| 5 Optoelectronics |
| 5.1 Semiconductor
Lasers and Light Emitting Devices |
| September 6 9:00`11:45 |
| 6a-C-@/ III |
| |
1 |
High-Power 10-Gb/s Operation of AlGaInAs Electroabsorption
Modulator Integrated λ/4-Shifted DFB Laser |
Fujitsu Lab. 1@*Kan Takada 1, Suguru Akiyama 1,
Manabu Matsuda 1, Shigekazu Okumura 1, Mitsuru Ekawa 1, Tsuyoshi Yamamoto
1 |
| |
2 |
GaInNAs DFB laser with a high-resistive current-blocking
layer |
Sumitomo Electric Industries, LTD. 1, OITDA 2@*Hashimoto
Jun-ichi 1,2, Koyama Kenji 1,2, Ishizuka Takashi 1,2, Tsuji Yukihiro 1,
Yamada Takashi 1,2, Fujii Kousuke 1, Fukuda Chie 1, Onishi Yutaka 1, Katsuyama
Tukuru 1,2 |
| |
3 |
1.49Κm Gain-Coupled DFB Lasers for Isolator-Free
Modules |
Oki Electric Industry Co., Ltd. 1@*Miyamura Satoshi
1, Nakamura Koji 1, Yaegashi Hiroki 1, Ogawa Yoh 1 |
| |
4 |
Theoretical researches in the principle of optical
RAM for next generation all optical routers |
Kyushu Univ. 1, Kyushu Univ. 1, Kyushu Univ. 1@Saikaku
Hirotaka 1, Bastawrous Hany Ayad 1, Hamamoto Kiichi 1 |
| |
5 |
Generation and transmission property of 10-Gbps
NRZ signal using frequency modulated SSG-DBR-LD and optical filter |
NTT Photonics Labs.@*Kakitsuka Takaaki 1, Matsuo
Shinji 1, Segawa Toru 1, Suzuki Hiroyuki 1, Fujiwara Naoki 1, Shibata Yasuo
1, Yasaka Hiroshi 1 |
| |
|
Break 10:15`10:30 |
|
| |
6 |
C- and L- Band External Cavity Wavelength Tunable
Laser with a Wideband SOA based on Coupled QWs Active Layer |
Nano Electronics Research Labs., NEC Corp. 1@*Sudo
Shinya 1, Mizutani Kenji 1, Okamoto Takeshi 1, Tsuruoka Kiyotaka 1, Sato
Kenji 1, Kudo Koji 1 |
| |
7 |
500 ns/step wavelength sweep by using SSG-DBR lasers
integrating thermal drift compensation mesa structure |
NTT Photonics Labs. 1@Fujiwara Naoki 1, Ishii Hiroyuki
1, Yoshimura Ryoko 1, Kano Fumiyoshi 1, Kawaguchi Yoshihiro 1, Kondo Yasuhiro
1, Oohashi Hiromi 1 |
| |
8 |
GaInNAs/GaInAs MQW-SOA with low NF and large gain
bandwidth |
Fujitsu ltd. 1, Fujitsu Laboratories ltd. 2@*Shinsuke
Tanaka 1, Susumu Yamazaki 1, Ayahito Uetake 1, Mitsuru Ekawa 2, and Ken
Morito 1 |
| |
9 |
Facet passivation method by aluminum ultrathin
layer insertion of GaInAsP/InP laser diodes |
Sumitomo Electric Industries, LTD., Transmission
devices R&D laboratories 1,Sumitomo Electric Industries, LTD., Analysis
technology research center 2,Sumitomo Electric Industries, LTD., Optical
Transmission Components Division 3@*Ichikawa Hiroyuki 1,Fukuda Chie 1,Hamada
Kotaro 2,Nakabayashi Takashi 3 |
| |
10 |
InAs/InGaAs multiple-quantum-well buried-heterostructure
lasers emitting at around 2.3 Κm |
NTT Photonics Lab. 1,@*Sato Tomonari 1, Mitsuhara
Manabu 1, Nunoya Nobuhiro 1, Kasaya Kazuo 1, Kano Fumiyoshi 1, Kondo Yasuhiro
1 |
| 5.1 Semiconductor
Lasers and Light Emitting Devices |
| September 7 9:00`18:00 |
| 7a-C-@/ III |
| |
1 |
High-power 300 mW blue-violet laser diodes for
next-generation DVD systems |
SANYO Electric Co., Ltd. 1@Kyoji Inoshita 1, Shingo
Kameyama 1, Yasumitsu Kunoh 1, Daijiro Inoue 1, Yasuyuki Bessho 1, Takenori
Goto 1, Tatsuya Kunisato 1 |
| ’ |
2 |
Suppression of COD in AlGaInN-based pure blue laser
diodes with current injection-free region near the laser facet. |
Sony Shiroishi Semiconductor Inc.1,Sony Corporation.2@*Takayuki
Tanaka 1,Miwako Shouji 1,Yukio Hoshina 1,Yoshitsugu Ohizumi 1,Makoto Ohta
1,Yoshifumi Yabuki 1,Shigetaka Tomiya 2,Osamu Goto 1,Masao Ikeda 2 |
| |
3 |
High temperature operation of Super High-Power
Laser Diode Array Emitting at 643nm |
Sony Corp. CTDG 1@*Kazuya Wakabayashi 1, Yoshiro
Takiguchi 1, Kaori Naganuma 1, Yoshifumi Sato 1, Daisuke Imanishi 1, Satoshi
Ito 1, Shoji Hirata 1 |
| |
4 |
730 nm band InGaAsP/AlGaInP Quantum-Well Ridge
Lasers |
CRL.Hitachi Ltd. 1, Opnext Japan,Inc. 2@*Taniguchi
Takafumi 1, Nomoto Etsuko 1, Ohtoshi Tsukuru 1, Sasaki Shinya 2, Saito Kazunori
2, Hara Hideki 2 |
| |
5 |
Thermal stabilize of 650-nm-wavelength 20 channel
laser diode array |
Hitach CRL, Ricoh Printing Systems@Nakatsuka Shin'ichi,
Inenaga Hiroshi, Sakamoto Jyunshin, Aoki Masahiro |
| |
6 |
Near-field pattern control of broad-area laser
diodes |
CTDG, Sony Corp. 1@*Asatsuma Tsunenori 1, Takiguchi
Yoshiro 1, Furukawa Akio 1, Hirata Shoji 1 |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Characteristics and Control of Polarized Emission
in The Fabrication of Nonpolar m-Plane InGaN LEDs |
ROHM Co.,Ltd.@*Tsujimura Hiroki 1,Nakagawa Satoshi
1,Okamoto Kuniyoshi 1,Ohta Hiroaki 1,Tanabe Tetsuhiro 1,Takasu Hidemi 1 |
| ’ |
8 |
Case Study for White LED to Obtain High Color Rendering
Indexes |
Tsuyama National College of Technology 1,Kansai
Electric Power Co 2@*Fukui Kotaro 1,Iwano Yuta 1,Kuwana Yuji 2,Itoh Kunio
1 |
| ’ |
9 |
Study of CuGa1-xAlxS2 Materials for Blue Light
Emitting Diode |
Tsuyama National College of Technology 1@Iwano
Yuta 1, Matsuoka Hironori 2, Kiyohara Hiroyuki 3, Inoue Akito 4, Nakamura
Sigeyuki 5, Itoh Kunio 6 |
| |
10 |
Application to White Light Emitting Diode using
Carbon Nitride |
Tsuyama National College of Technology 1, Okayama
University of Science 2, Industrial Technology Center of Okayama Prefecture
3, JAPAN GORE-TEX 4@Iwano Yuta 1, Kittaka Toshiaki 2, Tabuchi Hidekazu 3,
Kunitsugu Sinsuke 4, Takarabe Kenichi 5, Itoh Kunio 6 |
| ’ |
11 |
Property of JFET-LED with Nb/n-InGaAs/Nb Josephson
Junction |
RIES, Hokkaido Univ. 1, Central Res. Lab., Hamamatsu
Photonics 2, JST CREST 3, NTT Basic Res. Lab. 4@*Yujiro Hayashi 1, Kazunori
Tanaka 2,3, Tatsushi Akazaki 3,4, Hidekazu Kumano 1,3, Ikuo Suemune 1,3 |
| £ |
12 |
Enhancement of forward-directed light outcoupling
from organic light-emitting diodes using nano-imprinted low-refractive index
layer |
Tokyo Inst. of Tech. 1, Nippon Oil Corp. 2@*Soon
Moon Jeong 1, Fumito Araoka 1, Yoshimi Machida 1, Ken Ishikawa 1, Suzushi
Nishimura 2, Goro Suzaki 2 and Hideo Takezoe 1 |
| ’ |
13 |
GaInAsP/InP Light Emitting Diode on SOI Substrate
by Direct Wafer Bonding |
Quantum Nanoelectronics Research Center, Tokyo
Inst. Tech 1, JST-CREST 2@Tadashi Okumura 1,Takeo Maruyama 1,2,Masaki Kanemaru
1,Shigehisa Arai 1,2 |
| |
|
Lunch 12:30`13:30 |
|
| 7p-C-@/ III |
| |
1 |
1.3 µm laser with highly strained MQW on
InGaAs ternary substrate grown by TLZ method |
NTT Photonics Laboratories 1, JAXA 2 @*Masakazu
Arai 1, Masahiro Yuda 1, Kyoichi Kinoshita 2, Shinichi Yoda 2, Yasuhiro
Kondo 1 |
| |
2 |
Temperature characteristics of material gain of
strained quantum wells on InGaAs ternary substraets |
NTT Photonics Laboratories 1@*Takeshi Fujisawa
1, Masakazu Arai 1, Takayuki Yamanaka 1, Yasuhiro Kondo 1, Hiroshi Yasaka
1 |
| |
3 |
Influence of Band Offset on Carrier Recommbination
Lifetime in Quantum Well Lasers on GaAs Substrate |
Osaka Electro-Communication Univ 1@*Kakuda Shinichi
1,Tanaka Masashi 1,Susaki Wataru 1 |
| |
4 |
Improvement of kink-free light output power for
fiber pump lasers |
Grad.School of Sci. & Eng., Ritsumeikan Univ.,
1@*Shomura Naoki 1, Numai Takahiro 1 |
| |
5 |
Improvement of External Optical Feedback Resistance
of 1.49 micron InGaAsP Laser Diodes |
Advanced Technology R&D Center 1, High Frequency
& Optical Device Works 2, Mitsubishi Electric Corp. @*Mitsunobu Gotoda 1,
Tetsuya Nishimura 1, Toshitaka Aoyagi 2, Keisuke Matsumoto 2, Kiichi Yoshiara
1, Yasunori Tokuda 1 |
| ’ |
6 |
Reduction of RIE Plasma Damage in GaInAsP/InP Quantum-Well
Lasers by 2-step OMVPE Growth |
Tokyo Tech. QNERC 1,Dept. of EEE 2,JST-CREST 3
@*Kurokawa Munetaka 1,Plumwongrot Dhanorm 1,Nishimoto Yoshihumi 1,Maruyama
Takeo 1,3,Nishiyama Nobuhiko 2,Arai Shigehisa 1,3 |
| |
7 |
Theoretical analysis of carrier energy distribution
in Tunnel Injection Quantum Well structures |
P&I Lab., Tokyo tech. 1@*Yasutaka Higa 1, Tomoyuki
Miyamoto 1, Hiroshi Nakajima 1, Kosuke Fujimoto 1 and Fumio Koyama 1 |
| |
8 |
Discussion of lasing characteristics of tunnel
injection lasers by theoretical analysis (II) |
P&I Lab Tokyo Tech@Hiroshi.nakajima,Tomoyuki Miyamoto,Yasutaka
Higa,Kousuke Fujimoto,Fumio Koyama |
| |
|
Break 15:30`15:45 |
|
| |
9 |
p-type modulation doped InAs quantum dot laser
using delta doping |
INQIE, The Univ. of Tokyo1, IIS, The Univ. of Tokyo2,
RCAST, The Univ. of Tokyo3, Fujitsu Laboratories Ltd.4, Fujitsu Ltd.5, OITDA6,
QD Laser, Inc.7@*Naoto Kumagai1, Katsuyuki Watanabe1, Mitsuru Ishida1, Yoahiaki
Nakata1, Nobuaki Hatori1, Hisao Sudo4-6, Tsuyoshi Yamamoto4-6, Mitsuru Sugawara4-7,
and Yasuhiko Arakawa1-3 |
| ’ |
10 |
Temperature dependence of gain spectrum in p-doped
1.3-Κm quantum dot lasers |
RCAST, Univ. of Tokyo 1, INQIE, Univ. of Tokyo
2, IIS, Univ. of Tokyo 3@*Yukutake Tetsutaro 1, Ishida Mitsuru 2, Hatori
Nobuaki 2, Nakata Yoshiaki 2, Ebe Hiroji 2, Arakawa Yasuhiko 1-3 |
| ’ |
11 |
Enhanced Modulation Bandwidth in 1.3-µm Quantum-Dot
Lasers Utilizing Antimony-Mediated High-Density InAs Dots |
INQIE, The Univ. of Tokyo 1, IIS, The Univ. of
Tokyo 2, RCAST, The Univ. of Tokyo 3, Fujitsu Laboratories Ltd. 4, Fujitsu
Ltd. 5, OITDA 6, QD Laser, Inc. 7@*M. Ishida 1, K. Watanabe 1, N. Kumagai
1, Y. Nakata 1, N. Hatori 1, H. Sudo 4-6, T. Yamamoto 4-6, M. Sugawara 4-7,
Y. Arakawa 1-3 |
| |
12 |
Radiation Hardness of Quantum Dot Lasers |
Fukui Univ. of Technology 1,Wakasawan Energy Research
Center 2,Univ. of Tokyo 3@*Gonda Shun-ichi 1,Ishigami Ryoya 2,Kume Kyo 2,Ito
Yoshifumi 2,Ishida Mitsuru 3,Arakawa Yasuhiko 3 |
| |
13 |
1.55-Κm-Wavelength Ι/4-Shifted DFB Lasers with
High-Density InAsSb Quantum-Dot Active Layers |
Fujitsu Laboratories Ltd. 1, Fujitsu Limited 2,
QDLaser Inc. 3, RCAST 4, IIS 5, CINQUE 6, Univ. of Tokyo@*Matsuda Manabu
1, Kawaguchi Kenichi 1,2, Uetake Ayahito 1,2, Kuwatsuka Haruhiko 1,2, Ekawa
Mitsuru 1, Yamamoto Tsuyoshi 1, Sugawara Mitsuru 1,2,3, Arakawa Yasuhiko
4,5,6 |
| |
14 |
Development of short-wavelength(Ι=4Κm) quantum
cascade lasers with strain-balanced structure |
Hamamatsu Photonics@*Edamura Tadataka 1, Furuta
Shin-ichi 1, Sugiyama Atsushi 1, Ochiai Takahide 1, Fujita Kazuue 1, Akikusa
Naota 1, Yamanishi Masamichi 1, Kan Hirofumi 1 |
| ’ |
15 |
Room Temperature, Continuous-Wave Operation of
Quantum Cascade Lasers with Single Phonon Resonance-Continuum Depopulation
Structures |
Central Research Labs., Hamamatsu Photonics KK@Kazuue
Fujita, Atsushi Sugiyama, Takahide Ochiai, Shin-ichi Furuta, Tadataka Edamura,
Naota Akikusa, Masamichi Yamanishi and Hirofumi Kan |
| |
16 |
Population inversion formation in quantum cascade
lasers |
Ritsumeikan Univ. 1, Central Res. Labs. Hamamatsu
Photonics KK 2@Naoki Kumazaki 1, Yohei Takagi 1, Mikito Ishihara 1, Kenich
Kasahara 1, Naota Akikusa 2, Tadataka Edamura 2 |
| |
17 |
Linewidth enhancement factor of quantum cascade
lasers (II) |
Ritsumeikan Univ. 1, Central Res. Labs. Hamamatsu
Photonics KK 2@Naoki Kumazaki 1, Yohei Takagi 1, Mikito Ishihara 1, Kenich
Kasahara 1, Naota Akikusa 2, Tadataka Edamura 2 |
| 5.1 Semiconductor
Lasers and Light Emitting Devices |
| September 8 9:00`12:00 |
| 8a-C-@/ III |
| |
1 |
Transverse-mode and Polarization Characteristics
of 1.55Κm Micromachined VCSELs |
Toyko Tech, Corning@K. Hasebe, A. Matsutani, T.
Sakaguchi, F. Koyama, N. Nishiyama, C. Caneau C.E. Zah |
| |
2 |
Thermal Resistance Reduction of GaAs-based VCSELs
using Thickness Modulated DBR |
Microsystem Research Center, Tokyo Institute of
Technology@.1@Nishina Tomohiro 1,Miyamoto Tomoyuki 1,Kashihara Yoshihiro
1,Ishida Syuutarou 1,Koyama Fumio 1 |
| |
3 |
Emitting point displacement controlled by optical
feedback in two mode vertical-cavity surface-emitting laser |
Kyoto Inst. Tech. 1, AIST 2@*Daisuke Nii 1, Chikara
Ito 1, Kenzo Nishio 1, Yasuhiro Awatsuji 1, Shogo Ura 1, Kenji Kintaka 2 |
| |
4 |
Single transverse mode analysis of proton-implanted
photonic-crystal vertical-cavity surface-emitting lasers |
The Furukawa Electric, Yokohama lab. 1, FETI 2@*Kise
Tomofumi 1, Nyakas Peter 2, Maruyama Kazuomi 1, Kiyota Kazuaki 1, Yokouchi
Noriyuki 1 |
| |
5 |
Development of Monolithically Integrated 850nm
10Gbps Vertical-Cavity Surface-Emitting Lasers with Monitoring Photodiodes |
Sony Corp. Materials Labs.@Yuji Masui 1, *Takahiro
Arakida 1, Rintaro Koda 1, Tomoyuki Oki 1, Kayoko Kikuchi 1, Hironobu Narui
1 |
| |
6 |
Development of polarization-stabilized and high-power
single-mode VCSEL for laser-printer |
Sony Corp. Semiconductor Laser Div.@*Maeda Osamu,Shiozaki
Masaki,Yamaguchi Norihiko,Matsuzaka Hitomi,Arakida Takahiro,Aga Keigo |
| |
|
Break 10:30`10:45 |
|
| |
7 |
Long-Channel GaInP Quantum-Well Surface Curved
DBR Laser with Window Structure |
Osaka Univ.@Fujita Yusuke 1, Uemukai Masahiro 1,
Suhara Toshiaki 1 |
| |
8 |
Fabrication and Evaluation of AlGaAs Quantum-Well
Distributed Bragg Reflector Laser Using Surface Curved Grating |
Osaka Univ.@Ikeda Shigefumi 1, Uemukai Masahiro
1, Suhara Toshiaki 1 |
| |
9 |
Surface-emitting red distributed Bragg reflector
laser array for semiconductor laser-induced fluorescence biosensing |
Osaka Univ. 1@*Uemukai Masahiro 1, Yamada Yasuo
1, Suhara Toshiaki 1 |
| |
10 |
Laser beam deflection control using arrayed waveguide
with active MMI laser diode for energy space-transmission |
Kyushu Univ.@*Matsumoto Hajime 1, Minato Takahiro
1, Okamoto Kazunori 1, Hamamoto Kiichi 1 |
| |
11 |
1xN active MMI-LDs for energy space-transmission |
Kyushu Univ. 1, Kyushu Univ. 1, Kyushu Univ. 1@*Okamoto
Kazunori 1, Fukuda Teppei 1, Hamamoto Kiichi |
| 5.2 Optical
Detection |
| September 6 9:30`11:30 |
| 6a-Q-@/ III |
| |
1 |
The development of high sensitivity and wide-bandwidth
waveguide photodiode |
Mitsubishi Electric Corporation High Frequency
and Optical Device Works @*Masaharu Nakaji 1, Eitaro Ishimura 1, Chikara
Watatani 1, Toshitaka Aoyagi 1, Takahide Ishikawa 1 |
| |
2 |
Evanescently coupled waveguide photodiodes for
40 Gbps-DPSK systems |
NEC Corp. Nano Electronics Research Labs. 1@*K.
Shiba 1, S. Watanabe 1, T. Okamoto 1, K. Makita 1 |
| |
3 |
InGaAsN photodiode operated with 2Κm wavelength
range |
NTT Photonics Labs.@Hideki Fukano, Manabu Mitsuhara,
Yasuhiro Kondo, and Hiroshi Yasaka |
| ’ |
4 |
The wavelength spectrum detection method using
avalanche photodiode |
Nagano National Coll. of Tech. 1, Toyohashi Univ.
of Tech. 2@*Akiyama Masahiro 1, Kamikura Tatsuyuki 1, Sawada Kazuaki 2 |
| |
5 |
Two-step-mesa InAlAs Avalanche Photodiodes for
single photon detection |
NEC Nano Electronics Res. Labs. 1, JST-SORST 2@*Nakata
Takeshi 1, Mizuki Emiko 1, Makita Kikuo 1, Tomita Akihisa 1 2 |
| |
6 |
Measurement system of gain distribution for single
electron initiated multiplication |
National Inst. of Info. and Com. Tech. 1@Tsujino
Kenji 1, Akiba Makoto 1, Sasaki Masahide 1 |
| |
7 |
High photoelectron-detection-efficiency photon
counter using Si APD in linear mode operation |
National Inst. of Info. and Com. Tech.@*Akiba Makoto
1, Tsujino Kenji 1, Sasaki Masahide 1 |
| |
8 |
Photocurrent Characteristics of a Ge/Si Heterojunction
Photodiode |
Kochi Univ of Technology. 1@*Miyaji Masayuki 1,
Kanbe Hiroshi 1 |
| 5.3 Optical
Storage |
| September 6 13:00`17:45 |
| 6p-Q-@/ III |
| |
1 |
Eyring acceleration 4 stress conditions for life
expectancy of optical disk |
Osaka Sangyo Univ.@Kenichi Nakatani 1,Yoshio Takahata
1,Jyunichi Nishiki 1, Mitsuru Irie 1 |
| |
2 |
Nonparametric estimation of life expectancy for
optical disks |
Osaka Sangyo Univ.@Jyunichi Nishiki 1 , Kenichi
Nakatani 1,Mitsuru Irie 1 |
| |
3 |
Measurement of reflected light intensity from molten
Ge-Sb-Te alloy surface |
AIST1, Tokyo Inst. Technol.2@Kuwahara Masashi 1,
Fukaya Toshio1, Shima Takayuki1, Iwanabe Yasuhiko1, Fons Paul1,TominagaJunji
Tominaga1, Endo Rie2, Susa Masahiro2 |
| |
4 |
Specific heat capacity at high temperature for
optical disk 2 |
AIST CAN-FOR 1, NMIJ 2@*Osamu Suzuki 1, Masashi
Kuwahara 1, Naoyuki Taketoshi 2, Takashi Yagi 2, Paul Fons 1, Hideyuki Kato
2, Tetsuya Baba 2 and Junji Tominaga 1 |
| |
5 |
Temperature dependence evaluation of optical constants
for phase-change thin film |
System Jisso Research Laboratories NEC Corp. 1
@*Eto Daisuke 1, Aoki Kazuhiko 1, Ohkubo Shuichi 1 |
| |
6 |
Oxidation and laser irradiated states of SbOX
films for optical recording prepared by reactive rf sputtering |
Tokai Univ. 1,Spinet Inc. 2@*Murata Yoshimasa 1,Okimura
Kunio 1,Gotoh Hironori 2 |
| ’ |
7 |
Optical Recording Characteristics of the Mo-Based
Oxide Films Prepared with Pulsed Laser Deposition Method |
Osaka Sangyo Univ. 1,Okuda Technical Office 2@*Mishiro
Kazuma 1,Aoki Takanori 1,Suzuki Akio 1,Matsushita Tatsuhiko 1,Okuda Masahiro
2 |
| ’ |
8 |
Improvement of rewrite characteristics of a super-RENS
optical disk with a Ag2O mask layer |
Ritsumeikan Univ 1@*Tokimitsu Yoshiki, Tamura Naoyoshi,
Taguchi kensuke, Ukita Hiroo |
| |
9 |
Temperature Distribution Perturbation and Influence
on Readout Signals in Super-Resolution Read-Only Memory Disc |
NEC Corp. 1@*Kazuhiko Aoki 1, Shuichi Ohkubo 1 |
| |
|
Break 15:15`15:30 |
|
| |
10 |
Evaluation about the reference levels of branch
metrics in the adaptive PRML detection |
System Jisso Research Lab., NEC Corp.@*Hisashi
Sugaya 1, Shuichi Ohkubo 1, Yutaka Yamanaka 1 |
| |
11 |
Readout Performance Improvement of Optical Head
by Focused Spot Diameter Switching Element |
NEC System Jisso lab.@*Tomiyama Mizuho 1, Katayama
Ryuichi 1 |
| |
12 |
Improvement of Transmissivity of a Bleached Electrochromic
Film for Ultra-multilayer Optical Recording |
NHK Sci. & Tech. Res. Labs. 1@*Sato Ryuji 1,Kawamura
Norikazu 1,Tokumaru Haruki 1 |
| |
13 |
Speeding Up of Holographic ROM Replication Using
Photorefractive Optical Amplification |
Grad. School of Info. Science and Tech., Hokkaido
University@Terumasa Ito 1, Atsushi Okamoto 1, Nobuhiro Takahashi 1 |
| ’ |
14 |
Improvement of selective erasure method for data
pages in holographic memory |
Grad. School of Eng., Fukuoka Univ. 1, Grad. School
of Info. Science and Tech., Hokkaido Univ. 2@*Aragane Kuniaki 1, Bunsen
Masatoshi 1, Furuta Hirosuke 1, Okamoto Atsushi 2 |
| |
15 |
Shift and shit-phase code multiplexing technique
for holographic memories |
Yamanashi Univ1, Hokkaidou Univ.@Satoshi Honma1,
Shinzo Muto2, Atsushi Okamoto2, |
| |
16 |
The Influence of Shrinkage in the Collinear Holographic
Storage System |
IIS Univ. of Tokyo. 1@*Terada Masaru 1, Fujimura
Ryushi 1, Shimura Tsutomu 1, Kuroda Kazuo 1 |
| |
17 |
Multi-layered Holographic Memory Materials Based
on Stepwise Two-photon Absorption of Pentathiophenes |
NTT Photonics Labs. 1, Grad. School of Eng. Kyoto
Univ. 2@*Kanbara Hirohisa 1, Hirabayashi Katsuhiko 1, Mori Yuhei 1, Kurihara
Takashi 1, Shimizu Masaki 2, Hiyama Tamejiro 2 |
| |
18 |
Record Regeneration of Optical Memory Using Two-Photon
Absorption of Organoboron Materials |
IIC,Kyoto Univ. 1, NTT Photonics Labs. 2@*Ishitsuka
Tomoaki 1, Katori Shigetaka 1, Okada Mariko 1, Fujita Shizuo 1, Kanbara
Hirohisa 2, Hirabayashi Katsuhiko 2, Yagi Shogo 2, Kurihara Takashi 1,2 |
| 5.4 Optical
Processing |
| September 4 |
| 4a-P1-@/ III |
| |
|
Poster
Session
4a-P1-1`30@9:30`11:30 |
| £ |
1 |
Simulation Study of Thermooptic Multimode Interference
Waveguide Photonic Switch based on Silicon and Polymer |
Waseda Univ. Graduate School of Advanced Science
and Engineering@Nan Xie, Katsuyuki Utaka |
| |
2 |
Fabrication of an optical modules using light-induced
self-written technology |
Toyota CRDL, Inc.@Matsui Takayuki, Kawasaki Akari,
Yonemura Masatoshi, Yamashita Tatsuya, Tsuchimori Masaaki, Kagami Manabu |
| |
3 |
Fabrication and Evaluation of Optical Waveguides
with Photo-Refractive Sol-Gel Materials |
Tokyo Univ. of Technology 1, Nissan Chemical Industries
2@*Ono Shigeru 1, Arai Yukihiko 1, Yoshimura Tetsuzo 1, Nawata Hideyuki
2 |
| |
4 |
Optical Bistable Characteristics of PMMA/ Poly(3-hexylthiophene)
Composite Film treated by Organic Gas |
Aichi Inst. of Tech. 1@*Koji Isogai 1, Shizuyasu
Ochiai 1, Goro Sawa 1, Kenzo Kojima 1, Asao Ohashi 1, Teruyoshi Mizutani
1 |
| |
5 |
Thermo-optic switch by refractive index reversal |
Shizuoka Univ. 1@*Masahiro Tomiki 1, Yasunori Nyu
1, Ken Miyahara 1 |
| ’ |
6 |
Improvement in modulation speed of organic light
sources with inorganic materials as an electron transport layer. |
Fujikura Ltd. 1, Shinshu Univ. 2@Fukuda Takeshi
1, Suto Eiichi 2, Ichikawa Musubu 2, Taniguchi Yoshio 2 |
| |
7 |
Numerical analysis for highly effective supercontinuum
generation in a tapered fiber. |
Kitami Inst. of Technology 1,Muroran Inst. of Technology
2@*Hiroyasu SONE 1,Zhaoyang WANG 2,Yasuhide TSUJI 1,Yasuhiro HARADA 1,Koichi
HIRAYAMA 1,Yukinari HAYASHI 1 |
| |
8 |
Saturable absorption of waveguide with carbon nanotube
dispersed cladding |
Yokohama Nat'l Univ.@*Ishizaka Shugo 1,Kokubun
Yasuo 1 |
| |
9 |
Relation between resonant shift and surface change
of microring resonator by UV irradiation |
Yokohama Nat'l Univ. 1@Tatewaki Takashi 1, Kokubun
yasuo 1 |
| |
10 |
Sensing properties by optical-waveguides using
polymer-coated core films |
Grad. School of Sci.&Tech., Kobe Univ. 1,Grad.
School of Eng., Kobe Univ. 2,@*Watanabe Aoi 1,Moriwaki Kazuyuki 2,Hishiya
Takayuki 1,Takeuchi Toshifumi 2 |
| |
11 |
Waveguide film deposition by ECR plasma CVD |
NTT Microsystem Integration Labs.@*Tai Tsuchizawa,
Hiroshi Fukuda, Toshifumi Watanabe, Koji Yamada, Seiichi Itabashi |
| |
12 |
Temperature dependence control of microring resonator
with UV-sensitive SiON core by stress control |
*Yokohama National University 1@*Kobayashi Naoki
1, Kokubun Yasuo 1 |
| |
13 |
Liquid Immersion Exposure Fabrication of Embedded
Taper Structure for 45° Mirror Integrated in Single Mode Waveguide |
Kyoto Inst. Tech. 1, AIST 2@*Takayuki Kobayashi
1, Kenzo Nishio 1, Kenji Kintaka 2, Shunsuke Murata 1, Yasuhiro Awatsuji
1, Shogo Ura 1 |
| |
14 |
Photoelastic Effect in Silicon Ring Resonator |
Hiroshima Univ. 1@*Yoshiteru Amemiya 1, Yuichiro
Tanushi 1, Tomohiro Tokunaga 1, Shin Yokoyama 1 |
| |
15 |
Efficiency Improvement of Focusing Grating Couplers
for WDM Optical Interconnects Board |
Kyoto Inst. Tech. 1, AIST 2@*Shunsuke Murata 1,
Kenji Kintaka 2, Kenzo Nishio 1, Yasuhiro Awatsuji 1, Shogo Ura 1 |
| |
16 |
Carbon Nanotube-Polyimide Saturable Absorbing Waveguide
Made with Photosensitive Polyimide |
AIST 1,TokyoUniv.Sci. 2@*Oomuro Toshiyuki 1,2,Kaji
Ryousaku 1,Itatani Tarou 1,Ishii Hiroyuki 1,Itoga Emiko 1,Kataura Hiromichi
1,Yamashita Masafumi 2,Mori Masahiko 1,Sakakibara Youichi 1,2 |
| |
17 |
Microfabrication of the grating by nano-machining
process |
Tokyo Tech.P&I Lab. 1@*Nakajima Jun 1,Suda Satoshi
1,Takeishi Tomofumi 1,Koyama Fumio 1 |
| |
18 |
Design and fabrication of a temperature-independent
SOI AWG device |
Kyushu Univ.@*Mutsunori Uenuma 1, Teruaki Motooka
1 |
| |
19 |
80 (8-wavelength x 10) Gbit/s WDM-based Optical
Packet Transmission using Optical Packet Transmitter/Receiver |
NICT 1, NTT electronics co. 2@Hideaki Furukawa
1, Naoya Wada 1, Hiroshi Fujinuma 2, Hatsushi Iizuka 2,Tetsuya Miyazaki
1 |
| ’ |
20 |
Dsign of 2-D spatial coding for all-optical A/D
conversion using free-space optical interconnection |
Osaka Univ. 1@*Kato Takuya 1, Nishitani Takashi
1, Konishi Tsuyoshi 1, Itoh Kazuyoshi 1 |
| |
21 |
Demonstration of the decoding function to use arbitrary
combination of whole time slot and wavelength channel for OCDM networks |
Osaka Univ. 1@Itoh Ryosuke 1, Konishi Tsuyoshi
1, Itoh Kazuyoshi 1 |
| |
22 |
Cross talk caused by third order nonlinearity in
EDFA for WDM signals |
NICT@Yoshinari Awaji 1, Hideaki Furukawa 1, Naoya
Wada 1 |
| |
23 |
Extinction-ratio enhancement of Mach-Zehnder LiNbO3
optical switch by using intensity trimmers |
NICT 1, Sumitomo osaka Cement co. 2@*Akito Chiba
1, Tetsuya kawanishi 1 , Takahide Sakamoto 1 , Kaoru Higuma 2 and Masayuki
Izutsu 1 |
| |
24 |
Optical Properties in LiNbO3 Ridge Waveguide with
Grating Filter |
Matsushita Electric Industrial Co.,Ltd. ATRL 1,
Osaka Univ. 2@Suzuki Asamira 1, Iwamoto Takuya 1, Enokihara Akira 1, Murata
Hiroshi 2, Okamura Yasuyuki 2 |
| |
25 |
Optical polarization modulator by using zero-birefringence
LiTaO3 |
Murata Mfg. 1,Osaka Uiv. 2@*Kumatoriya Makoto 1,Geho
Mikio 1,Wada Nobuyuki 1,Sakabe Yukio 1,Murata Hiroshi 2,Okamura Yasuyuki
2 |
| |
26 |
High-speed electro-optic polarization modulator
using traveling-wave electrode and double periodic poling structure |
Osaka Univ. 1@Hiroshi Murata 1, Asuka Takahasi
1, Yasuyuki Okamura 1 |
| |
27 |
Electro-optic modulator using antenna electrodes
and polarization-reversal structures |
Osaka Univ. 1@Suda Noriyoshi 1, Murata Hiroshi
1, Okamura Yasuyuki 1 |
| |
28 |
Analysis of light propagation characteristics in
LiNbO3 thin-film photonic crystal optical waveguides |
Graduate School of Engneer Science Osaka univ.
1,Matsushita Electric Industrial Co. Ltd. 2,@Hitohi Kumagai 1,Hiroshi Murata
1, Akira Enokihara 2, Yasuyuki Okamura 1 |
| ’ |
29 |
Optical comb generation using a quasi-velocity-matched
Fabry-Perot phase modulator |
Ritumei Univ. 1@*Hirano Masaki 1, Morimoto Akihiro
1 |
| |
30 |
Shifting frequency multiplication for an optical
frequency shifter based on a domain engineering technique |
Graduate School of Eng. Sci., Osaka Univ. 1, Center
for Advanced Science and Innovation, Osaka Univ. 2@Shintaro Hisatake 1,
Takaaki Konishi 1, Tetsuro Kobayashi 2 |
| 5.4 Optical
Processing |
| September 4 |
| 4p-P3-@/ III |
| |
|
Poster
Session
4p-P3-1`35@13:00`15:00 |
| ’ |
1 |
Fabrication and characterization of waveguide with
vertical grating DFB for all optical switching device based on intersubband
transition in II-VI based quantum well |
National Institute of Advanced Industrial Science
and Technology (AIST), Ultrafast Photonic Devices Laboratory,@Kazumichi
Akita, Ryoichi Akimoto, Cong Guangwei, Toshifumi Hasama,Hiroshi Ishikawa |
| |
2 |
Fabrication of all optical switch based on intersubband
transition in InGaAs/AlAsSb quantum well with DFB structure |
AIST 1@*Masanori Nagase 1, Kazumichi Akita 1, Ryoichi
Akimoto 1, Hitoshi Kawashima 1, Lim Cheng Guan 1, Teruo Mozume 1, Toshifumi
Hasama 1, Hiroshi Ishikawa 1 |
| £ |
3 |
Characteristics of the ultrafast phase-modulation
in InGaAs/AlAsSb CDQW ISBT switch |
Ultrafast Photonic Devices Lab., AIST@ C. G. Lim
1, R. Akimoto 1, T. Mozume 1, S. Gozu 1, M. Nagase 1, H. Tsuchida 1, T.
Hasama 1, H. Ishikawa 1 |
| £ |
4 |
Realization of the low-switching-energy operation
in II-VI-based intersubband ultrafast optical switches |
Ultrafast Photonic Devices Lab., AIST@G.W. Cong
1,R. Akimoto 1, K. Akita 1, T. Hasama 1, H. Ishikawa 1 |
| |
5 |
160 Gb/s DEMUX operation by using Mach-zehnder
interferometric intersubband all-optical switch |
Ultrafast Photonic Devices Lab., AIST 1@Akimoto
Ryoichi 1,Simoyama Takasi 1, Tsuchida Hidemi 1, Namiki shu 1, Lim ChengGuan
1, Mozume Teruo 1, Nagase Masanori 1, Ishikawa Hiroshi 1, Hasama Toshifumi
1 |
| |
6 |
Use of SiNx Cladding Layer in AlN/GaN-MQW Intersubband
Transition Waveguide Devices |
Univ. of Tokyo 1, RCAST 2@Toshimasa Shimizu 1,2,
Hassanet Sodabanlu 1,2, Jung Seung Yang 1, Masakazu Sugiyama 1, Yukihiro
Shimogaki 1, Yoshiaki Nakano 2 |
| |
7 |
Temperature@dependence of transmission spectra
in wavelength switch using selectively grown waveguide array by thermo-optic
effect |
Sophia@Univ.@1@*Shimizu Yu 1, Kawabe Sou 1, Iwasaki
Hiroya 1, Sugio Takayuki 1, Shimomura Kazuhiko 1 |
| |
8 |
Temperature Dependence of Refractive Index Changes
in Selectively Grown Waveguide by Thermo-optic Effect |
Sophia Univ.1@Iwasaki Hiroya 1,Kawabe Sou 1,Shimizu
yu 1,Sugio Takayuki 1,Shimomura Kazuhiko 1 |
| |
9 |
Numerical analysis on Wavelength Division Optical
Switch Using Arrayed Waveguide with Linearly Varying Refractive Index Distribution |
Sophia Univ. 1@*Sugio Takayuki 1.Matsumoto Hirokazu
1.Shimomura Kazuhiko 1 |
| |
10 |
Electroluminescence characteristics of InAs quantum
dots by selective MOVPE growth on InP(001) substrates |
Sophia Univ. 1@*Okawa Tatsuya 1,Akaishi Masataka
1,Saito Yasuhito 1,Shimomura Kazuhiko 1 |
| ’ |
11 |
Control of polarization-dependent gain in InGaAsP/InP
active components grown by selective area MOVPE |
RCAST Univ. of Tokyo 1, School of Eng. Univ. of
Tokyo 2@*Tomonari Shioda 1,2, Masakazu Sugiyama 2, Yoshiaki Nakano 1,2 |
| |
12 |
Study of All-Optical 3R Devices using Directional
Coupler Loaded with SOA and Long-Period Grating |
Waseda Univ. 1@*Ochiai Takanori 1, Urushidani Naoyuki
1, Utaka Katsuyuki 1 |
| ’ |
13 |
Transient Behavior of Nonlinear Optical Compensator
Based On Vertical Micro-Cavity Saturable Absorber |
Tokyo Tech. 1, Corning Inc. (preseltly Tokyo Tech.)
2, Corning Inc. 3@Satoshi Suda 1, Fumio Koyama 1, Nobuhiko Nishiyama 2,
Catherine Caneau 3 and Chung-En Zah 3 |
| |
14 |
Slow Light Detector with Bragg Reflector Waveguide |
P&I lab. Tokyo Tech 1, Corning Incorporated 2@*Keisuke
Kuroki 1, Go Hirano 1, Fumio Koyama 1, Koichi Hasebe 1, Takahiro Sakaguchi
1, Nobuhiko Nishiyama 2, Catherin Caneau 2, Chung-En Zah 2 |
| |
15 |
Structure of Miniature Modulator with Slow Light |
P&I Lab. Tokyo Tech 1@Keisuke Kuroki 1, Fumio Koyama
1 |
| ’ |
16 |
Theoritical Analysis of Electrorefractive Effect
in InGaAsP Five-layer Asymmetric Coupled Quantum Wells (FACQW) for 1.55Κm
Wavelength with kEp Perturbation Method |
Yokohama National Univ. 1, Kanazawa Inst. Tech.
2@*Fukuoka Masayasu 1, Toya Takahiro 1, Arakawa Taro 1, Tada Kunio 2 |
| £ |
17 |
Design and Fabrication of 3D Nanostep Hollow Waveguide
for Widely Tunable Photonic Devices |
Tokyo Tech. 1@*Mukesh Kumar 1, Koyama Fumio 1 |
| ’ |
18 |
Large change in equivalent refractive index with
slow light and its application for optical switch |
Tokyo Tech P&I Lab. 1 @*Fuchida Ayumi 1, Fumio
Koyama 1 |
| |
19 |
Fabrication of InGaAsP/InP 1x5 Optical Switch Based
on Arrayed Phase Shifters |
RCAST, Univ. of Tokyo 1, Dept. Elec. Eng., Univ.
of Tokyo 2@Tanemura Takuo 1, Takenaka Mitsuru 2, Abdullah Al Amin 1, Takeda
Koji 2, Shioda Tomonari 2, Sugiyama Masakazu 2, Nakano Yoshiaki 1 |
| |
20 |
Frequency-dependent electric dc power consumption
model including quantum-conversion efficiencies in ultrafast all-optical
semiconductor gates |
University of Electro-Communications, Department
of Electronic Engineering 1@*Sakaguchi Jun 1, Ferran Salleras 1, Yoshiyasu
Ueno 1 |
| |
21 |
Characterization of nonlinear nonreciprocal propagation
in semiconductor amplifying waveguide optical isolators |
Tokyo Univ. of Agri. & Tech. 1,Ghent Univ. 2,Univ.
of Tokyo3@*Hiromasa Shimizu 1,Wouter Van Parys 2,Roel Baets 2,Yoshiaki Nakano
3 |
| ’ |
22 |
High temperature operation of TM-mode waveguide
optical isolator based on nonreciprocal loss induced by ferromagnetic MnSb |
RCAST, Univ. of Tokyo 1, Tokyo Inst. of Tech. 2,
Tokyo Univ. of Agri. & Tech. 3@*T. Amemiya 1, Y. Ogawa 2, H. Shimizu 3,
H. Munekata 2, Y. Nakano 1 |
| ’ |
23 |
Design of an Ultra-Wideband Optical Isolator Operating
in 1.31-1.55Κm band |
Tokyo Inst. of Tech.@*Yuya Shoji 1, Tetsuya Mizumoto
1 |
| |
24 |
GaInAsP-Ce:YIG Direct Bonding for Optical Isolator
Employing Nonreciprocal Phase Shift |
Tokyo Inst. of Tech. 1@Takei Ryouhei 1,*Abe Kenji
1,Mizumoto Tetsuya 1 |
| |
25 |
Si-InP Direct Bonding at Room Temperature with
O2 Plasma Treatment |
Tokyo Inst. of Tech. 1@*Takei Ryouhei 1,Mizumoto
Tetsuya 1 |
| |
26 |
Signal transmission from directly modulated VCSEL
in a thin-film waveguide for WDM optical interconnects board |
AIST 1, Kyoto Inst. Tech. 2@*Kintaka Kenji 1, Nishii
Junji 1, Shinoda Kouji 2, Ito Chikara 2, Nii Daisuke 2, Nishio Kenzo 2,
Ura Shogo 2 |
| |
27 |
Polarization-, Wavelength-, and Filter-Free All-Optical
Clock Recovery Using a Mode-Locked Laser Diode |
Oki Electric 1@*Arahira Shin 1,Takahashi Hiroyuki
1,Nakamura Koji 1,Yaegashi Hiroki 1,Ogawa Yoh 1 |
| |
28 |
Experimental demonstration of bistability for developing
optical flip-flop based on ultra-small Mach-Zehnder optical circuit |
NEC 1, Meijyo Univ. 2, AIST 3, NIMS 4, Tsukuba
Univ. 5@*Shigeru Nakamura 1, Akira Watanabe 2, Xiaomin WANG 3, Naoki Ikeda
4, Yoshimasa Sugimoto 4, Nobuhiko Ozaki 5, Yoshinori Watanabe 5, Kiyoshi
Asakawa 4,5, |
| |
29 |
Polarization bistable characteristics and all-optical
flip-flop operation of 1.55µm vertical-cavity surface-emitting lasers |
NAIST 1, CREST JST 2@Katayama Takeo 1 2, Sato Yuuki
2, Mori Takashi 1 2, Kawaguchi Hitoshi 1 2 |
| |
30 |
Operation performance of 40-Gbit/s semiconductor
integrated optical digital-to-analog converters |
P&I Lab., Tokyo Inst. of Tech 1@Kengo Sawada 1,
Hiroyuki Uenohara 1 |
| ’ |
31 |
Resolution improvement of all-optical A/D conversion
using SPM-induced spectral compression |
Osaka Univ.@Nishitani Takashi 1, Konishi Tsuyoshi
1, Itoh Kazuyoshi 1 |
| |
32 |
Optical Signal Intensity Equalizer - pulse shaping
with a self-phase shift and a spatial frequency filtering- |
Osaka Univ.@*Goto Hiroomi 1, Tsuyoshi Konishi 1,
Takashi Nishitani 1, Kazuyoshi Itoh 1 |
| |
33 |
Pulse compression of multimode oscillation pulses
from gain-switched laser diodes using fiber interferometer (II) |
Osaka Pref. Univ. 1@*Takamatsu Shuji 1, Watanabe
Hideyuki 1, Morishita Tomoyuki 1, Wada kenji 1, Matsuyama Tetsuya 1, Horinaka
Hiromichi 1 |
| |
34 |
Repetition Rate and Central Wavelength Tunable
Terahertz Optical Clock Generation Using Variable Bandwidth Spectrum Shaper |
Japan Womenfs Univ. 1, NICT 2, Optoquest Co.,Ltd.
3@*Anzai Shimako 1, Komai Yuki 1, Mieno Mitsuko 1, Wada Naoya 2, Miyazaki
Tetsuya 2, Kodate Kashiko 1 |
| |
35 |
Optical Waveguide Analysis using Integral Expression
for the Effective Refractive Index and its Application to Schroedinger Equation
Analysis |
Setsunan Univ. 1, Kitasato Univ. 2, Quantum Phase
Lab. 3@*Ohke Shigeaki 1, Umeda Tokuo 2, Cho Yoshio 3 |
| 5.4 Optical
Processing |
| September 5 |
| 5a-P5-@/ III |
| |
|
Poster Session
5a-P5-1`20@9:30`11:30 |
| |
1 |
Propagation loss of (Ba,Sr)TiO3 waveguide for infrared
light |
Hiroshima Univ.@Nagata Kazuma 1, Suzuki Masato
1, Yokoyama Shin 1 |
| |
2 |
Imprint Property of Mach-Zehnder Interferometer
Using Sputter Deposited (Ba,Sr)TiO3 at Low Temperature |
Hiroshima Univ. 1@*Suzuki Masato 1, Nagata kazuma
1, Yokoyama Shin 1 |
| |
3 |
LiNbO3 optical waveguide coupler for
optical disk resonators |
NICT 1@iyotaka Sasagawa 1, Shinya Nakajima 1, Tetsuya
Kawanishi 1, MasahiroTsuchiya 1 |
| |
4 |
Electric Field Effects on PL of Er-doped LiNbO3
thin film prepared by PLA method |
Grad. School of Kanazawa Univ. 1,Fac. of Eng. Kanazawa
Univ. 2, Ishikawa Nat. College of Tech. 3@*Susaki Yuichi 1,Mizushima Tatuya
2,Kawae Takeshi 1,Yamada Satoru 3,Ohtsubo Shigeru 3,Morimoto Akiharu 1,Kumeda
Minoru 1 |
| |
5 |
Relation between Sc-doping concentration and optical
damage resistance for near-stoichiometric Sc-doped LiTaO3 crystal |
NIMS 1@*Masaru Nakamura 1, Shunji Takekawa 1, Yuowen
Liu 1, Yoshiyuki Yajima 1, Kenji Kitamura 1 |
| |
6 |
Domain Inversion with 0.8µm Period Pattern
using Conductive Tip AFM |
R.I.E., Shizuoka Univ. 1@*Awano Haruyuki 1, Minakata
Makoto 1 |
| |
7 |
MgO:LiNbO3 domain-inverted grating formation by
voltage application under UV He-Cd laser irradiation at R.T. |
Osaka Univ. 1@Syuhei Yoshimoto 1, *Masatoshi Fujimura
1, Toshiaki Suhara 1 |
| |
8 |
Characterization of Mg-doped congruent LiTaO3 crystal
(2) |
Inst. for Molecular Science@*Ishizuki Hideki 1,
Taira Takunori 1 |
| |
9 |
BLIIRA temperature dependence of LiNbO3 and LiTaO3
crystals with different composition |
RIEC, Tohoku Univ. 1, CREST 2, Nagoya Univ. 3 @*Shigehiro
Nagano 1, Ryosuke Shimizu 2, Atsushi Syouji 1, Nobuyuki Matsuda 1, Koji
Suizu 3, Keiichi Edamatsu 1 |
| |
10 |
Fabrication of short period for quasi-phase-matching
in quartz |
NIMS 1, Nidek 2@*Adachi Muneyuki 1,2, Nakanishi
Jun 1,2, Kurimura Sunao 1, Hayashi Ken-ichi 2 |
| £’ |
11 |
Violet light generation by quasi-phase-matched
adhered ridge waveguide |
NIMS 1, Waseda Univ. 2, Sumitomo Osaka Cement Co.,Ltd.
3@*Tovstonog Sergey 1,Kurimura Sunao 1,2,Okubo Toru 1,2,Kou Rai 1,2,Nakajima
Hirochika 2,Motoya Masayuki 3,Ichikawa Junichiro 3 |
| |
12 |
High-power Single Pass Second Harmonics Generation
by Bulk Periodically Poled MgO doped LiNbO3 (2) |
Tohoku R&D Center, R&D Group, Ricoh Co. Ltd. 1,
Institute for Molecular Science 2 @Satoh Yasuhiro 1, Yasuhiro Higashi 1,Tsuyoshi
Suzudo 1, Hironobu Mifune 1, Hideki Ishizuki, Yoichi Sato 2, Takunori Taira
2 |
| |
13 |
Compact efficient high-power 1D-multi-transversal-mode
green laser using periodically-poled nonlinear crystal |
Sony Corp. CTDG 1@Michio Oka 1,*Kaoru Kimura 1,Yuki
Maeda 1,Koji Takahashi 1,Nobutake Iwase 1,Hitoshi Tamada 1 |
| ’ |
14 |
Lithium niobate nonlinear-optical wavelength converter
for hybrid silicon photonics |
National Inst. for Materials Science 1, Waseda
Univ. 2, Sumitomo Osaka Cement Co.,LTD. 3@*Okubo Toru 1,2, Kou Rai 1,2,
Kurimura Sunao 1, Nakajima Hirochika 2, Ichikawa Junichiro 3, Kondou Katsutoshi
3 |
| |
15 |
3-um band multi-wavelength generation using unequally
spaced multi-QPM LiNbO3 waveguide |
NTT Photonics Labs. 1@Asobe Masaki 1,Yanagawa Tsutomu
1,Tadanaga Osamu 1, Takeshi Umeki 1, Nishida Yoshiki 1, Magari Katsuaki
1,Suzuki Hiroyuki 1 |
| ’ |
16 |
Detection of multiple hydrocarbon gases by widely
tunable mid-IR laser light using apodized X(2) grating |
NTT Photonics Labs@*Takeshi Umeki 1,Masaki Asobe
1, Tsutomu Yanagawa 1, Osamu Tadanaga 1, Yoshiki Nishida 1, Katsuaki Magari,
Hiroyuki Suzuki 1 |
| |
17 |
Detection of a high-speed optical modulation signal
using difference frequency generation in periodically poled LiTaO3 |
Osaka Univ. 1@Hiroshi Murata1, Yasuyuki Okamura1 |
| |
18 |
Fabrication of GaP quasi phase matching waveguiding
wavelength converter |
Univ. Tokyo 1@*Matsushita Tomonori 1, Ohta Ikuma
1, Yukawa Tsuyoshi 1, Kondo Takashi 1 |
| ’ |
19 |
Design of quasi-phase-matched wavelength conversion
devices using semiconductor ring resonators |
Univ. Tokyo 1@*Ishikawa Hiroshi 1, Ohta Ikuma 1,
Kondo Takashi 1 |
| ’ |
20 |
Tunable Infrared Light Sources using QPM GaAs Waveguiding
Devices |
Univ. Tokyo@*Ikuma Ohta 1, Tomonori Matsushita
1, Junya Ohta 1, Wataru Narita 1, Takashi Kondo 1 |
|
5.4 Optical Processing |
| September 6 13:00`13:30 |
| 6p-N-@/ III |
| |
1 |
Young Scientist Award for the Presentation of an
Excellent Paper
cw pumped third harmonic generation in a PPMgLN disk resonator |
NICT 1@*Kiyotaka Sasagawa 1, Masahiro Tsuchiya
1 |
| |
2 |
Young Scientist Award for the Presentation of an
Excellent Paper
Crosstalk and Skew Evaluation of 4ch Graded-Index Polymer Optical Waveguide |
Keio Univ. 1@*Takeyoshi Yusuke 1, Ishigure Takaaki
1 |
| 5.5 Optical
Fibers |
| September 6 13:30`18:30 |
| 6p-N-@/ III |
| |
3 |
Estimation of BGS phase characteristics using properly
modulated probe light(2) |
National defense ac. 1@*Kim Jungmin 1, Oiwa Masaki
1, Tsuji Kenichiro 1, Onodera Noriaki 1, Saruwatari Masatoshi 1 |
| |
4 |
Characteristics of the Brillouin amplification
of a modulation probe light under the gain distribution |
National Defense Academy@*Tsuji Kenichiro 1, Kim
Jungmin 1, Oiwa Masaki 1, Onodera Noriaki 1, Saruwatari Masatoshi 1 |
| |
5 |
A 1.5Κm-region Active Birefringent Optical Fiber
Loop Filter using a 1.3Κm SOA as a Phase Shifter |
National Defense Academy@Onodera Noriaki 1,Tsuji
Kenichiro 1,Kim Jungmin 1,Oiwa Masaki 1,Saruwatari Masatoshi 1 |
| |
6 |
Supercontinuum generation applicable to ultrafast
information and communications technology |
Nat. Inst. Inf. Comm. Tech. 1@*Sotobayashi Hideyuki
1 |
| |
7 |
Dependence of amplitude modulated OFRR output spectrum
ratio on nonlinear refractive index |
Ibaraki Univ. 1@*Kanbe kazushige 1,Imai Yoh 1 |
| |
8 |
Ion concentration dependence on energy transfer
between Tb3+ and Yb3+ co-doped in silicate glasses |
Toyota Technological Inst. 1, Toyota Central R&D
Labs., Inc. 2@*Tatsuya Yamashita 1,2, Yasutake Ohishi 1 |
| ’ |
9 |
All-Optical Clock Extraction Based on the Temporal
Talbot Effect Using LCFBG |
National Defense Academy 1@*Masaki Oiwa 1, Jungmin
Kim 1, Kenichiro Tsuji 1, Noriaki Onodera 1, Masatoshi Saruwatari 1 |
| ’ |
10 |
Ultra-flat optical comb generation using asymmetrically
push-pull driven MZM |
NICT 1@Sakamoto Takahide 1, Kawaishi Tetsuya 1,
Izutsu Masayuki 1 |
| |
|
Break 15:30`15:45 |
|
| ’ |
11 |
Photoluminescence of semiconductor colloidal quantum
dots in the photonic bandgap fiber |
Toyota Technological Inst. 1, IIS Univ. of Tokyo
2, NTT Basic Research Labs. 3 Mitsubishi Cable Industry 4@*Ohmori Masato
1,2, Kawanishi Satoki 3, Tanaka Masatoshi 4, Sakaki Hiroyuki 1,2 |
| |
12 |
Study of air hole controlling in high-nonlinear
photonic crystal fiber using CO2 laser irradiation |
Ibaraki Univ. 1@*Yashima Hirotomo 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
13 |
Suppression of connection loss between photonic
bandgap fiber and single mode fiber |
Ibaraki Univ.1@*Sakasai kazuhiro 1, Yokota Hirohisa
1, Sasaki Yutaka 1, |
| |
14 |
Study of tapered photonic crystal fiber attenuator
using CO2 laser irradiation |
Ibaraki Univ. 1 @*Ushiroda Kousuke 1, Yokota Hirohisa
1, Sasaki Yutaka 1 |
| |
15 |
Study of fiber connection between PANDA fiber and
polarization maintaining photonic crystal fiber using coupler fabrication |
Ibaraki Univ. 1@*Nakajima Yuu 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
16 |
Design of grating in super structure fiber grating
coupler for all optical switching |
ibaraki univ.1@*=Fukuda Seiji 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
17 |
SOA-type multi-wavelength ring laser for use in
FBG vibration sensor array |
National Defense Academy 1@*Tanaka Satoshi 1, Somatomo
Hiroyuki 1, Yokosuka Hiroki 1, Takahashi Nobuaki 1 |
| |
18 |
Fiber optic vibration measurement using long period
fiber grating and intensity modulation method |
National Defense Academy 1@*Somatomo Hiroyuki 1
, Tanaka Satoshi 1, Yokosuka Hiroki 1, Takahashi Nobuaki 1
|
| |
19 |
Impulse response simulation of large core GI-POFs
by the finite-element method |
Keio Univ. 1,JST ERATO-SORST 2@*Kazuma Nehashi
1,2, Satoshi Takahashi 2, Yasuhiro Koike 1,2 |
| |
20 |
Novel Dopants added Thermally Stable Graded Index
Plastic Optical Fibers |
Keio Univ. 1, JST ERATO-SORST 2@*Yamaki Yasushi
1,2, Hirose Ryoma 1, Kondo Atsushi 1,2, Takahashi Satoshi 2, Koike Yasuhiro
1,2 |
| |
21 |
Optical Property of Pure Silica Core Optical Fibre
under High Temperature Enviroment |
Tohoku Univ. 1, IMR Tohoku Univ. 2@Shuhei Kondo
1, Bun Tsuchiya 2, Shinji Nagata 2, Tatsuo Shikama 2 |