4 Quantum Electronics |
4.2 Photonic
Nano-Structures and Relating Phenomena |
August 29 (Tue.) 9:00`17:00 |
29a-ZD-@/ III |
|
1 |
Fabrication of Periodic Structures by Interference
of Phase-Controlled Multi Laser Beams |
Hokkaido University 1, JST(CREST) 2, Tokyo Metropolitan
University 3, University of Tokushima 4@Kannari Kenta 1,2, Kondo Toshiaki
3, Seet Kock Khuen 1, Matsuo Shigeki 4, Ueno Kosei 1,2, Juodkazis Saulius
1,2, Misawa Hiroaki 1,2 |
|
2 |
Fabrication of three-dimensional photonic crystals
by triple exposure of two-beam interference fringes |
Ritsumeikan Univ. 1@*Ochi Takashi 1, Ono Yuzo 1 |
|
3 |
Woodpile-type photonic crystals composed of air
columns (4) |
NCRC, Univ. of Tokyo 1, OITDA 2@*Katsuyama Toshio
1,2, Hosomi Kazuhiko 1,2, Goto Shigeo 1,2, Yamada Hiroji 1, Aoki Kanna 1,
Arakawa Yasuhiko 1 |
’ |
4 |
Fabrication of woodpile 3D photonic crystals using
double-angled etching technique (II) |
Kyoto Univ. 1@*Takahashi Shigeki 1, Imada Masahiro
1, Nakamori Takeshi 1, Noda Susumu 1 |
|
5 |
Fabrication process of silicon 3D photonic crystal
structures with designed defects using double directional etchings |
QNERC & Dept. of Physical Electronics, Tokyo Tech.
1, Dept. of Electrical & Electronic Eng., Tokyo Univ. of A&T 2, SORST-JST
3 @*Daihei Hippo 1,3, Kei Urakawa 2, Yoshiyuki Kawata 1,Yoshishige Tsuchiya
1,3,Hiroshi Mizuta 1,3, Nobuyoshi Koshida 2,3, and Shunri Oda 1,3
|
|
6 |
Colloidal Crystal Formation for Use of Photonic
Application |
JAXA 1, AES 2, Nagoya City Univ. 3, Univ. of Toyama
4, NIMS 5, Nagoya Inst. of Tech. 6, Fuji Chem. Co. 7, Hamamatsu Photonics
8@*Yoshimasa Ohki 1, Toshitami Ikeda 1, Tomoyuki Kobayashi 1, Tuyoshi Kano
1, Yuki Watanabe 2, Osamu Imaizumi 2, Erika Yoda 2, Junpei Yamanaka 3, Sachiko
Onda 3, Akiko Toyotama 3, Kennsaku Ito 4, Tsutomu Sawada 5, Sigeru Okamoto
6, Masaki Wakamatsu 6, Hiroshi Yamada 7, Hiroshi Ozaki 8, Fumio Uchida 8,
Yoshihiro Takiguchi 8 |
|
|
Break 10:30`10:45 |
|
|
7 |
Fluorescence Spectroscopic Study on Dye Molecules
Embedded in Opal and Inverse Opal Photonic Crystals |
Hokkaido Univ. 1, Sanyo Chemical Industries, Ltd.
2@*Yoshiaki Nishijima 1, Kosei Ueno 1, Hideki Fujiwara 1, Keiji Sasaki 1,
Hiroaki Misawa 1, Toshihiro Tanimura 2, Kohei Maeda 2 |
’ |
8 |
Structural Fluctuation and Spontaneous Emission
Lifetime in 3D Photonic Crystal |
Kyoto Univ.@Ishizaki Kenji 1, Okano Makoto 1, Noda
Susumu 1 |
|
9 |
Fabrication and optical characterization of vertical
waveguide in three-dimensional photonic crystals |
Kyoto Univ. 1@*Kawashima Shoichi 1, Ishizaki Kenji
1, Okano Makoto 1, Imada Masahiro 1, Noda Susumu 1 |
|
10 |
Fabrication technology of 3D metal microstructure
by light solidified resin |
Yokohama Nat'l Univ. 1@Yoshimura Toshiya 1, Maruo
Syoji 1, Mukai Kouki 1 |
£ |
11 |
Laser-microfabricated 3D frameworks for buildup
of 3D metallic photonic crystals: the@applicability study |
CREST.1,@Hokaido Univ.,2@Mizeikis Vygantas 1, Juodazis
Saulius 1,2, Jarutis Vygandas 1,Misawa Hiroaki 1,2 |
|
|
Lunch 12:15`13:30 |
|
29p-ZD-@/ III |
|
1 |
Highly efficient excitation of single quantum dot
using photonic crystal nanocavity |
Inst. of Industrial Science Univ. of Tokyo 1, NCRC
Univ. of Tokyo 2, RCAST Univ. of Tokyo 3@*Nomura Masahiro 1,2, Iwamoto Satoshi
1,2,3, Yang Tao 1,2, Nakaoka Toshihiro 1,2, Ishida Satomi 2,3, Arakawa Yasuhiko
1,2,3 |
|
2 |
Fabrication of Polymer Photonic Crystals by Nanoimprinting
Using Alumina Nanohole Array
|
KAST 1,Tokyo Metropolitan Univ.@2
@Yanagishita Takashi 1, Kumagai Naoko 2, Nishio Kazuyuki 1,2, Mauda Hideki
1,2
|
’ |
3 |
Fabrication of InP-based two-dimensional air-hole
arrays by selective area MOVPE and control of its shape |
Hokkaido Univ. RCIQE 1@Takeda Junichiro 1, Motohisa
Junichi 1, Fukui Takashi 1 |
|
4 |
Pillar structure fabrication of microcavities by
two-step dry etching |
NTT@BRL@1, Tokai Univ. 2, NTT PH Labs 3@*Yamaguchi
Takao 1,2, Tawara Takehiko 1, Gotoh Hideki 1, Kamada Hidehiko 1, Nakano
Hidetoshi 1, Okamoto Hiroshi 3, Mikami Osamu 1 |
|
5 |
Polarization-resolved resonant excitation of 2D
photonic-crystal nanocavity with quantum dots and its optical properties |
Kyoto Univ. 1@*Yamaguchi Makoto 1,Fujita Masayuki
1,Stumpf Wolfgang 1,Asano Takashi 1,Noda Susumu 1 |
£ |
6 |
Light-Emission Characteristics of Quantum Dots
Embedded in a Photonic Double-Heterostructure Nanocavity |
Kyoto Univ. 1@W. Stumpf 1, M. Fujita 1, M. Yamaguchi
1, T. Asano 1, and S. Noda 1 |
|
7 |
Quality factor evaluation of photonic crystal cavities
with high-density InAs/GaAs quantum dots |
NTT Basic Research Laboratories. 1, Arizona State
Univ. 2@*Takehiko Tawara 1, Yong-Hang Zhang 1,2, Ding Ding 2, Shane R. Johnson
2, Hidehiko Kamada 1, Takasumi Tanabe 1, Nicholas I. Cade 1, Eiich Kuramochi
1, Masaya Notomi 1, Hidetoshi Nakano 1 |
|
|
Break 15:15`15:30 |
|
|
8 |
H1-type photonic-crystal cavities with high quality
factor |
NEC Corp. 1, AIST 2, SORST-JST 3@*Shirane, Masayuki
1, Kono Shunsuke 1, Ikeda Naoki 2, Sugimoto Yoshimasa 2, Ohkouchi Shunsuke
2, Tomita Akihisa 1,3 |
|
9 |
Mode identification of H1-type photonic-crystal
cavities |
NEC 1, AIST 2, SORST JST 3@*Shirane, Masayuki 1,
Ushida Jun 1, Kono Shunsuke 1, Ikeda Naoki 2, Sugimoto Yoshimasa 2, Ohkouchi
Shunsuke 2, Tomita Akihisa 1,3 |
|
10 |
Dependence of emission efficiency on dots number
in combined system of photonic-crystal nanocavity and quantum dots |
Kyoto Univ. 1
@*Masayuki Fujita 1, Makoto Yamaguchi 1, Wolfgang Stumpf 1, Takashi Asano
1, Susumu Noda 1 |
’ |
11 |
Consideration on strong coupling phenomena between
electron and photon in two-dimensional photonic-crystal nanocavity |
Kyoto Univ.@*Yamaguchi Makoto 1,Asano Takashi 1,Fujita
Masayuki 1,Stumpf Wolfgang 1,Noda Susumu 1
|
|
12 |
Fabrication of free-standing two-dimensional photonic
crystal microcavities with Ge self-assembled quantum dots. |
ARL Musashi Institute of Technology,IMR Tohoku
University 1@Y.Ikegami,J.Xia,T.Usami1 Y.Shiraki |
£’ |
13 |
Enhanced photoluminescence from Ge self-assembled
quantum dots in photonic crystal microcavity |
Musashi Inst. of Technology 1, Tohoku Univ. 2,
Horiba Ltd. 3
@*Jinsong Xia1, Noritaka Usami2, Yuta Ikegami1, Yasushi Nakata3, and Yasuhiro
Shiraki1 |
4.2 Photonic
Nano-Structures and Relating Phenomena |
August 30 (Wed.) 9:00`17:45 |
30a-ZD-@/ III |
|
1 |
Increase in delay time and dispersion of multiple
1D coupled-defect-type photonic crystals (3) |
NCRC, Univ. of Tokyo 1, OITDA 2, Hitachi CRL 3@Shigeo
Goto 1,2,3, Toshio Katsuyama 1,2, Kazuhiko Hosomi 1,2,3, Yasuhiko Arakawa
1 |
’ |
2 |
Investigation of Low-Group-Velocity and Low-Dispersion
Photonic Crystal Waveguides |
Yokohama Nat'l Univ. 1@*Shosaku Kubo 1, Daisuke
Mori 1, Toshihiko Baba 1 |
|
3 |
Group delay measurements of low-group-velocity
pulse-light in GaAs-based photonic crystal slab waveguides |
U.Tsukuba 1,AIST 2@*Kitagawa Yoshinori 1,Ozaki
Nobuhiko 1,Takata Yoshiaki 1,Watanabe Yoshinori 1,Mizutani Akio 1,Ikeda
Naoki 1,2,Sugimoto Yoshimasa 1,2,Asakawa Kiyoshi 1 |
|
4 |
Fundamental Characteristics of Optical Group Delay
Device by Chirped Photonic Crystal Waveguides (V) – Group Index and
Bandwidth Relation – |
Yokohama Nat'l Univ. 1@*Mori Daisuke 1, Hirokazu
Sasaki 1, Kubo Syosaku 1, Kawasaki Takashi 1, Baba Toshihiko 1 |
|
5 |
Topology optimization of 2D photonic crystal waveguide
bends |
U. Tsukuba 1, AIST 2 , DTU 3, Aarhus U. 4 @*Y.
Watanabe 1, N. Ikeda 1,2, Y. Sugimoto1,2, N. Ozaki 1, A. Mizutani 1, Y.
Takata 1, Y. Kitagawa 1, J.S. Jensen 3, O. Sigmund 3, P. I. Borel 3, M.
Kristensen 4, and K. Asakawa 1 |
|
6 |
Topology optimization of 2D photonic crystal waveguide
intersections |
U. Tsukuba 1, AIST 2 , DTU 3, Aarhus U. 4@*Y. Watanabe
1, N. Ikeda 1,2, Y. Sugimoto1,2, N. Ozaki 1, A. Mizutani 1, Y. Takata 1,
Y. Kitagawa 1, J.S. Jensen 3, O. Sigmund 3, P. I. Borel 3, M. Kristensen
4, and K. Asakawa 1 |
|
|
Break 10:30`10:45 |
|
|
7 |
Evaluation of Tansmission Spectrum in Photonic
Crystal Coupled Waveguides |
Yokohama Nat'l Univ. 1.@*T Kawasaki 1,D Mori 1,S
Kubo 1,T Baba 1 |
|
8 |
Fabrication and characterization of PC-based bent
waveguides and directional coupler for ring buffer circuit |
AIST 1, Univ. of Tsukuba 2@*S. H. Jeong 1, J. Sugisaka
1,2, N. Yamamoto 1, M. Okano 1, K. Komori 1 |
’ |
9 |
Fabrication of two-dimensional photonic crystal
directional coupler switch with wide bandwidth and short switching length |
AIST Photonics 1, Inst. Appl. Phys. Univ. of Tsukuba
2, CREST JST 3@J. Sugisaka 1,2, N. Yamamoto 1, S.-H.Jeong 1, M. Okano 1,
K. Komori 1,3, M. Itoh 2 and T. Yatagai |
|
10 |
Photonic crystal directional coupler with wideband
and small coupling length – origin of flat band - |
AIST Photonics 1, Univ. of Tsukuba 2@* Yamamoto
Noritsugu 1, Okano Makoto 1, Sugisaka Junnichiro 1,2, Jeong Seok-Hwan 1,
Komori Kazuhiro 1 |
|
11 |
Polarization-Insensitive Si Photonic Wire AWG |
Yokohama Nat'l Univ. 1@*Sasaki Kosuke 1, Ishii
Toshiyuki 1, Baba Toshihiko 1 |
|
12 |
Proposal of Polarization-independent 2D PC Slab
Add/Drop Device |
Kyoto Univ. 1@*Tanaka Yoshinori 1, Asano Takashi
1, Noda Susumu 1 |
|
|
Lunch 12:15`13:30 |
|
30p-ZD-@/ III |
|
1 |
Ge/SiO2 photonic crystal wavelength filters for
the short-wave infrared application |
Tohoku Univ. 1, Gunma Univ. 2, Photonic Lattice
Inc 3@*Ohtera Yasuo 1, Miura Kenta 2, Kawashima Takayuki 3, Kawakami Shojiro
3 |
|
2 |
Temperature dependence of transmission characteristics
of Si one-dimensional photonic crystals |
NCRC, Univ. of Tokyo 1, OITDA 2, Hitachi CRL 3,
NEC corp 4.@Kazuhiko Hosomi 123, Masatoshi Tokushima 4, Hiroji Yamaada 1,
Shigeo Goto 123, Toshio Katsuyama 12, Hirohito Yamada 14, Yasuhiko Arakawa
1 |
|
3 |
Perforated planar focusing lens grating for vertical
coupling from fiber to 2D photonic crystal slab waveguide |
U. Tsukuba 1, Ghent Univ. 2, AIST 3@Akio Mizutani
1, Yoshimasa Sugimoto 1,3, Nobuhiko Ozaki 1, Yoshinori Watanabe 1, Yoshiaki
Takata 1, Frederik Laere 2, Roel Baets 2, Naoki Ikeda 1,3, Kiyoshi Asakawa
1 |
|
4 |
Disk lens coupler for 2D photonic crystal waveguides |
AIST1AFUJITSU Labs.2@N.Ikeda1AH.Kawashima1AY.Tanaka2AY.Sugimoto1AT.Hasama1AH.Ishikawa1 |
|
5 |
Analysis of the diffraction repetition effect on
light-extraction in photonic-crystal organic light-emitting diode |
Kyoto Univ.@*Matsubara Ippei 1,Ishihara Kuniaki
1,Fujita Masayuki 1,Asano Takashi 1,Noda Susumu 1 |
|
6 |
Observation of Light Propagation Characteristics
Through Photonic Crystal Superlens(IV) -Focusing of Double Light Sources- |
Yokohama Nat'l Univ.@Takashi Matsumoto 1, *Tomohiko
Asatsuma 1, Toshihiko Baba 1 |
’ |
7 |
Wavelength Demultiplexer Based on Photonic Crystal
Superprism and Superlens (II) Observation of Demultiplexing Function |
Yokohama Nat'l Univ.@*Matsumoto Takashi 1, Asatsuma
Tohohiko 1, Baba Toshihiko 1 |
|
|
Break 15:15`15:30 |
|
|
8 |
Photonic-crystal lasers producing a range of beam
patterns |
Kyoto Univ. 1, ROHM Co. Ltd. 2@Miyai Eiji 1, Sakai
Kyosuke 1, Kunishi Wataru 2, Ohnishi Dai 2, Noda Susumu 1 |
’ |
9 |
Optical Tweezers using Ring-shaped Beam generated
by Two-dimensional Photonic-crystal Laser |
Kyoto Univ. 1, ROHM Co., Ltd. 2@*Kyosuke Sakai
1, Eiji Miyai 1, Yoshitaka Kurosaka 1, Junichi Kashiwagi 1,Dai Ohnishi 1,2,
Wataru Kunishi 1,2, Susumu Noda 1 |
|
10 |
Active/Passive-Integrated Photonic Crystal Slab
(II) Evaluation of Lasing Characteristics |
Yokohama Nat'l Univ.@Hideki Watanabe 1, Toshihiko
Baba 1 |
’ |
11 |
High-Power Single-Mode Operation of Surface-Emitting
Two-Dimensional Photonic-Crystal Laser |
Kyoto Univ. 1, ROHM Co.,Ltd. 2@Kunishi Wataru 1,2,
Ohnishi Dai 1,2, Miyai Eiji 1, Sakai Kyosuke 1, Kurosaka Yoshitaka 1, Imada
Masahiro 1, Noda Susumu 1 |
’ |
12 |
Lattice shapes and vertical optical confinement
in 2D surface-emitting photonic-crystal laser |
Kyoto Univ. 1, ROHM Co.,Ltd 2@*Kurosaka Yoshitaka
1, Miyai Eiji 1, Sakai Kyosuke 1, Ohnishi Dai 1,2, Kunishi Wataru 1,2, Imada
Masahiro 1, Noda Susumu 1 |
|
13 |
Carrier lifetime in photonic crystal point-shift
nanocavity laser (III) Comparison with H1 defect nanocavity |
Yokohama Nat'l Univ. 1@Nozaki Kengo 1, Baba Toshihiko
1 |
|
14 |
Room temperature continuous-wave lasing in photonic
crystal nanocavity |
Inst. of Industrial Science Univ. of Tokyo 1, NCRC
Univ. of Tokyo 2, RCAST univ. of Tokyo 3@Nomura Masahiro 1,2, Iwamoto Satoshi
1,2,3, Watanabe Katsuyuki 1,2, Kumagai Naoto 1,2, Nakata Yoshiaki 2, Ishida
Satomi 2,3, Arakawa Yasuhiko 1,2,3 |
|
15 |
Coupled-wave Analysis for Two-dimensional Photonic-crystal
Laser IV -Diffraction into the Vertical Direction- |
Kyoto Univ. 1, ROHM Co., Ltd. 2@*Kyosuke Sakai
1, Eiji Miyai 1, Yoshitaka Kurosaka 1, Junichi Kashiwagi 1,Dai Ohnishi 1,2,
Wataru Kunishi 1,2, Susumu Noda 1 |
|
16 |
Possibility of lasing operation at non-‘-point
of photonic-crystal laser |
Kyoto Univ. 1, ROHM Co. Ltd. 2@Miyai Eiji 1, Sakai
Kyosuke 1, Kurosaka Yoshitaka 1, Kashiwagi Jun-ichi 1, Kunishi Wataru 2,
Ohnishi Dai 2, Noda Susumu 1 |
4.2 Photonic
Nano-Structures and Relating Phenomena |
August 31 (Thu.) 9:00`16:15 |
31a-ZD-@/ III |
’ |
1 |
Observation of polarization-discriminated spectra
of a fiber-microsphere system |
RIES,Hokkaido Univ. 1@*Konishi Hidenori 1,Takashima
Hidesato 1,Chiba Akito 1,Fujiwara Hideki 1,Hotta Junichi 1,Takeuchi Sigeki
1,Sasaki Keiji 1 |
|
2 |
Investigation on Theoretical Limitation of Q Factor
in Photonic Nanocavity |
Kyoto Univ. 1@*Tanaka Yoshinori 1, Asano Takashi
1, Noda Susumu 1 |
|
3 |
Experimental investigation of evanescent wave characteristics
within mode-gap of 2D photonic crystalfs waveguides |
Kyoto Univ.1, Sungkyunkwan Univ.2@*Bong-Shik Song
1,2, Yoshinori Tanaka1, Takashi Asano 1, and Susumu Noda 1 |
|
4 |
Analysis of Characteristics of Nano-Scale Cavity
by the Finite-Difference Time-Domain Method |
Osaka Univ.@Kawano Takayuki, *Morifuji Masato,
Momose Hideki, Kondow Masahiko |
|
5 |
Modal volume reduction in photonic crystal point-shift
nanocavity with narrow air-slit |
Yokohama Nat'l Univ. 1@Nozaki Kengo 1, Baba Toshihiko
1 |
|
6 |
On high energy resonant modes in waveguides consisting
of high-Q multistep heterostructure nanocavity |
Kyoto Univ. 1@Yasushi Takahashi 1, Yoshinori Tanaka
1, Takashi Asano 1, Susumu Noda 1 |
|
|
Break 10:30`10:45 |
|
|
7 |
Estimation of equivalent refractive index for the
photonic crystal slab by 2D and 3D FDTD method |
Nagaoka Univ. of Tech., faculty of eng. 1@*Sugawara
Hiroya 1, Kambayashi Toshio |
|
8 |
Sequentially coupled resonators by ultrahigh-Q
locally width-modulated line-defect photonic crystal nanocavities |
NTT Basic Research Labs. 1 @*Kuramochi Eiichi 1,
Tanabe Takasumi 1, Taniyama Hideaki 1, Shinya Akihiko 1, Notomi Masaya 1 |
|
9 |
Time-domain measurement of photon lifetime in high-Q
photonic nanocavity |
Kyoto Univ. 1, Sungkyunkwan Univ. 2@Takashi Asano
1, Takuji Nagashima 1, Hiroyuki Hagino 1, Bong-Shik Song12, Yasushi Takahashi
1, Susumu Noda 1 |
’ |
10 |
Direct time domain measurement of photon lifetime
for ultra-high-Q photonic crystal optical nanocavities |
NTT Basic Research Labs.@*Takasumi Tanabe, Eiichi
Kuramochi, Akihiko Shinya, Hideaki Taniyama, and Masaya Notomi |
|
11 |
Theoretical analysis on 2D photonic crystal slab
of slanted pores(2) |
Kyoto Univ. 1,ALPS Electric 2@*Kitagawa Hitoshi
1,2, Tanaka Yoshinori 1, Asano Takashi 1, Noda Susumu 1 |
|
|
Lunch 12:00`13:00 |
|
31p-ZD-@/ III |
|
1 |
Optomechanical Energy Conversion in Double-Layer
Photonic-Crystal-Slab Cavities |
NTT Basic Research Labs.@*Notomi Masaya 1, Taniyama
Hideaki 1, Mitsugi Satoshi 1, Kuramochi Eiichi 1 |
|
2 |
Dynamic Q factor control of 2D photonic
crystal nanocavities(3) |
Kyoto Univ. 1@*Nagashima Takuji 1,Jeremy Upham
1,Uesugi Toshitsugu 1,Tanaka Yoshinori 1,Asano Takashi 1,Noda Susumu 1 |
|
3 |
A Consideration of EO-Effect on Photonic Crystal
Waveguide Structure |
NGK Insulators 1@*Mitomi Osamu 1,Iwata Yuichi 1,Kondo
Jungo 1,Aoki Kenji 1,Ejiri tetuya 1 |
|
4 |
Fabrication of AlGaAs-based 2D photonic-crystal
bistable devices with lower oxide cladding |
Fujitsu Laboratories LTD. 1, AIST 2@Tanaka Yu 1,
Kawashima Hitoshi 2, Ikeda Naoki 2, Sugimoto Yoshimasa 2, Hasama Toshihumi
2, Ishikawa Hiroshi 2, Kuwatsuka Haruhiko 1 |
|
5 |
Thermo-optic bistability of AlGaAs-based photonic
crystal microcavity |
AIST 1, Fujitsu Labs. 2@*Kawashima Hitoshi 1, Tanaka
Yu 2, Ikeda Naoki 1, Sugimoto Yoshimasa 1, Hasama Toshifumi 1, Ishikawa
Hiroshi 1 |
’ |
6 |
Mechanically Tunable Photonic Crystal Device with
A Flexible Waveguide and Nano-Rods |
the Univ. of Tokyo 1@*Tomoyuki Takahata 1, Kiyoshi
Matsumoto 1, Isao Shimoyama 1 |
|
7 |
Fabrication of a photonic crystal waveguide switch
with a movable slab using an electrostatic micro-actuator |
Tohoku Univ. 1@*Kanamori Yoshiaki 1, Umemori Ken-ichi
1, Hane Kazuhiro 1 |
|
|
Break 14:45`15:00 |
|
|
8 |
Observation of Raman Scattering in GaAs Photonic
Crystal Slab Waveguides |
Chitose Inst. of Science and Techn. 1, Inst of
Advanced Research Alliance 2, Univ. of Tsukuba 3,@Hisaya Oda 1, Kuon Inoue
1, Naoki Ikeda 2,3, Yoshimasa Sugimoto 2,3, Kiyoshi Asakawa 3, |
’ |
9 |
Wavelength conversion device by nonlinear 2D photonic
crystal waveguide combined with periodical Τ(1) and Τ(2)
structures |
RIKEN 1, Tokyo Inst. of Tech. 2@*Inoue Shin-ichiro
1, Aoyagi Yoshinobu 2,1 |
|
10 |
Plasmonic Band gap of 1-Dimensional Plasmonic Crystal |
Dept. of Physics, Tokyo Inst. Tech 1, JST-CREST
2@Takahiro Suzuki 1,Yamamoto Naoki 1,2 |
’ |
11 |
Near-field thermal radiation from a metal grating
at high temperature |
Tohoku Univ. 1@*Miura Takenori 1, Motozuka Satoshi
1, Yugami Hiroo 1 |
’ |
12 |
Analysis of the thermal radiation from two-dimensional
photonic crystal slabs using intersubband transitions in quantum well |
Kyoto Univ. 1,ALPS ELECTRIC CO.LTD. 2@* Mochizuki
Keita 1,Asano Takashi 1,Kitagawa Hitoshi 1,2,Noda Susumu 1 |
4.3 Laser
Devices and Materials |
August 29 (Tue.) 9:30`16:45 |
29a-ZE-@/ III |
’ |
1 |
Performance characteristics of the injection-seeded
Deep-UV coherent light source |
Osaka City Univ.@*Shiomi Yasutomo, Kyutoku Kuniaki,
Kumagai Hiroshi, Kobayashi Ataru |
’ |
2 |
Intracavity second harmonic generation of electronically
tuned picosecond pulsed laser |
Tokyo University of Science 1,RIKEN 2@*Maeda Yasuhiro
1,Yumoto Masaki 1,Saito Norihito 2,Ogawa Takayo 2,Yamashita Masahumi 1,Wada
Satoshi 2 |
’ |
3 |
Application to mid-infrared spectroscopy with an
electronically tuned mid-infrared laser |
Tokyo University of Science 1, RIKEN 2@*Masaki
Yumoto 1, Yasuhiro Maeda 1, Norihito Saito 2, Takayo Ogawa 2, Masahumi Yamashita
1, Satoshi Wada 2 |
|
4 |
Cavity dumping of mode-locked Yb:YAG laser |
Univ. of Fukui 1@*Tanaka Motoharu 1, Inoue Masahiro
1, Takama Masaki 1, Matsubara shinichi 1,Kawato Sakae 1, Kobayashi Takao
1 |
|
5 |
Development of a cw laser with high beam quality
using a highly doped Yb:YAG |
AIST@*Sadao UEMURA, Kenji TORIZUKA |
|
6 |
Yb:KYW negative chirped regenerative amplifier
2 |
ISSP Univ. of Tokyo 1, IMRA America, Inc. 2@*Kanai
Teruto 1, Adachi Shunsuke 1, Watanabe Shuntaro 1, Uehara Yuzuru 2 |
|
|
Break 11:00`11:15 |
|
’ |
7 |
Generation of a radially polarized laser beam using
a c-cut Nd:GdVO4 crystal |
IMRAM., Tohoku Univ.@*Yonezawa Kazuhiro 1,Kozawa
Yuichi 1,Sato Shunichi 1 |
’ |
8 |
Radially Polarized Laser Oscillation from a Nd:YAG
Laser Cavity with a Birefringent Crystal |
IMRAM., Tohoku Univ. 1, JSPS Research Fellow 2@Yuichi
Kozawa 1,2, Kazuhiro Yonezawa 1, Shunichi Sato 1 |
’ |
9 |
Generation of a higher order transverse mode from
an external cavity diode laser |
IMRAM., Tohoku Univ.@*Hirayama Toru 1, Kozawa Yuichi
1, Sato Shunichi 1 |
|
10 |
A hollow beam generation from a side-diode-pumped
Nd:YVO4 1.3\mu m laser |
Univ. of Tsukuba 1,Chiba Univ. 2,PREST JST 3@*Okida
Masahito 1,Itoh Masahide 1,Yatagai Toyohiko 1,Omatsu Takashige 2 3 |
|
11 |
Amplification of the pico-second optical vortex
based on a diode-pumped Nd:YVO4 bounce amplifier with a phase
conjugate mirror |
Chiba Univ. 1, Japan Science and Technology Agency.
2@*Kanaya Keiichiro 1, Omatsu Takashige 1 2 |
|
|
Lunch 12:30`13:30 |
|
29p-ZE-@/ III |
|
1 |
Characteristics of a Tm,Ho:GdVO4 microchip
laser at room temperature |
Tohoku Inst. of Tech. 1, NICT 2@*Sato Atsushi 1,
Asai Kazuhiro 1, Ishii Shoken 2, Itabe Toshikazu 2, Mizutani Kohei 2 |
|
2 |
Development of Nd/Cr:YAG ceramic active-mirror
laser that use quasi-solar-pumping. |
Institute for Laser Technology 1, Institute of
Laser Engineering Osaka Univ. 2@*T.Saiki 1, S.Motokoshi 1, K.Imasaki 1,
H.Fujita 2, M.Nakatsuka 2, Y.Izawa 2, C.Yamanaka 1 |
|
3 |
Diode proximity-coupled Nd:GdVO4 planar waveguide
array laser (2) |
Mitsubishi Electric Corp. 1, Taiyo-System Corp.
2 @*Takayuki Yanagisawa 1, Makoto Okano 2, Tsuneo Hamaguchi 1, Kimitaka
Shibata 1, Yoshihito Hirano 1 |
|
4 |
Development of oscillator and multi-amplifiers
LD-pumped solid-state laser system |
RIKEN1,HAMAMATSU2@Takayo Ogawa1,Minoru Nishihata2,Yoshinori
Kato2,Hirofumi Kan2,*Satoshi Wada1 |
’ |
5 |
20W pico-second output from a side-diode-pumped
Nd:YVO4 slab amplifier with a phase conjugate mirror |
Chiba Univ. 1, Japan Science and Technology Agency
2@*Kouji Nawata 1, Masahiro Goma 1, Takashige Omatsu 1, 2 |
£ |
6 |
Consideration of imaging relay with thermal lens
at high average power Nd:YAG laser |
ILE Osaka Univ.@*Bhushan Ravi 1, Tsubakimoto Kouji
1, Yoshida Hidetsugu 1, Fujita Hisanori 1, Nakatsuka Masahiro 1 |
|
|
Break 15:00`15:15 |
|
|
7 |
Power scaling of >100kHz Q-switching output in
transversely diode-pumped ceramic Nd3+:YAG slab laser |
Univ. of Tsukuba 1, Chiba Univ. 2, PREST JST 3,
Imperial College 4@*Okida Masahito 1, Omatsu Takashige 2 3, Minassian Ara
4, Damzen Michael 4 |
|
8 |
Development of Nd:Cr:YAG split-disk amplifier with
Liquid Cooling System(II) |
ILE Osaka Univ. 1@*HajimeOkada 1, Hidetsugu Yoshida
1, Kazuhiko Sumimura 1, Hisanori Fujita 1, Masahiro Nakatsuka 1 |
|
9 |
Development of High-average-power Solid-State Laser
System for EUV Generation |
ILE, Osaka Univ. 1@*Tsubakimoto Koji 1,Yoshida
Hidetsugu 1,Fujita Hisanori 1,Nakatsuka Masahiro 1,Miyanaga Noriaki 1,Izawa
Yasukazu 1 |
|
10 |
Thermal Characteristics evaluations of Nd doped
Silica Glass for High Average Power Laser(2) |
ILE Osaka Univ. 1, Shin-Etsu Quartz Co., Ltd. 2@*Takahiro
SATO 1, Yasushi Fujimoto 1, Tetsuji Ueda 2, Akira Fujinoki 2, Hidetsugu
Yoshida 1, Masahiro Nakatsuka 1 |
|
11 |
Passive Thermal Lens Correction of Solid-state
Lasers Used in Compensation Element with Negative Temperature property@(3) |
ILE Osaka Univ. 1@*Takeuchi Norihiro 1,Yoshida
Hidetugu 1,Okada Hajime 1,Fujita Hisanori 1,Nakatsuka Masahiro 1 |
|
12 |
Development of Multilayer Thin Films with High
Damage Resistance for High-Average-Power Lasers |
Inst. for Laser Technology 1, ILE Osaka Univ. 2@*Motokoshi
Shinji 1, Jitsuno Takahisa 2, Yoshida Hidetsugu 2, Fujita Hisanori 2, Nakatsuka
Masahiro 2, Izawa Yasukazu 2 |
4.3 Laser
Devices and Materials |
August 30 (Wed.) 9:30`12:30 |
30a-ZE-@/ III |
’ |
1 |
Singlet and triplet emission of Xe2*
pumped by longitudinal discharge |
ILE, Osaka Univ. 1. Kobe Shinwa Women's Univ. 2.
Japan Steel Works Ltd. 3.@Uno Kazuyuki 1. Nakamura Kenshi 2. Kawanaka Junji
1. Yamauchi Yasuhiro 1. Zhakhovskii Vasilli 1. Nishihara Katsunobu 1. Goto
Tatsumi 3. Jitsuno Takahisa 1. |
|
2 |
Development of a high-average-power picosecond
laser system with cryogenically-cooled Yb:YAG crystals |
ILE/Osaka-Univ. 1,Inst. for Laser Tech. 2, Hamamatsu
Photonics K.K. 3@*Tokita Shigeki 1, Kawanaka Junji 1, Fujita Masayuki 2,
Kawashima Toshiyuki 3, Izawa Yasukazu 1 |
|
3 |
The characteristic of laser optics of Sm:YAG ceramics |
ILE Osaka Univ. 1, Konoshima Chemical co.,LTD 2@*Mizutani
Hideji 1, Yoshida Hidetsugu 1, Fujioka Kana 1, Okada Hajime 1, Fujita Hisanori
1, Nakatsuka Masahiro 1, Yagi Hideki 2, Yanagitani Takagimi 2 |
|
4 |
Development of ceramic laser gain medium |
TOSHIBA CERAMICS CO., LTD.@Hiroshi Oishi 1, Mitsuhiro
Fujita 1, Masaki Irie 1 |
|
5 |
Development of bismuth silica-glass for ultrawideband
amplification in the near-infrared region |
ILE Osaka Univ. 1,Kinki Univ. 2@*Kuwada Yoshiyuki
1,Fujimoto Yasushi 1,Hirata Yuki 2,Nakatsuka Masahiro 1 |
|
6 |
Comparison of vacuum ultraviolet (VUV) fluorescence
from Nd3+ - doped LaF3 and YLiF4 |
Inst. for Molecular Science 1, The Graduate Univ.
for Advanced Studies 2, Inst. of Laser Engineering, Osaka Univ 3, Inst.
of Multidisciplinary Research for Advanced Materials, Tohoku Univ. 4 @Cadatal
Marilou M. 1,2, Pham Minh Hong 1,2, Ono Shingo 1,2, Estacio Elmer 1, Murakami
Hidetoshi 3, Fujimoto Yasushi 3, Seo Young-Seok 3, Tatsumi Toshihiro 3,
Sarukura Nobuhiko 1,2,3,4, Nakatsuka Masahiro 3, Fukuda Kentaro 4, Yoshikawa
Akira 4, Fukuda Tsuguo 4 |
|
|
Break 11:00`11:15 |
|
|
7 |
High-powered solid-state dye laser |
Chitose Institute of Science and Technology 1@*Hayashi
Keisuke 1,Nakai Naoya 1,Fukuda Makoto 1,Mito Keiitch 1 |
|
8 |
Challenge on Blue-Violet LD excited Dye laser |
Shonan Inst. Tech. 1@Jun-ichiro Kojou 1,Takehiko
Hidaka 1,Kengo Murasawa 1 |
|
9 |
Linearly-polarized 1178nm Yb-doped fiber laser |
Inst. for Laser Science, Univ. Electro-Commun.@Shirakawa
Akira 1, Ota Jun 1, Ueda Ken-ichi 1 |
|
10 |
Developments of a highly-stable fiber-MOPA system
for the future gravitational wave antenna |
Institute for Laser Science, Univ. of Electro-Communications@*Junichi
Miura, Mitsuru Musha, Ken'ichi Nakagawa, Ken-ichi Ueda |
|
11 |
High power pico-second phase conjugate laser based
on a fiber-laser oscillator, a diode-pumped Nd:YVO4 power amplifier |
Chiba Univ. 1, Alnair Labs 2, PREST JST 3@*Abe
Kenichiro 1, Watanabe Takeshi 1, Furuki Kenji 2,Set Sze Yion 2, Omatsu Takashige
1,3 |
4.4 Ultrafast
lasers and High Field Lasers |
August 31 (Thu.) 13:30`18:30 |
31p-W-@/ III |
|
1 |
Interaction of molecules with intense attosecond
pulses |
Univ. of Tokyo 1, RIKEN 2@*Okino Tomoya 1,2, Yamanouchi
Kaoru 1,2, Shimizu Toshihiko 2, Furusawa Kentaro 2, Hasegawa Hirokazu 2,
Nabekawa Yasuo 2, Midorikawa Katsumi 2 |
|
2 |
Shaping isolated extreme ultraviolet pulses on
an attosecond time scale |
ISSP, Univ. of Tokyo@*Kosuge Atsushi,Sekikawa Taro,
Zhou Xiangyu, Kanai Teruto, Adachi Shunsuke, Watanabe Shuntaro |
|
3 |
Interferometric Autocorrelation Measurement of
Attosecond Pulse Train |
Riken 1, Univ. of Tokyo 2, Inst. for Molecular
Science 3@@*Toshihiko Shimizu 1, Tomoya Okino 1,2, Hirokazu Hasegawa 1,3,
Kentaro Furusawa 1, Yasuo Nabekawa 1, Kaoru Yamanouchi 1,2 and Katsumi Midorikawa
1
|
|
4 |
Analysis of the interferometric autocorrelation
trace of an attosecond pulse train in the single cycle regime |
RIKEN 1, Univ. of Tokyo 2@Nabekawa Yasuo 1, Shimizu
Toshihiko 1, Okino Tomoya 1,2, Yamanouchi Kaoru 1,2, Midorikawa Katsumi
1 |
|
5 |
Space- and time-resolved x-ray absorption measurement
of Al plume expansion induced by a femtosecond-laser ablation |
NTT Basic Research Labs. 1, ILE Osaka Univ. 2@*Oguri
Katsuya 1, Okano Yasuaki 2, Nishikawa Tadashi 1, Nakano Hidetoshi 1 |
|
6 |
Development of femto-second X-ray diffraction II |
Kyoto Univ. 1@*Hada Masaki 1, Matsuo Jiro 1 |
|
7 |
Optimization of the target parameter for the phase
rotation to the proton beam driven by 100-TW Ti:Sa laser |
Advanced Photon Research Center, Quantum Beam Science
Directorate, Japan Atomic Energy Agency1
Kansai Photon Science institute, Japan Atomic Energy Agency2
Institute for Chemical Research, Kyoto Univ.3
@*Michiaki Mori1, Koichi Ogura1, Akito Sagisaka1, Satoshi Orimo1, Mamiko
Nishiuchi1, Akifumi Yogo1, Hiromitsu Kiriyama1, Shuhei Kanazawa1,2, Shuji
Kondo1,2, Yoshiki Nakai1, Atsushi Akutsu1, Yoichi Yamamoto2, Takuya Shimomura2,
Manabu Tanoue2, Shu Nakamura3, Toshiyuki Shirai3, Yoshihisa Iwashita3, Akira
Noda3, Sergei V. Bulanov1, Hiroyuki Daido1, and Toyoaki Kimura1 |
|
8 |
Generation of intense terahertz emission by using
a terawatt laser II |
Osaka City Univ. 1
Advanced Photon Research unit, Japan Atomic Energy Agency 2@Shigeki Nashima,
Shimizu Kohei, Makoto Hosoda, Hiroshi Murakami, Satoshi Orimo, Koichi Ogura,
Michiaki Mori, Akito Sagisaka, and Hiroyuki Daido |
|
9 |
Detection of phase error of segmented grating with
transmission grating |
Institute of Laser Engineering, Osaka University
1, Institute for Laser Technology 2@*Yasukawa Kohei 1, Miyazaki Yutaka 1,
Suzuki Kenji 1, Sawai Kiyonobu 1, Tanaka Kazuo 1, Kondou Kiminori 1, Habara
Hideaki 1, Jitsuno Takahisa 1, Motokoshi Shinji 2 |
|
10 |
Efficient compression of optical pulses using metal-coated
hollow fibers |
Hokkaido Univ. CREST 1@Haraguchi Eisuke 1, Tanigawa
Takashi 1, Matsubara Eiichi 1, Keisaku Yamane 1, *Sekikawa Taro 1, Yamashita
Mikio 1 |
|
|
Break 16:00`16:15 |
|
’ |
11 |
Control of the high harmonic intensity in the soft
x-ray region by using the quantum interference between electron trajectories |
RIKEN@*Tsuneto Kanai, Eiji J. Takahashi, Yasuo
Nabekawa, Katsumi Midorikawa |
|
12 |
Proof-of-principle of the mechanism of the dramatic
enhancement of harmonic intensity by simultaneous irradiation of fundamental
laser and high harmonic pulses |
RIKEN 1, Univ. of Tokyo 2@*Eiji J. Takahashi 1,
Tsuneto Kanai 1, Yasuo Nabekawa 1, Kenichi L. Ishikawa 2, Katsumi Midorikawa
1 |
’ |
13 |
Single-shot observation of continuum high-harmonic
spectrum generated by using a two-color pulse |
RIKEN 1,Keio Univ. 2@Masanori Kaku 1,Akira Suda
1,Yu Oishi 1,2,Fumihiko Kannari 2,Katsumi Midorikawa 1 |
|
14 |
Measurement of ultraviolet femtosecond pulse using
multi-photon ionization/mass spectrometer |
Kyushu Univ.1,2@*Miyoshi Yuki 1,Kira Humiaki 1,Yamaguchi
Satoshi 1,Uchimura Tomohiro 1,2,Zaitsu Shinichi 1,2,Imasaka Totarou 1,2 |
|
15 |
Phase-dependent asymmetry of photoelectron ejection
in the multiphoton ionization regime |
Kyoto Univ. 1@Takashi Nakajima 1 |
|
16 |
Intensity dependence of ionization by femtosecond
laser pulses of time-dependent polarization |
Univ. of Tokyo 1, JST 2@*Takamasa Ichino 1, Kenichi
L. Ishikawa 1,2 |
|
17 |
High-harmonic generation and multiphoton ionization
in nonadiabatically aligned molecules with circularly-polarized pulses |
Univ. of Tokyo 1@*Minemoto Shinichirou 1, Sugawara
Yu 1, Muramatsu Masahiro 1, Hitsumoto Kentaro 1, Sakai Hirofumi 1 |
’ |
18 |
Numerical simulations of nonadiabatic orientation
of linear molecules with combined electrostatic and shaped laser fields |
Univ. of Tokyo 1@*Yu Sugawara 1, Masahiro Fukazawa
1, Hirofumi Sakai 1 |
’ |
19 |
Wavepacket motion observed coulomb explosion process
of ethanol molecules excited by intense 800nm double pulse laser |
Keio University 1, University of Tokyo 2 @*Hiroki
Yazawa 1, Tadamasa Shioyama 1, Takashi Suzuki 1, Sadahiro Esumi 1, Tomoaki
Abe 1, Fumihiko Kannari 1, Ryuji Itkura 2, Kaoru Yamanouchi 2 |
4.4 Ultrafast
lasers and High Field Lasers |
September 1 (Fri.) 9:00`15:00 |
1a-W-@/ III |
|
1 |
Detuning Characteristics of a Mode-Locked Fiber
Ring Laser using an Intracavity SOA |
National Defense Academy 1@Onodera Noriaki 1,Tsuji
Kenichiro 1,Yamaguchi Teppei 1,Kim Jungmin 1,Saruwatari Masatoshi 1 |
|
2 |
Two-photon imaging with a 1Κm wavelength-band mode
locked semiconductor diode laser |
Tohoku Univ. NICHe 1,JST 2,Sumitomo Osaka Semento
CO.LTD 3@ *Takashima Keijiro 1.2,Sakurada Noriyo 1.2,Sato Kiichi 1,Mure
Masahito 3, Yokoyama Hiroyuki 1 |
|
3 |
Amplification characteristics of femtosecond laser
pulses by the excitation of dye molecule |
Usho Optical Systems Co., LTD. 1,AISIN Seiki.,
Co.,Ltd 2@*Kazushige Kuki 1,Kenshi Nakamura 1, Makoto Yoshida 2, Yukio Nakajima
1 |
|
4 |
Octave supercontinuum light generation with a modelocked
semiconductor laser |
Tohoku Univ. NICHe 1,Tohoku Univ. RIEC 2@*Yokoyama
Hiroyuki 1,Takashima Keijiro 1,Sato Kiichi 1,Taniguchi Hirokazu 2,Ito Hiromasa
2
|
|
5 |
Ultrawideband super continuum generation using
uJEps fiber laser |
Nagoya Univ.1@*Nishizawa Norihiko 1, Hori Masaru
1 |
|
6 |
Super continuum generation using ultrashort pulses
for ultrahigh resolution OCT |
Nagoya Univ. 1, RLE,MIT 2@*Nishizawa Norihiko 1,
Aguirre Aaron 2, Fujimoto James 2 |
|
|
Break 10:30`10:45 |
|
|
7 |
Generation of broad-band optical comb by a fiber
laser and its optimization |
AIST 1,Fukui Univ 2,SEI 3,Tohoku Univ 4@Yoshiaki
Nakajima 1,2,Hajime Inaba 1,Kaoru Minoshima 1,Feng-Lei Hong 1,Atsushi Onae
1,Masashi Onishi 3,Toshiaki Okuno 3,Masaaki Hirano 3,Masataka Nakazawa 4,Takao
Kobayashi 2,Hirokazu Matsumoto 1 |
|
8 |
Passive timing stabilization of an erbium-doped
mode-locked fiber laser by injection of an optical pulse train |
AIST 1, SIT 2, Ibaraki Univ. 3@*Yoshitomi Dai 1,
Kobayashi Yohei 1, Onuma Taketo 2, Sekiguchi Takuro 3, Kakehata Masayuki
1, Takada Hideyuki 1, Yokoi Hideki 2, Nakamura Shinki 3, Torizuka Kenji
1 |
’ |
9 |
Ultrashort pulse shaping by use of nonlinear polarization
rotation |
Nagoya Univ.1@*Murayama Atsushi 1,Nishizawa Norihiko
1 |
|
10 |
Generation of Quasi-Monocycle Optical Pulses Using
Induced Phase Modulation II |
Hokkaido Univ., JST-CREST@Matsubara Eiichi, Yamane
Keisaku, Sekikawa Taro, Yamashita Mikio |
|
11 |
Angle-Dispersion Compensation of High-Order CARS
Signals in a Crystal at Room Temperature Toward the Generation of Extremely
Short Optical Pulses |
Hokkaido Univ., JST-CREST @Matsubara Eiichi, Morita
Ryuji, Sekikawa Taro, Yamashita Mikio |
|
|
Lunch 12:00`13:00 |
|
1p-W-@/ III |
|
1 |
Ultrabroadband optical parametric chirped-pulse
amplification system (1) -Cryogenically-cooled Yb:YLF CPA pump laser- |
JAEA Kansai 1, ILE Osaka 2,ILS UEC 3@*Akahane Yutaka
1,Aoyama Makoto 1,Tsuji Koichi 1, Kawanaka Junji 2, Nishioka Hajime 3, Yamakawa
Koichi 1 |
|
2 |
Ultrabroadband optical parametric chirped-pulse
amplification system(2) -Ultrabroadband optical parametric amplifier- |
JAEA 1, Yamanashi Univ. 2, Inst. for Laser Tech.
3@*Makoto Aoyama1,Yutaka Akahane1, Koichi Tsuji1, Tetsuo Harimoto2, Masayuki
Fujita3, Koichi Yamakawa1 |
’ |
3 |
Angular-dispersive noncollinear optical parametric
amplification of light pulse with over-one-octave bandwidth |
Hokkaido Univ.(CREST)@Tanigawa Takashi 1, Yamane
Keisaku 1, Haraguchi Eisuke 1, Iwasaki Atsushi 1, Sekikawa Taro 1, Yamashita
Mikio 1 |
|
4 |
Optical parametric amplification of optical pulses
from hollow fiber |
Hokkaido Univ(CREST) 1@Yamane Keisaku 1, Iwasaki
Atsushi 1, Tanigawa Takashi 1, Sekikawa Taro 1, Yamashita Mikio 1 |
’ |
5 |
Compact multi-loop stretcher for OPCPA system (3) |
ILE Osaka 1, ILT 2@*Yasuki Takeuchi 1,Kanade Ogawa
1, Hidetsugu Yoshida 1, Masayuki Fujita 2, Junji kawanaka 1, Yasukazu Izawa
1 |
|
6 |
All-Optical Compensation of Higher Order Dispersion
in a Chirped Pulse Amplification System |
ILS/UEC@*Tomita Hitoshi 1, Keisuke Hayasaka 1,
Hajime Nishioka 1, and Ken-ichi Ueda 1 |
|
7 |
Yb-fiber amplification system seeded by super continum
light |
SIT 1, AIST 2@*Taketo Onuma1,Dai Yoshitomi2,Yohei
Kobayashi2,Hideki Yokoi1,Kenji Torizuka2 |
|
8 |
10 kHz rep-rate Ti:sapphire regenerative amplifier
upgrade to 54 W output |
AIST@*Matsushima Isao 1, Yashiro Hidehiko 1, Tomie
Toshihisa 1 |
4.5 Nonlinear
Optics and THz-wave synthesis |
August 29 (Tue.) 9:30`17:30 |
29a-ZA-@/ III |
|
1 |
Generation of femtosecond pulses in mid-IR region
using quasi-phase-matching devices (II) |
IIS, The Univ. of Tokyo@Takahiro Mochizuki, Shunsuke
Yamamoto, Satoshi Ashihara, Tsutomu Shimura, and Kazuo Kuroda |
£ |
2 |
Ferroelectric properties and periodical poling
of BaMgF4 for UV all solid-state lasers |
National Institute for Materials Science 1@*E.
G. Víllora 1, Kiyoshi Shimamura 1, Z. Huarong 1, Shunji Takekawa 1,
Kenji Kitamura 1 |
|
3 |
First Princiles Study of Nonlinear Optical Susceptibilities
of \beta-BaB_2O_4 crystal |
IIS, Univ. Tokyo 1, Hitachi Adv. Res. Lab. 2, NIMS
3@Tomoyuki Hamada 1, Takahisa Ohno 2 |
|
4 |
GaP/Si/GaP (100) Sublattice Reversal Epitaxy |
Tokyo Univ. 1@*Matsushita Tomonori 1, Kondo Takashi
1 |
|
5 |
5-10µm ZnGeP2 parametric oscillation using
tunable pump source |
RIEC Tohoku Univ. 1, Chitose Institute of Science
and Technology 2@*Katsuhiko Miyamoto 1, Kiyoshi Kato 2, Hiromasa Ito 1 |
£ |
6 |
Application of Frequency-Agile mid-IR Tunable Light
Source:
Measurements of Solidification |
RIEC Tohoku Univ. 1@*K. M. Abedin 1, K. Miyamoto
1, A. Nawahara 1, H. Ito 1 |
|
|
Break 11:00`11:15 |
|
|
7 |
Terahertz Radiation by the Interaction between
a High-Power Femtosecond Laser and Argon Clusters |
Inst. of Laser Engineering, Osaka Univ. 1, Inst.
for Chemical Research, Kyoto Univ. 2@*Kyoji Shibuya 1, Takeshi Nagashima
1, Masanori Hangyo 1, Masaki Hashida 2, Syuji Sakabe 2 |
|
8 |
Intense THz wave generation from a ZnTe crystal |
Inst. of Applied Physics, Univ. of Tsukuba@*Toshiki
Ishii, Kousuke Takeuti, Toshiaki Hattori |
|
9 |
Terahertz radiation from organic crystals as DAST,
DNBB, DMNT and TC-28 |
ILE, Osaka Univ 1, Graduate School of Eng., Osaka
Univ. 2@M. Suzuki 1, Y. Takahashi 2, M. Yoshimura 2, S. Onduka 2, S. Brahadeeswaran
2, Y. Mori 2, M. Tonouchi 1 and T. Sasaki 2 |
|
10 |
New method for automatic phase matching in injection-seeded
THz parametric generator (is-TPG) |
Shimadzu Corp. 1, Nagoya Univ. 2@*Takubo Kenji
1, Moriya Naoji 1, Shibuya Takayuki 2, Kawase Kodo 2 |
|
11 |
Study of injection seeding of a quasi-monolithic
ring THz-wave parametric oscillator |
RIKEN Sendai 1, RIEC Tohoku Univ. 2@*Minamide Hiroaki
1, Guo Ruixiang 1, Ikari Tomofumi 1, Ito Hiromasa 1,2 |
|
|
Lunch 12:30`13:30 |
|
29p-ZA-@/ III |
|
1 |
Fast frequency agile THz-wave generation in the
1-40 THz region and its spectroscopic application |
RIEC Tohoku Univ. 1, RIKEN Sendai 2, ADVANTEST
Lab. Ltd. 3@*Yamashita Tomoyu 1,3 Nawahara Akira 1 Minamide Hiroaki 2 Ito
Hiromasa 1,2 |
|
2 |
Injection-seeded THz-wave parametric generator
pumped by microchip Nd:YAG laser |
RIKEN 1, Tohoku Univ. 2, HAMAMATSU Photonics K.
K. 3, IMS 4, Nagoya Univ. 5@Shin'ichiro Hayashi 1,2, Hiroshi Sakai 3, Hirofumi
Kan 3, Takunori Taira 4, Chiko Otani 1, Yuichi Ogawa 2, and Kodo Kawase
1,2,5
|
|
3 |
Pump-probe spectroscopy using ring-cavity THz-wave
parametric oscillator |
RIKEN Sendai 1,Mitsubishi Electric Corp. 2,RIEC
Tohoku Univ. 3@*Akiyama Koichi 1,2,Minamide Hiroaki 2,Ito Hiromasa1,3 |
|
4 |
Detection of sub-THz radiation from Gunn oscillator
by photoconductive antenna |
Japan Coast Guard Academy 1,Osaka Univ. 2@*Morikawa
Osamu 1,Tani Masahiko 2, Fujita Masami 1, Hangyo Masanori 2 |
|
5 |
Development of systems for light-pump/terahertz-probe
spectroscopy:Single-shot measurement of terahertz wave |
JAEA 1,Osaka City Univ. 2@M Katsurada 1,2,*K Shimizu
1,2,H Murakami 1,S Nashima 2,M Hosoda 2 |
|
6 |
Terahertz Time Domain Attenuated Total Reflection
Spectroscopy on Powder Sample |
Kyoto Univ.@*Yada Hiroyuki 1, Nagai Masaya 1, Tanaka
Koichiro 1 |
|
7 |
Rapid-scan TDS system with long-stroke optical
delay line and signal sampler clocked by laser interferometer |
Shimadzu Corp. 1, Kyoto Univ. 2@*Takubo Kenji 1,
Moriya Naoji 1, Nagai Masaya 2 ,Tanaka Koichiro 2 |
|
8 |
Compact terahertz probe heads connected with large-mode-area
photonic crystal fibers |
CRL Hitachi1,Defense Sys. Hitachi2, Inst. Laser
Eng. Osaka Univ.3 @Yong Lee1, Shigehisa Tanaka1, Naohito Uetake2, Sumiko
Fujisaki1, Ryotaro Inoue3, Masayoshi Tonouchi3 |
|
|
Break 15:30`15:45 |
|
|
9 |
Development of high-resolution THz emission microscope |
Osaka Univ.@*Hiroki Koga 1.Sunmi Kim 1.Masato Suzuki
1.Hironaru Murakami 1.Masayoshi Tonouchi 1 |
’ |
10 |
Transverse resolution in real-time terahertz time-domain
spectroscopic imaging |
Grad. Sch. Engg. Sci., Osaka Univ.@1@*Ken-ichi
Sawanaka 1,Takeshi Yasui 1,Tsutomu Araki 1 |
|
11 |
Angular Dependence of Terahertz Scattering by Metals
and Dielectrics |
Inst. Laser Engineering, Osaka Univ. 1@*Inoue Ryotaro
1, Tonouchi Masayoshi 1
|
|
12 |
Diffraction effect of THz generation from non-linear
crystal |
KARC, NICT 1, Kyoto Univ. 2@Atsushi Syouji 1,Shingo
Saito 1, Masaya Nagai 2, Koichiro Tanaka 2, Kiyomi Sakai 1 |
’ |
13 |
Evaluation of spectroscopic performance of terahertz
micro-strip-line-based sensors |
ADSM Hiroshima Univ 1@*Onuma Masayuki 1,Ohkubo
Tetuya 1,Kitagawa Jiro 1,Kadoya Yutaka 1 |
’ |
14 |
Image reconstruction by Terahertz-wave propagating
in a Silicon rod |
Tohoku Univ. 1, RIKEN 2, Nagoya Univ. 3@*Shin'ichiro
Hayashi 1,2, Li Cheng 1, Chiko Otani 2, and Kodo Kawase 1,2,3 |
|
15 |
Prototype Inspection System of Hidden Drugs Sealed
Envelopes using Terahertz Wave Scattering |
RIKEN 1, SI Seiko Co., Ltd. 2, Nagoya univ. 3 @*Yoshiaki
Sasaki 1, Masahiro Yamashita 2, Chiko Otani 1, Gousei Okazaki 2, Kodo Kawase
1,3 |
4.5 Nonlinear
Optics and THz-wave synthesis |
August 30 (Wed.) 9:30`12:30 |
30a-ZA-@/ III |
|
1 |
Image measurement of the methane gas in the mid
infrared region using the transparent ceramics lenses. |
Inst. of Laser Eng., Osaka Univ. 1, Inst. for Molecular
Science 2, Murata Manufacturing Co., Ltd. 3@*H. Murakami 1, S. Ono 2, N.
Sarukura 1, N. Tanaka 3 |
|
2 |
Transient stimulated Raman scattering induced by
a femtosecond pulse with temporary-varying polarization |
Graduate School of Eng. 1, Center for Future Chem.
2, Kyushu Univ., @Kida Yuichiro 1, Zaitsu Shin-ichi 1,2, Imasaka Totaro
1,2 |
|
3 |
Phase conjugation of a femto-second optical vortex |
Chiba Univ. 1,Japan Science and Technology Agency
2@*Noda Taiga 1,Hagiwara Jun 1,Omatsu Takashige 1 2 |
’ |
4 |
Observation of fractal light scattering in a mirror-ball
polyhedral structure |
Takushoku Univ. 1@*Amano Kazuya 1,Narimatsu Daisuke
1,Sotome Satoshi 1,Uchida Atsushi 1,Yoshimori Shigeru 1 |
|
5 |
Characteristics of optical self-organizing network
with bistable optical devices. |
Doshisha Univ. 1@*Oshima Naoki 1,Nozaki Yuusuke
1,Sasaki Wakao 1 |
|
|
Break 10:45`11:00 |
|
|
6 |
Characteristic of Near-Field Patterns in Broad-Area
Semiconductor Lasers at High Injection Current |
Shizuoka Univ 1@*Hideo Mitsui 1,Junji Ohtsubo 1 |
|
7 |
Nonlinear Dynamics by Orthogonal Optical Injection
in Vertical-Cavity Surface-Emitting Lasers |
Shizuoka Univ 1@*Junichiro Kitamura 1,Junji Ohtsubo
1 |
|
8 |
Pattern formation and nonlinear dynamics in thin-slice
solid-state lasers with laser-diode pumping |
Tokai Univ@*Miyasaka Yoshihiko 1, Otsuka kenju
2 |
’ |
9 |
Synchronization of chaos in mutually-coupled single-mode
vertical-cavity surface-emitting lasers |
Takushoku Univ. 1@*Ozaki Mitsutoshi 1,Someya Hiroyuki
1,Uchida Atsushi 1,Yoshimori Shigeru 1 |
|
10 |
Effects of the population inversion on chaotic
oscillations of single mode class A lasers@ |
Kagoshima National Coll. of Tech. 1
Professor Emeritus, Fukui Univ. 2@*Kuwashima Fumiyoshi, Iwasawa Hiroshi
@ |
|
11 |
Introduction of semiconductor gain into the rate
equations approach for analyzing dynamics of laser diode |
Osaka Pref. Univ.@Yoshioka Hiroyuki 1, Wada Kenji
1, Matsuyama Tetsuya 1, Horinaka Hiromichi 1 |
4.5 Nonlinear
Optics and THz-wave synthesis |
August 31 (Thu.) 9:30`18:45 |
31a-ZA-@/ III |
|
1 |
Study of decrease to refraction-loss on surface
for transparent ceramics with high permittivity |
Murata Mfg., Co. Ltd. 1, HOC 2, Kyoto Univ. 3@*Takashi
Fujii 1, Yukio Sakabe 1, Kenji Kitamoto 2, Kazuyuki Hirao 3 |
|
2 |
Evaluation of effective optical constants in the
meta-material with terahertz time-domain spectroscopy |
Dept. of Physics, Kyoto Univ. 1, Murata Manufacturing
Co. 2, NIMS 3, Univ. of Tsukuba 4, Dept. of Material Chemistry, Kyoto Univ.
5@*Minowa Yosuke 1, Fujii Takashi 2, Nagai Masaya 1, Sakoda Kazuaki 1,3,4,
Hirao Kazuyuki 5, Tanaka Koichiro 1 |
|
3 |
Water boiling in microfluidic channels induced
by terahertz electromagnetic waves |
Inst. of Industrial Science, Univ. of Tokyo@*Nagafuchi
Masayuki, Kumemura Momoko, Yamashita Hayato, Fujita Hiroyuki, Hirakawa Kazuhiko |
|
4 |
Real-time measurement of gas concentration with
ring-TPO |
Riken Sendai 1, RIEC Tohoku Univ. 2@*Seigo Ohno
1,Hiroaki Minamide 1,Koichi Akiyama 1,Hiromasa Ito 12 |
’ |
5 |
Terahertz time-domain spectroscopy studies of nematic
liquid crystals |
Tokyo Tech 1, Osaka Univ 2@Sosuke Tanaka 1, Yoshinori
Okada 1, Koji Yamamoto 2, Yoichi Takanishi 1, Masahiko Tani 2, Ken Ishikawa
1, Masanori Hangyo 2, Hideo Takezoe 1 |
|
|
Break 10:45`11:00 |
|
|
6 |
Vibration mode analysis of DNA with THz time-domain
spectroscopy (THz-TDS) |
ISIR, Osaka Univ. 1@*Norizawa Kimihiro 1, Takei
Fumie 1, Nakatani Kazuhiko 1, Tabata Hitoshi 1 |
’ |
7 |
Differentiation of liver cancer tissue using chemometrics
of Terahertz spectroscopic images |
RIKEN 1, Tokyo Univ. of Sci. 2, Univ. Fukui 3@*Nakajima
Sachiko 1,2, Hoshina Hiromichi 1, Yamashita Masatsugu 1, Otani Chiko 1,
Miyoshi Norio 3 |
|
8 |
Ferroelectric PVDF Cladding THz Waveguides VIII |
Shonan Inst.Tech 1, Riken(The Inst. Physical and
Chemical Research)-Sendai 2, RIEC-Tohoku University 3@*Ishikawa Akihiro
1, Ikari Tomohumi 2, Kojou Jun-ichiro 1, Hidaka Takehiko 1, Minamide Hiroaki
2, Ito Hiromasa 2,3 |
£ |
9 |
A terahertz planar photonic crystal waveguide (PPCW)
fabricated from Cytop |
Inst. for Molecular Science 1, De La Salle University
2, Inst. of Laser Eng. Osaka University 3, Asahi Glass Co. Ltd. 4@E. Estacio
1, G. de los Reyes 1, A. Quema 1, S. Ono 1, R. Pobre 2, R. Quiroga 2, H.
Murakami 3, N. Sarukura 3, K. Aosaki 4, Y. Sakane 4, H. Sato 4 |
£’ |
10 |
A THz filter using intermolecular hydrogen bonds |
NTT Basic Research Lab.@Rakchanok Rungsawang 1,
Yuko Ueno 1, Isao Tomita 1, Ajito Katsuhiro 1 |
|
11 |
Band-pass filter for terahertz region using multilayer
ceramics technology |
Murata Manufacturing. Co., Ltd.,@*Matsumoto Naoki
1, Nakagawa Takuji 1, Kageyama Keisuke 1, Wada Nobuyuki 1, Sakabe Yukio
1 |
|
|
Lunch 12:30`13:30 |
|
31p-ZA-@/ III |
|
1 |
Fabrication and characterization of metal-mesh
filters for 1THz application |
Murata Mfg. Co., Ltd. 1, HOC 2, Origin 3, Kyoto
Univ. 4, Osaka Univ. 5@*Takashi Fujii 1, Kenj Kitamoto 2, Toshinaga Futaku
3, Kazuyuki Hirao 4, Keisuke Takano 5, Masahiko Tani 5, Masanori Hangyo
5 |
|
2 |
Terahertz Sensor Application using Transmission
Characteristics of Thin Metal Mesh |
Tohoku Univ. 1, RIKEN 2, Nagoya Univ. 3, Advantest
Lab. Ltd. 4@*Yuichi Ogawa 1, Shin'ichiro Hayashi 1,2, Eiji Kato 3,4, Hisa
Yoshida 1, Aya Hayashi 1,2, Chiko Otani 2, Kodo Kawase 1,2,3 |
|
3 |
Experimental and Theoretical Characteristics
of Sub-Terahertz and Terahertz Oscillations of Resonant Tunneling Diodes
Integrated with Slot Antennas |
@ |
’ |
4 |
Proposal of Resonant Tunneling Diode Oscillators
with Offset-Fed Slot Antennas in THz Range for High Performance |
Tokyo Tech. 1, JST-CREST 2@*Suzuki Safumi 1, Hanashima
Kimitoshi 1, Asada Masahiro 1,2 |
’ |
5 |
Fabrication and Characterization of Pd- and Ni-InP
Contacts for THz Detector with InP Schottky Barrier Diodes |
Tokyo Tech.1, Sendai National College of Tech.2,
JST-CREST 3@*Miyachi Masato 1, Tatuo Yosihiko 1,Suzuki Tetsu 2, Asada Masahiro
1,3 |
|
6 |
100 GHz Tunnettself-oscillating modulator for 2
Gbit/s communication. |
Semiconductor Research Inst.@*Makabe Hiroki 1.
Piotr Plotka 1. Kurabayashi Toru 1. Suto Ken 1. Nishizawa Jun-ichi 1. |
|
7 |
Schottky barrier diode fabricated with area-selective
MLE for 100 GHz wideband communication |
Semiconductor Research Inst.@Makabe Hiroki 1. Henmi
Masahiro 1. Piotr Plotka 1. Kurabayashi Toru 1. Suto Ken 1. Nishizawa Jun-ichi
1 |
|
8 |
Analysis of Superlattice Structure of THz-QCL for
High-Efficiency Intersubband Transition |
RIKEN 1@Hirayama Hideki 1, Ying Leiying 1 |
|
9 |
Mode intensity distribution of THz wave in metal
layers of plasmon waveguide |
Riken-Sendai@*Horiuchi Noriaki, Hirayama Hideki |
|
10 |
Waveguide Design for Terahertz Quantum Cascade
Laser |
NICT 1@*Hiroaki Yasuda 1, Iwao Hosako 1, Norihiko
Sekine 1 |
|
|
Break 16:15`16:30 |
|
’ |
11 |
Tunnel current modulation in SWNT quantum dots
under THz irradiation |
RIKEN1, Tokyo Inst. of Tech.2, CREST(JST)3 , PRESTO(JST)4@Tomoko
Fuse1,2, Yukio Kawano1,4, Yoshinobu Aoyagi2, Koji Ishibashi1,3 |
|
12 |
Dephasing mechanisms of Bloch oscillating electrons
in GaAs-based superlattices |
IIS, Univ. of Tokyo 1, NICT 2@*Unuma Takeya 1,
Sekine Norihiko 1,2, Hirakawa Kazuhiko 1 |
|
13 |
Terahertz Waves from Coherent LO Phonons in GaAs/AlAs
Multiple Quantum Wells under an Electric Field |
KARC NICT 1,Osaka City Univ. 2,NICT3@*S. Saito
1,A. Mizumoto2,K. Mizoguchi2, A. Syouji1,K. Sakai1,N. Yamamoto3,K. Akahane3,M.
Nakayama2 |
|
14 |
Evaluation of characteristics of cryogenic readout
circuit for THz detectors |
Sokendai.1, NAOJ.2, NICT.3@*Jun kobayashi1, Hirohisa
Ngata2, Hiroshi Matsuo2, Mikio Fujiwara3 |
|
15 |
Terahertz wave generation from GaP using various
pumping sources |
Semiconductor Research Inst. 1, Tohoku Univ. 2@Nishizawa
Jun-ichi 1, *Tanabe Tadao 2, Suto Ken 1, Watanabe Yusuke 2, Sasaki Tetsuo
1, Oyama Yutaka 2 |
|
16 |
High resolution GaP Raman THz (GRT) spectrometer
using narrow line-width Cr:Forsterite lasers |
Semiconductor Research Inst. 1, THz Lab. 2, Tohoku
Univ. 3@Junichi Nishizawa 1, Ken Suto 1, *Tetsuo Sasaki 1, Masahiko Ito
2, Jiro Shibata 2, Takashi Yoshida 1, Tadao Tanabe 3 |
|
17 |
ATR Spectra of alcoholic liquids in THz-region |
Tohoku Univ. 1, Semiconductor Research Inst. 2@*Kenmochi
Atsushi 1, Tanabe Tadao 1, Oyama Yutaka 1, Suto Ken 2, Nishizawa Jun-ichi
2, Sasaki Tetsuo 2, Tanno Takenori 2
|
|
18 |
THz-wave generation by using a GaSe crystal : Application
to spectroscopy |
Tohoku Univ. 1, Semiconductor Research Inst. 2@*Kenmochi
Atsushi 1, Tanabe Tadao 1, Sasaki Tetsuo 2, Oyama Yutaka 1, Tanno Takenori
2, Suto Ken 2, Nishizawa Jun-ichi 2 |
|
19 |
Sub-THz oscillation characteristics of GaAs TUNNETT
diodes implemented with molecular layer epitaxy |
Tohoku Univ.1, Semiconductor Research Inst.2@*Endo
Kazuomi 1,Pyotolu Plotka 2,Makabe Hiroki 2,Oyama Yutaka 1,Tanabe Tadao 1,Suto
Ken 2,Nishizawa Jun-ichi 2 |
4.6 Laser
Spectroscopy and Instrumentation |
September 1 (Fri.) 9:00`12:45 |
1a-ZA-@/ III |
|
1 |
An experimental study on a cylindrical multi-reflection
cell for laser absorption spectroscopy |
Tokai Univ. 1, JASCO OPT.Inc 2@*Tonomura Masahiro
1, Ohtani Nobuyoshi 1, Nakamura Takahiro 2, Yamaguchi Shigeru 1, Endo Masamori
1, Nanri kenzo 1, Hujioka Tomoo 1 |
|
2 |
High-sensitivity ellipsometer using an optical
cavity for measuring magneto-optic effectsII |
Tokyo Univ. Agr. & Tech.@*Nagai Tomoki 1,Harada
Kotaro 1,Muroo Kazuyuki 1,Takubo Yoshitaka 1 |
|
3 |
Development of a UV femtosecond-pulse source for
control of azobenzen photoisomerization processes. |
Hokkaido Univ. 1, Nagoya Univ. 2, CREST 3@*Nakagawa
Naoya 1 3, Iwasaki Atsushi 1 3, Pang Dongqing 1 3, Sekikawa Taro 1 3, Asanuma
Hiroyuki 2 3, Yamashita Mikio 1 3 |
|
4 |
Observation of excited states of molecules by means
of time-resolved two-photon ionization spectrometry with UV femtosecond
pulses |
Graduate School of Eng. Kyushu Univ. 1, Center
for Future Chem. Kyushu Univ. 2@*Zaitsu Shin-ichi 1,2,Miyoshi Yuki 1, Yamaguchi
Satoshi 1, Uchimura Tomohiro 1,2, Imasaka Totaro 1,2 |
|
5 |
Intracavity Laser Absorption Spectroscopy with
a Multimode Dye Laser for H2O Absorption Lines |
Tokyo. Univ. Sci. Fac. Sci&Tech. 1@Akira Takemura
1, Yusaku Iwasawa 1, Atsuo Morinaga 1 |
|
6 |
2.7Κm band DFG using a direct-bonded QPM-LN ridge
waveguide and the ambient CO2 absorption observation |
NTT Photonics Labs 1@Yanagawa Tsutomu 1, Tadanaga
Osamu 1, Nishida Yoshiki 1, Miyazawa Hiroshi 1, Magari Katsuaki 1, Asobe
Masaki 1, Suzuki Hiroyuki 1 |
|
7 |
Simultaneous Three-Wavelength Polarization Backscattering
Lidar Using a Coherent White Light Continuum |
Earth and Space Science, Osaka Univ. 1, Inst. for
Laser Technology 2@*Somekawa Toshihiro 1, Yamanaka Chihiro 1, Fujita Masayuki
2 |
|
|
Break 10:45`11:00 |
|
|
8 |
Improvement in Mie-scattering error of Rayleigh-scattering
temperature lidar |
fukui univ.1@Hisaji kawai 1,Masaharu Imaki 1, Takao
Kobayashi 1 |
|
9 |
A fluorescence lidar for detection of flying pollen
–preliminary results- |
Shinshu Univ.1@*Morishita Kenzo 1.ichihara Kentaro
1.Kobayashi Fumitoshi 1.Kawahara Takuya 1.Saito Yasunori 1. |
|
10 |
Blue-green Algae Monitoring by a Laser-induced
Fluorescence (LIF) Lidar I -Observation at Lake Suwa- |
Shinshu Univ. Fac. of Eng. 1, Shinshu Univ. Fac.
of Sci. 2@*Kengo Takano 1, Ayumi Ogawa 1, Fumitoshi Kobayashi 1, Takuya
D. Kawahara 1, Yasunori Saito 1, Ho-Dong Park 2 |
|
11 |
Remote sensing of chlorophyll fluorescence lifetime
of tree leaves |
Faculty of Engineering, Shinshu Univ.1,@*Hara Mitsuaki
1,Tenpaku Takeshi 1,Kobayashi Fumitoshi 1,Kawahara Takuya 1,Saito Yasunori
1 |
|
12 |
Growth diagnosis technique of agri-products using
multi-wavelength fluorescence imaging I
- Simultaneous four-wavelength fluorescence imaging system -
|
Shinshu Univ. 1@*Mizukoshi Michiru 1,Kobayashi
Fumitoshi 1,Kinbara Kazuya 1,Kawahara Takuya 1, Saito Yasunori 1 |
|
13 |
Hydrogen gas detection using anti-Stokes Raman
scattering |
Shikoku Research Inst. 1, Central Research Institute
of Electric Power Industry 2
@*Ninomiya Hideki 1, Hoshino Ayako 1, Fukuchi Tetsuo 2 |
|
14 |
Visualization of hydrogen gas leak using anti-Stokes
Raman scattering |
Central Research Inst. of Electric Power Industry
1, Shikoku Research Inst. 2@*Fukuchi Tetsuo 1, Hoshino Ayako 2, Ninomiya
Hideki 2 |
4.7 Laser
Processing |
August 29 (Tue.) |
29a-P1-@/ III |
|
|
Poster
Session
29a-P1-1`19@9:30`11:30 |
|
1 |
Holographic femtosecond laser processing by using
a hologram with the optimal-rotation-angle method |
Tokushima Univ. 1.@*Takahashi Hidetomo 1, Hasegawa
Satoshi 1, Hayasaki Yoshio 1 |
|
2 |
Active femtosecond laser processing of a target
with three-dimensional movement |
The Univ. of Tokushima@*Takita Akihiro 1, Hayasaki
Yoshio 1 |
|
3 |
Holographic femtosecond laser processing using
a hologram designed with optical estimation |
Tokushima Univ. 1@*Hasegawa Satoshi 1, Hayasaki
Yoshio 1 |
|
4 |
Variable periodic patterning by femtosecond laser
pulses with a liquid crystal spatial light modulator |
Tokushima Univ. @*Tsunemine Takanobu, Hasegawa
Satoshi, Takita Akihiro, Hayasaki Yoshio |
|
5 |
The formation process of femtosecond laser induced
nano periodic structure |
kinki Univ. 1,ILE Osaka Univ. 2,ILT 3,JERI Osaka
Univ. 4@*Kazuhiro Chikada 1,2,Hitoshi Nakano 1,Yusaku Izawa 2,Masayuki Fujita
3,Masahiro Tsukamoto 4 |
|
6 |
Phase transition in titanium plate induced by femtosecond
laser irradiation |
Osaka Univ. 1, JWRI Osaka Univ. 2, Kinki Univ.
3, CRC Miyazaki Univ. 4, ICR Kyoto Univ. 5, ILT 6@*Keita Asuka 1, Masahiro
Tsukamoto 2, Yuichi Komizo 2, Nobuyuki Abe 2, Hitoshi Nakano 3, Masahito
Katto 4, Masaki Hashida 5, Masayuki Fujita 6 |
|
7 |
Femtosecond laser-inducedcrystallization ofprotein
ingelmedia |
Dept. of Appl. Phys., Osaka Univ. 1, Graduate School
of Frontier Bioscience, Osaka Univ. 2, Venture Business Lab., Osaka Univ.
3, JST-CREST 4@*Sora Yosuke 1,3,4, Nakamura Kazuhiko 2,3,4, Hosokawa Yoichiroh
1,3,4, Masuhara Hiroshi 1,2,3,4 |
|
8 |
Optical waveguide fabrication in fused silica by
crossed-beam irradiation using femtosecond laser |
RIKEN@Hanada Yasutaka 1, Sugioka Koji 1, Midorikawa
Katsumi 1 |
|
9 |
Electrical resistance of femto-second laser irradiated
TiO2 single crystal |
Univ. of Tokyo 1, KAST 2@*Okamura Yuzo 1, Hitosugi
Taro 1,2, Hirose Yasushi 2, Shimada Toshihiro 1,2, Hasegawa Tetsuya 1,2 |
|
10 |
Analysis of femtosecond laser ablated area of diamond |
Faculty of Eng., Tokushima Bunri Univ.1, Photo-Physics
Lab. inc.2@*Kojima Takanori 1,Kunimoto Takashi 1,Kobayashi Hiroshi 1,Tsugita
Hiroshi 2,Okuno Masashi 2,Watanabe Akira 2 |
|
11 |
Quenching of high-pressure phases of Ti using femtosecond
laser driven shock wave |
Osaka Univ.1, SPring-82, Fukui Univ. Tech.3@*Tomokazu
Sano1, Osami Sakata2, Kouhei Yamamoto1, Akio Hirose1, Kojiro F. Kobayashi3
|
|
12 |
Effect of femto-second laser irradiation on the
inside of transparent ceramics |
Murata Mfg. Co., Ltd. 1, Kyoto Univ. 2@*Takashi
Fujii 1, Yukio Sakabe 1, Kazuyuki Hirao 2 |
|
13 |
Formation of Polysilane Films Using Femtosecond
Laser |
National Defense Academy 1@*Ken Kettyarath 1, M.Okoshi
1, N.Inoue 1 |
|
14 |
Preparation of FeSi2 micro-dot array
by laser-induced forward transfer |
AIST@*Aiko Narazaki 1, Ryozo Kurosaki 1, Tadatake
Sato 1, Yoshizo Kawaguchi 1, Hiroyuki Niino 1 |
|
15 |
Fundamental study of toner coloring method using
CO2 laser |
SOKA Univ 1@Mashiyama Daijyu 1,Iwata Masahiko 1,Tokita
Daisaku 1,Ishii Yoshio 1,Watanabe Kazuhiro 1 |
|
16 |
Creation of void in transparent polymer material
using Nd:YAG laser for data writing method |
SOKA Univ. 1@*Takeuchi Shinsuke 1, Tokita Daisaku
1, Isii Yoshio 1, Watanabe Kazuhiro 1 |
|
17 |
Composition of Silica Glass Ablated by Laser Plasma
Soft X-rays |
Inst. of 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 |
|
18 |
Three-Dimentional exposure for flexible substrate
with confocal laser microscope |
Graduate School of Science and Technology Kumamoto
Uni.@*Hidaka Kota 1, Imura Fumito 1, Sou Yuki 2, Nakada Akira 1, Kubota
Hiroshi 1 |
|
19 |
Preparation of Polyynes by Laser Ablation of Perylene
Derivatives in Liquid Phase |
Ritsumeikan Univ.@*T. Kakimoto, R. Matsutani, H.
Tanaka and S. Nishio |
4.7 Laser
Processing |
August 30 (Wed.) |
30p-P7-@/ III |
|
|
Poster
Session
30p-P7-1`16@13:00`15:00 |
’ |
1 |
Measurements of BN radical densities produced by
laser ablation of a BN target in Ar/N2 plasmas |
Department of Electrical Engineering and Computer
Science, Nagoya University 1@Yasuda Shin 1, Takada Noriharu 1, Sasaki Koichi
1 |
’ |
2 |
Excitation Wavelength Dependence on Preparation
of C60 Water Dispersion by Laser Ablation |
Nano Photonics Institute 1, Department of Applied
Physics, Osaka University 2@*Sen-ichi Ryou 1, Teruki Sugiyama 2, Tsuyoshi
Asahi 2, Isamu oh 1, and Hiroshi Masuhara 1,2 |
’ |
3 |
Fabrication of SiC thin films with TiN buffer layer
by laser MBE |
Dept. of Innov. Eng. Mater. Tokyo Inst. of Tech.
1@*Kohta Akiyama 1, Sei Otaka 1, Masayasu Kasahara 1, Wakana Hara 1, Mamoru
Yoshimoto 1 |
’ |
4 |
Formation of SiO2 Films by F2
Laser-Chemical Vapor Deposition for Microsphere Bonding (2) |
National Defense Academy. 1@*JB. Cho 1, M. Okoshi
1, N. Inoue 1 |
’ |
5 |
Behavior of debris in stainless processing using
femtosecond pulses |
Hamamatsu Photonics K.K.1, Shizuoka Univ.2@*Shingo
Oishi1, Shin-ichiro Aoshima1, Masato Yamada2, Takayuki Saito2 |
’ |
6 |
Formation of nanostructure with directional anisotropy
using fs laser irradiation |
Kyoto Univ.IIC. 1, Kyoto Univ. 2 @Shingo Kanehira
1, Kiyotaka Miura 2, Koji Fujita 2,Kazuyuki Hirao 2. |
’ |
7 |
Femtosecond-laser-induced structural change on
DLC film surface and its reflectivity |
Inst. Advanced Energy Kyoto Univ. 1@*Miyaji Godai
1, Miyazaki Kenzo 1 |
’ |
8 |
Crystallization of amorphous Si thin layer by femtosecond
laser irradiation |
ILE Osaka Univ. 1,ILT 2@*Izawa Yusaku 1, Tokita
Shigeki 1, Fujita Masayuki 2, Izawa Yasukazu 1 |
’ |
9 |
Microfabrication on three-dimensional structures
by femtosecond laser lithography |
Osaka Univ. 1, AIST 2, ISIR 3@*Mizoshiri Mizue
1, Nishiyama Hiroaki 1, Hirata Yoshinori 1, Nishii Junji 2, Kawahara Toshio
3, Kawai Tomoji 3 |
’ |
10 |
Fabrication of periodically aligned sub-micron
dots of silicon and nickel by using linearly polarized Nd:YAG laser |
Jpn. Adv. Inst. Sci. & Tech. (JAIST)@*Nishioka
Kensuke 1, Horita Susumu 1 |
|
11 |
Femtosecond laser direct writing of metallic microstructures
by photoreduction of silver nitrate |
Yokohama National Univ. 1@*Saeki Tatsuya 1,Maruo
Shoji 1 |
’ |
12 |
Development of investment casting method based
on microstereolithography |
Yokohama National Univ 1,JMC Co., Ltd. 2,CMET Inc.
3@*Makoto Inada 1,Katsunori Tsukamoto 1,Hiroshi Takaoka 2,Hiroyuki Suzuki
2,Daich Watanabe 2,Tsuneo Hagiwara 2,Shoji Maruo 1 |
’ |
13 |
Effect of surface rubbing on the formation of laser-induced
ripple structures |
The Univ. of Tokushima@*Tomita Takuro 1, Kumai
Ryota 1, Kinoshita Keita 1, Matsuo Shigeki 1, Hashimoto Shuichi 1 |
|
14 |
Atomic structural analysis of periodic structures
on semiconductor surfaces by Raman spectroscopy |
JSPMI 1,Graduate school of engineering The Univ.
of Tokushima 2@Makoto Yamaguchi 1,Shigeru Ueno 1, Kumai Ryota 2, Keita Kinoshita
2, Takuro Tomita 2, Shigeki Matsuo 2, Shuichi Hashimoto 2 |
|
15 |
Structural study on carbon nanoparticles synthesized
by liquid laser ablation I. Effect of laser irradiation condition |
IMRAM, Tohoku Univ. 1@*Mochidzuki Yuzuru 1, Nakamura
Takahiro 1, Sato Shunichi 1 |
’ |
16 |
Structural study on carbon nanoparticles synthesized
by liquid laser ablation II. Effect of target materials |
IMRAM, Tohoku Univ. 1@*Mochidzuki Yuzuru 1, Nakamura
Takahiro 1, Sato Shunichi 1 |
4.7 Laser
Processing |
August 30 (Wed.) |
30p-P9-@/ III |
|
|
Poster Session
30p-P9-1`15@15:30`17:30 |
|
1 |
Pioneering studies of high-intensity vacuum ultraviolet
radiation and its applications |
CRC Univ. of Miyazaki 1, Dept. of EEE. Univ. of
Miyazaki 2, ILE Osaka Univ. 3@*Masahito Katto 1, Atushi Yokotani 2, Shoichi
Kubodera 2, Noriaki Miyanaga 3, Kunioki Mima 3 |
|
2 |
Vacuum ultraviolet argon excimer laser pumped by
a high-intensity laser |
Univ. of Miyazaki1,2, Osaka Univ. 3@Yuta Taniguchi1,
Masahito Katto2, Atsushi Yokotani1, *Shoichi Kubodera1, Noriaki Miyanaga3,
and Kunioki Mima3 |
|
3 |
Pioneering studies of high-intensity vacuum ultraviolet
radiation and its application |
Dert. of EEE Univ. of Miyazaki1, CRC Univ. of Miyazaki2,
ILE Osaka Univ.3@Yokotani Atsushi1, Katto Masahito2, Kubodera Shouichi1,
Miyanaga Noriaki3, Mima Kunioki3 |
|
4 |
Smoothing of silicon rough surface by pulsed laser
irradiation |
Fuji Electric Advanced technology Co., Ltd. @Yasuhisa
Souma, Ayako Yajima, Kazuo Shimoyama, Haruo Nakazawa, Kunio Mochizuki |
|
5 |
Resistivity Change of Transparent Conductive Films
by Laser Irradiation |
National Defense Academy 1,Takenaka Corp. 2@*Okoshi
Masayuki 1,Harakawa Kenichi 2,Inoue Narumi 1 |
|
6 |
Non-digitized diffractive beam splitters for high-throughput
and damage-free laser processing |
Seiko Epson Corp. 1@Amako Jun 1, Fujii Eiichi 1,
Yamazaki Yutaka 1, Inoue Satoshi 1 |
|
7 |
140nm-pitched resist patterning using a holographic
technique with an ultra-fine relief grating. |
Seiko Epson Corp.@*Sawaki Daisuke 1,Amako Jun 1 |
|
8 |
Optical technique related to orange fiber laser
in photocoagulation system |
Nidek Co.,Ltd. 1, Optoquest Co.,Ltd. 2@*Koichi
Ito 1, Kazunobu Kojima 1, Takuya Yoda 2, Ken-ichi Hayashi 1 |
|
9 |
Fabrication of microfluidic devices by LIBWE –
connection between microchannels and wider channels |
AIST PRI@*Tadatake Sato, Ryozo Kurosaki, Aiko Narazaki,
Yoshizo Kawaguchi, Hiroyuki Niino |
|
10 |
Process of reactive pulsed laser ablation of silicon
target in nitrogen gas |
Dept. of Physics. Konan Univ. 1,Quantum Nano-tech.
Lab. 2 @*Nakayama Yuusuke 1,Ikurou Umezu 1 2,Akira Sugimura 1 2 |
|
11 |
Photo-conversion of metal flakes to nanowire by
a femtosecond laser irradiation |
Kyoto Univ.@*Shimotsuma Yasuhiko1, Nakao Atsuo2,
Miura Kiyotaka, Hirao Kazuyuki2 |
£ |
12 |
Structural characterization of shock-affected sapphire |
RIES Hokkaido Univ. 1, CREST-JST 2, Tokushima Univ.
3@Saulius Juodkazis 1 2, Koichi Nishimura 1 2, Shigeki Matsuo 3,Hiroaki
Misawa 1 2 |
|
13 |
Preparation of QA Nanoparticles by Laser Ablation
in Water Using a Flow Cell |
Department of Applied Physics, Osaka University@Kobayashi
Masahiro 1,Sugiyama Teruki 1,Asahi Tsuyoshi 1,Masuhara Hiroshi 1 |
£ |
14 |
Synthesis of spherical silver nanoparticles using
the laser irradiation |
AIST 1@*Pyatenko Alexander 1,Yamaguchi Munehiro
1,Suzuki Masaaki 1 |
|
15 |
Formation process of nanoparticle by laser ablation
in liquid and dependence on target materials |
Dept.of Physics Konan Univ. 1,Quantum Nano-tech.Lab.
2@*Senoo hayato 1,Umezu ikurou 1 2,Sugimura akira 1 2 |