science
and Technology 2@Fumiaki Miyamaru 1, Yu Saito 1, Mitsuo Wada Takeda 1, L.
Liu 2, H. Bo 2, W. Wen 2, P. Sheng 2 |
| |
|
Break 15:15`15:30 |
|
| £ |
8 |
Femtosecond Carrier Acceleration in Short Channel
Bulk GaAs under Very High Electric Fields |
Inst. of Indstrial Science / CINQIE, Univ. of Tokyo@*Zhu
YiMing 1, Unuma Takeya 1, Shibata Kenji 1, Hirakawa Kazuhiko 1 |
| |
9 |
Frequency Increase of Resonant Tunneling Diode
Oscillators with Area Reduction and Offset-Fed Slot Antennas |
Tokyo Tech 1, JST-CREST 2, NICT 3@*Kishimoto Naomichi
1, Suzuki Safumi 1, Asada Masahiro 1, 2, Sekine Norihiko 3, Housako Iwao
3 |
| |
10 |
Coherent power combination in highly integrated
resonant tunneling diode oscillators with slot antennas |
Tokyo Tech. 1, JST-CREST 2@Suzuki Safumi 1, Asada
Masahiro 1,2 |
| ’ |
11 |
Room temperature terahertz emission from a plasmon-resonant
emitter in a double-decked HEMT structure |
Tohoku Univ. 1, Hokkaido Univ. 2@*Yohei Hosono
1,Yahya Meziani 1, Mitsuhiro Hanabe 1, Tetsuya Suemitsu 1, Taiichi Otsuji
1, Eiichi Sano 2 |
| |
12 |
Investigation of Ag-metal bonding condition for
low-loss plasmon waveguide of THz-Quantum Cascade Laser (QCL) |
RIKEN-Sendai 1@Ying Leiying 1, Horiuchi Noriaki
1, Hirayama Hideki 1 |
| |
13 |
Fabrication of THz-Quantum Cascade Laser (QCL)
by using double metal waveguide |
RIKEN-Sendai 1@Horiuchi Noriaki 1, Ying Leiying
1, Terashima Wataru 1, Hirayama Hideki 1 |
| |
|
Break 17:00`17:15 |
|
| ’ |
14 |
Terahertz power dependence of terahertz photon-assisted
tunneling in carbon nanotube quantum dots |
RIKEN 1,Tokyo Univ. of Sci.2,JST PRESTO 3, JST
CREST 4@*Toyokawa Seiko 1,2,Kawano Yukio 1,3,Fuse Tomoko 1,Ishibashi Kouji
1,4 |
| |
15 |
Terahertz Characterization of Construction Materials |
Spectra Design Ltd.@Fukasawa Ryoichi 1,Furui Hatsune
1 |
| ’ |
16 |
Terahertz Spectroscopy of Water-Based Solutions
Using Microfluidics |
IIS Univ. of Tokyo 1, CINQIE Univ. of Tokyo 2@Nobuaki
Hirose 1,2, Masayuki Nagafuchi 1,2, Kazuhiko Hirakawa 1,2, Momoko Kumemura
1, and Hiroyuki Fujita 1 |
| |
17 |
Vibrational analysis of 9-cis, 11-cis, and 13-cis
retinal isomers in terahertz region |
Inst. Molecular Science 1, Graduate Univ. for Advanced
Studies 2, ILE Osaka Univ. 3, De La Salle Univ. 4, Semiconductor Research
Inst. 5, Nagoya Inst. of Technology 6, Kobe Univ. 7@Carlito S. Ponseca Jr.
1,2, Elmer S. Estacio 3, Hidetoshi Murakami 3, Yusuke Furukawa 3, Nobuhiko
Sarukura 3, Romeric Pobre 4, Jun-ichi Nishizawa 5, Ken Suto 5, Tetsuo Sasaki
5, Takenori Tanno 5, Kazutomo Ido 6, Yuji Furutani 6, Hideki Kandori 6,
Shintaro Kawaguchi 7, Ohki Karamba 7, Kensuke Tominaga 7 |
| |
18 |
THz spectroscopy of bio-molecules in frozen samples
by GaP THz spectrometer |
Sem. Res. Inst. 1, Tohoku Univ. 2@Jun-ichi Nishizawa
1, *Tetsuo Sasaki 1, Takashi Yoshida 1, Takenori Tanno 1, Tadao Tanabe 2,
Ken Suto 1 |
| |
19 |
Wide band terahertz spectroscopy for analysis of
pathological specimen |
Iwate Med. Univ. 1, Sem. Res. Inst. 2@*Yasuhiro
Miura 1, Renshun Jin 1, Takashi Sawai 1, Jun-ichi Nishizawa 2, Tetsuo Sasaki
2, Takashi Yoshida 2, Ken Suto 2 |
| 4.6 Laser
Spectroscopy and Instrumentation |
| September 7 13:30`16:00 |
| 7p-ZA-@/ III |
| |
1 |
A speckle-free incoherent emission source at 193
nm |
Univ. of Miyazaki 1@*Shoichi Kubodera 1, Masanori
Kaku 1, and Yuta Taniguchi 1 |
| |
2 |
Laser isotope separation of zirconium based on
polarized selection rules |
Fukui Univ.@*Kuroyanagi Takaaki 1, Horiuti Ysunobu
1, Itakura Sou 1, Yasuda Hiroki 1, Niki Hideaki 1 |
| ’ |
3 |
Multi-nonlinear spectroscopy using fringe resolved
autocorrelation technique |
RIKEN 1, Keio Univ. @*Isobe Keisuke 1, Akira Suda
1, Tanaka Masahiro 2, Kannari Fumihiko 2, Kawano Hiroyuki 1, Mizuno Hideaki
1, Miyawaki Atsushi 1, Midorikawa Katsumi 1 |
| |
4 |
Evanescent-wave saturation spectroscopy of atoms
: Polarization characteristics |
Tokyo University of Agriculture and Technology@*Watanabe
Atsushi 1, Muroo Kazuyuki 1, Takubo Yoshitaka 1 |
| |
5 |
CH4 monitoring in ambient air using
multi-pass cell and optical fringe noise suppression |
NTT Photonics Labs. 1@*Tsutomu Yanagawa 1, Osamu
Tadanaga 1, Yoshiki Nishida 1, Katsuaki Magari 1, Takeshi Umeki 1, Masaki
Asobe 1, Hiroyuki Suzuki 1 |
| |
|
Break 14:45`15:00 |
|
| |
6 |
Visualization of hydrogen gas leak flow using Raman
scattering |
Shikoku Research Inst. 1,Central Research Institute
of Electric Power Industry 2@Ninomiya Hideki 1,Fukuchi Tetsuo 2 |
| |
7 |
Development of the 1.6 µm differential absorption
lidar for carbon dioxide observations 4 |
Tokyo Metropolitan Univ. 1, Meteorological Research
Inst. 2@*Sakaizawa Daisuke 1, Nagasawa Chikao 1, Nagai Tomohiro 2, Abo Makoto
1,Shibata Yasukuni 1, Nakazato Masahisa 2 |
| |
8 |
Optimization of 1.5Κm FBG filter for the eye-safe
Doppler lidar |
Tokyo Metropolitan Univ.@*Shibata Yasukuni 1, Nagasawa
Chikao 1, Abo Makoto 1 |
| ’ |
9 |
Measurements of the Size Distribution and Kosa
Particles Using a White Light Depolarization Lidar System |
Osaka Univ. 1, Inst. for Laser Technology 2@*Somekawa
Toshihiro 1, Yamanaka Chihiro 1, Fujita Masayuki 2 |
| 4.7 Laser
Processing |
| September 4 9:30`17:00 |
| 4a-Y-@/ III |
| |
1 |
Reduction of aqueous Ag+ mediated by
solid carbon under pulsed laser irradiation |
Sophia Univ. 1,Chuo Univ. 2@*Yoshiko Miura 1,Kazuko
Yui 2,Hiroshi Uchida 1,Kiyoshi Itatani 1,Seiichiro Koda 1 |
| £ |
2 |
Mechanisms of nanoparticles size reduction by laser
irradiation |
AIST 1@*Pyatenko Alexander 1.Yamaguchi Munehiro
1,Suzuki Masaaki 1 |
| |
3 |
Preparation of silver nanoparticles by laser ablation
in polymer solutions. |
Inst. Mater. Chem. & Eng. Kyushu Univ. 1,Grad.
Sch. Eng. Sci. Kyushu Univ. 2,Kokkaido Univ. 3@*Tsuji Takeshi 1,D-H Thang
1,Nakanishi Masataka 2,Okazaki Yuuki 2,Tsuboi Yasuyuki 3,Tsuji Masaharu
1 |
| |
4 |
Preparation of Nanoparticles of Cathode Materials
for Li ion Secondary Batteries by Laser Ablation in Liquids |
Grad. Sch. Eng. Sci. Kyushu Univ.1, Inst. Mater.
Chem. & Eng. Kyushu Univ.2, CREST3@*Nakanishi Masataka1, Tsuji Takeshi2,3,
Ishii Junnji1, Doi Takayuki2,3, Tsuji Masaharu2,3, Yamaki Jun-ichi2,3 |
| |
5 |
Preparation of cerium oxide nanoparticles by laser
ablation in water |
JAEA@OhbaH ironori 1, Saeki Morihisa 1, Esaka Fumitaka
1, Nishimura Akihiko 1, Yokoyama Atsushi 1 |
| £ |
6 |
Optical properties of TAG:Ce particles fabricated
by laser ablation in liquid phase |
Hanyang Univ. 1, AIST 2 @SungWook Mhin 1,2, KangMin
Kim 1, KwangBo Shim 1, Takeshi Sasaki 2, Naoto Koshizaki 2 |
| |
|
Break 11:00`11:15 |
|
| |
7 |
Formation mechanisms of the layered organic/inorganic
nanocomposites by pulsed laser ablation in liquids |
Nanoarchitectonics Res. Ctr., AIST@*Sasaki Takeshi
1, Koshizaki Naoto 1 |
| |
8 |
Boron carbide particle preparation by laser irradiation
of boron particle in organic solution |
AIST@Ishikawa Yoshie 1, Sasaki Takeshi 1, Koshizaki
Naoto 1 |
| |
9 |
Fabrication of AlN thin films on low temperature
substrate by EB laser ablation |
Hamamatsu Photonics K.K.@*Kitahara Tadashi,Ichikawa
Norio |
| |
10 |
Ar Excimer Lamp Irradiation Cleaning Effect for
Si(100) and ΐ-FeSi2(100)/Si(100) Epitaxial thin film growth by ArF Eximer
Laser Deposition |
OECUniv. 1,Univ.Miyazaki 2, NTP 3@Tode Mayumi 1,
Harada Yoshiaki 1, Katto Masato 2, Takigawa Yasuo 1, *Sasaki Wataru 3 |
| |
11 |
Formation of photoluminescent layer on silicone
rubber by ArF laser (2) |
National Defense Academy 1, Kanto Gakuin Univ.
2@* Minako Iyono1, Masayuki Okoshi1, Narumi Inoue1, Tsugito Yamashita2 |
| |
|
Lunch 12:30`13:30 |
|
| 4p-Y-@/ III |
| ’ |
1 |
The time-resolved measurement of the ultra fast
melting process in the femtoseocnd laser crystallization for Si |
ILE Osaka Univ. 1, ICR Kyoto Univ. 2, ILT @*Izawa
Yusaku 1, Tokita Shigeki 2, Fujita Masayuki 3, Norimatsu Takayoshi 1, Izawa
Yasukazu 1 |
| ’ |
2 |
Shock wave emission by femtosecond laser-induced
breakdowns in water |
The Univ. of Tokushima@*Akihiro Takita 1, Yoshio
Hayasaki 1 |
| ’ |
3 |
Carbon Species Distribution Observation of Ultrananocrystalline
Diamond Formation Environment by Time-Resolved Photography |
Kyushu Univ.@*Takashi Nishiyama, Tetsuya Habe,
Tsuyoshi Yoshitake, Kunihito Nagayama |
| ’ |
4 |
Comparison of PLD and LALA method in hydroxyapatite
film formation |
Interdisciplinary Graduate school of Sci. and Tech.,
Kinki Univ. 1@*H.Katayama 1, T.Nakayama 1 |
| ’ |
5 |
Variation of titanium dioxide filmsf electrical
resistance with high intensity short-pulsed laser |
Graduate School of Eng., OSAKA Univ. 1, JWRI, OSAKA
Univ. 2, School of Sci. and Eng., KINKI Univ. 3, OSAKA Mun. Tech. Res. Inst.
4, ILT 5@*Takuto Yamashita 1, Yukihiro Soga 1, Masahiro Tsukamoto 2, Minoru
Yoshida 3, Hitoshi Nakano 3, Masanari Takahashi 4, Masahiro Fujita 5, Nobuyuki
Abe 2 |
| ’ |
6 |
Mechanism of crystalline structure transformation
of Si induced by femtosecond laser shock |
Osaka Univ. 1, SPring-8 2, National Defense Acad.
3@*Masashi Tsujino 1, Tomokazu Sano 1, Norimasa Ozaki 1, Osami Sakata 2,
Masayuki Okoshi 3, Narumi Inoue 3, Ryosuke Kodama 1, Akio Hirose 1 |
| ’ |
7 |
Laser polarization dependence of fs-laser-induced
nanostructure formation on DLC film surface |
Kyoto Univ. 1@*Miyaji Godai 1, Miyatani Yoshitaka
1, Miyazaki Kenzo 1 |
| |
|
Break 15:15`15:30 |
|
| ’ |
8 |
Direct observation of cross-sectional profiles
of ripple structures on Si,SiC and HOPG |
The Univ. of Tokushima 1, JSPMI 2@Ryota Kumai 1,
Takuro Tomita 1, Shigeki Matsuo 1, Shuichi Hashimoto 1, and Makoto Yamaguchi
2 |
| ’ |
9 |
Fabrication of optical rotator inside a transparent
solid material by fs laser |
The Univ. of Tokushima 1@*Satoshi Kiyama 1,Takuro
Tomita 1,Shigeki Matsuo 1,Shuichi Hashimoto1 |
| ’ |
10 |
Silica-based nonplanar surface structures fabricated
by femtosecond laser lithography |
Osaka Univ. 1, AIST 2@*Hiroaki Nishiyama 1, Mizue
Mizoshiri 1, Junji Nishii 2, Yoshinori Hirata 1 |
| ’ |
11 |
Femtosecond laser micromachining of FPD glasses
for high speed dicing |
Cyber Laser Inc.@Hirokazu Tahara, Masanao Kamata,
Sugio Wako, Susumu Tsujikawa, Norihiro Inoue,Tomohiro Imahoko, Tetsumi Sumiyoshi,
Hitoshi Sekita |
| ’ |
12 |
Investigation on the welding strength between glass
and copper joined by using ultrashort laser pulses |
Osaka Univ. 1@T. Inoue 1, T. Tamaki 1, Y. Ozeki
1, K. Itoh 1, H. Watanabe 1 |
| ’ |
13 |
Control of the shape of microvoids and cracks by
using an aperture at pupil plane |
Shizuoka Univ. 1, Hamamatsu Photonics K.K. 2@*Miyake
Shunji 1. Oishi Shingo 2. Aoshima Shinichiro 2. Kawata Yoshimasa 1 |
| 4.7 Laser
Processing |
| September 5 9:30`17:35 |
| 5a-Y-@/ III |
| |
1 |
Ablation phenomena by pulse laser reflection at
a liquid surface |
Kyushu Univ., Fukuoka Inst. Tech.@Kunihito Nagayama
1, Takashi Kajiwara 1, Takashi Nishiyama 1, Motonao Nakahara 2 |
| |
2 |
Visualization of assist gas distribution for mild
steel cutting |
Univ. Tokai@*Kotaro Kawai 1, Homare Momiyama 1,
Masamori Endo 1, Shigeru Yamaguchi 1, Kenzo Nanri 1, Tomoo Fujioka 1 |
| |
3 |
Formation of micro periodic structures inside PET
sheet induced by Third Harmonic YAG Laser. |
Corporate R&D, Toyo Seikan Group 1@*Yuasa Yoshiyuki
1,Takenouchi Ken 1 |
| |
4 |
Generation of Tin micro-droplet using pulsed-laser
for EUV light source |
Grad. Sch. of I.S.E.E. Kyushu Univ. 1, Sch. of
Medicine Kyushu Univ. 2@Daisuke Nakamura 1, Koji Tamaru 1, Tomoya Akiyama
1, Akihiko Takahashi 2, Tatsuo Okada 1 |
| |
5 |
Micro-patterning by laser-induced dot transfer
method with a UV DPSS laser |
AIST PRI 1@*Narazaki Aiko 1, Kurosaki Ryozo 1,
Sato Tadatake 1, Kawaguchi Yoshizo 1, Niino Hiroyuki 1 |
| |
6 |
Ablation of SiO2 and Si Using Laser
Plasma Soft X-rays |
Univ. of Tsukuba 1, AIST PRI 2@*Makimura Tetsuya
1, Fujimori Takashige 1, Hiroyuki Niino 2, Kouichi Murakami 1 |
| |
7 |
Ablation Process of Silica Glass Induced by Irradiation
with Pulsed Laser Plasma Soft X-rays |
Inst. of Appl. Phys., Univ. of Tsukuba 1, AIST
PRI 2, S.R.P. "Nano Science" 3@*Fujimori Takashige 1, Makimura Tetsuya 1,
Niino Hiroyuki 2, Murakami Kouichi 1,3 |
| |
|
Break 11:15`11:30 |
|
| |
8 |
Laser color marking on metal surface by UV-DPSS
laser |
AIST 1, Itagaki Metal Co. Ltd. 2@* Sato Tadatake
1, Niino Hiroyuki 1, Kanou Seisuke 1, Shimura Hirofumi 1, Togashi Tomoyuki
2, Itagaki Kaoru 2 |
| |
9 |
Full color image representation by CMYK toner using
a CO2 laser |
Graduate School of Engineering, SOKA Univ.@*Tobe
Masafumi 1,Tokita Daisaku 1,Ishii Yoshio 1,Watanabe Kazuhiro 1 |
| |
10 |
Positional accuracy investigation of target object
in personal identification method using crack into a transparent material |
Graduate School of Engineering, Soka Univ.@*Shutou
Takao 1, Tokita Daisaku 1, Ishii Yoshio 1, Watanabe Kazuhiro 1 |
| |
11 |
Investigation of fabrication sequence for constructing
personal identification method using metal surface processing |
Graduate school of Engineering, SOKA Univ. 1@*Eshima
Haruki 1, Tokita Daisaku 1, Ishii Yoshio 1, Watanabe Kazuhiro 1 |
| |
|
Lunch 12:30`13:30 |
|
| 5p-Y-@/ III |
| |
1 |
High luminance application of ophthalmic orange
fiber laser |
Nidek Co., Ltd. 1@Ito Koichi 1, Suzuki Jun 1, Nakanishi
Jun 1, Adachi Muneyuki 1, Kojima Kazunobu 1, Hayashi Kenichi 1 |
| |
2 |
JJAP Award Lecture ΄ZυpXπp’½§ΎήΏΜ}CNnΪ
|
Osaka Univ.@ΚΨ²K |
| |
3 |
Ablation mechanism of polytetrafluoroethylene with
femtosecond laser pulses |
ICR Kyoto Univ. 1, Sumitomo Electric Industries
Ltd. 2@Masaki HASHIDA 1, Hidehiko Mishima 2, Seiji Shimizu 1, Shigeki Tokita
1, Shuji Sakabe 1 |
| |
4 |
Nano periodic structures on dielectric material
by femtosecond laser ablation |
ILE Osaka Univ. 1,ILT 2,Kinki Univ. 3@*Tsurumi
Yosuke 1,Izawa Yusaku 1,Fujita Masayuki 2,Yoshida Minoru 3,Miyanaga Noriaki
1 |
| |
5 |
The formation process of femtosecond laser induced
nano periodic structure – incidence angle dependence |
Kinki Univ.1,3,ILE Osaka Univ.2, ILT4@*Kazuhiro
Chikada1,2,Hitoshi Nakano1,Yusaku Izawa2,Takashi Hamamura2,3, Masayuki Fujita4 |
| |
6 |
Consideration of formation mechanism of femtosecond
laser induced periodic surface structure on metals |
Osaka Uni.@Nakashima Toru 1, Sano Tomokazu 1, Nishiuchi
Syunpei 1, Hirose Akio 1 |
| |
7 |
Micropatterning of biomaterials utilizing focused
femtosecond laser. Part 3 |
Hamano Fund.1; Dept. of Appl. Phys.2, Grad. Sch.
of Eng. Sci.3, and VBL4, Osaka Univ.; JST-CREST5@*Hosokawa Yoichiroh 1,2,5,Kaji
Takahiro 3,Uwada Takayuki 1, Takizawa Noriko 1, Okano Kazunori 1,4, Ito
Syoji 3, Miyasaka Hiroshi 3, Masuhara Hiroshi 1,4,5 |
| |
8 |
Method for isolation of tissues from animal and
plant samples by femtosecond laser machining |
Kyoto Univ1,5,7, JST, Xi'an Jiantong Univ3, Osaka
Univ4, Tokyo Inst6@@*Masaaki Sakakura1,2, Si Jinhai3, Shin'ichiro Kajiyama4,
Kazuyuki Hirao5, Kenji Tochigi6, Mitsuyoshi Ueda7 |
| |
|
Break 15:35`15:50 |
|
| |
9 |
Microfabrication of GaN by wet etching with femtosecond
laser |
RIKEN 1@Seisuke Nakashima 1, Koji Sugioka 1, Katsumi
Midorikawa 1 |
| |
10 |
Optical waveguide fabrication in UV transparent
polymer by femtosecond laser |
RIKEN 1@*Hanada Yasutaka 1, Sugioka Koji 1, Midorikawa
Katsumi 1 |
| |
11 |
Fabrication of Optical Waveguides in Photosensitive
Glass by Femtosecond Laser |
RIKEN 1@*Koji Sugioka 1, Zhongke Wang 1, Katsumi
Midorikawa 1 |
| |
12 |
High Efficiency Bio Microchip Fabricated by Integration
of Microcomponents Using Femtosecond Laser |
RIKEN 1@*Koji Sugioka 1, Zhongke Wang 1, Katsumi
Midorikawa 1 |
| |
13 |
Generation of nanomaterials by thin film processing
using interfering femtosecond laser III |
ILE, Osaka Univ. 1@Yoshiki Nakata 1, Kunio Tsuchida
1, Noriaki Miyanaga 1 |
| |
14 |
Low-stress Dicing Assisted by Ultra Fast Laser
for Multilayer MEMS |
ILE Osaka Univ. 1, Tohoku Univ. 2, ILT 3@*Izawa
Yusaku 1, Tsurumi Yosuke 1, Kikuchi Hideyuki 2, Sueda Keiichi 1, Nakata
Yoshiki 1, Esashi Masayoshi 2, Miyanaga Noriaki 1, Tanaka Shuji 2, Fujita
Masayuki 3 |
| |
15 |
Photo polymerization of conducting polymer by focused
femtosecond laser irradiation |
Tokyo Polytechnic University@*Masakazu Hori 1,
Katsumi Yamada 1, Jun Chen 1 |