| 5 Optoelectronics |
| 5.1 Semiconductor
Lasers and Light Emitting Devices |
| August 29 (Tue.) |
| 29a-ZT-@/ III |
| |
|
Short
Presentation (5min.) 9:00`11:45
29a-ZT-1`28@Poster Session 13:00`15:00 |
| |
1 |
Polarization-insensitive 8-ch semiconductor optical
amplifier array with high saturation output power |
Fujitsu Ltd. 1,Fujitsu Laboratories Ltd. 2@Shinsuke
Tanaka 1,Shuichi Tomabechi 2,Ayahito Uetake 1,Mitsuru Ekawa 2,Ken Morito
1 |
| |
2 |
High-power near-diffraction-limited tapered laser
amplifier |
Information Technology R&D Center Mitsubishi Electric
Corp. 1, High frequency & Optical Device Works Mitsubishi Electric Corp.
2@*Kiyohide Sakai 1, Naoyuki Shimada 2, Kimitaka Shibata 2, Yoshihiko Hanamaki
2, Masao Imaki 1, Tetsuya Yagi 2, Yoshihito Hirano 1 |
| |
3 |
Ring and axis mode switching in GaAs multi-electrode
quasi-stadium laser diodes |
Okayama Pref. Univ. 1,ATR Wave Engineering Labs.
2@*Fujiwara Takeshi 1,Fukushima Takehiro 1,2,Harayama Takahisa 2 |
| |
4 |
Lowest order ring mode lasing in GaAs confocal
quasi-stadium laser diodes |
Okayama Pref.Univ. 1,ATR Wave Engineering Labs.
2@Murakami Noboru 1,Fukushima Takehiro 1,2,Harayama Takahisa 2 |
| |
5 |
High temperature continuous wave operation of membrane
BH-DFB laser |
Quantum Nanoelectronics Research Center, Tokyo
Inst. of Technology1, JST-CREST2.@*Shinichi Sakamoto1, Hideyuki Naitoh1,
Hiroyuki Kawashima1, Yoshifumi Nishimoto1, Shigeo Tamura1,Takeo Maruyama1,2
and Shigehisa Arai1,2 |
| ’ |
6 |
Low threshold operation of short cavity membrane
BH-DFB laser with surface corrugation grating |
Quantum Nanoelectronics Research Center, Tokyo
Inst. of Technology1, JST-CREST2@*Shinichi Sakamoto1, Hideyuki Naitoh1,
Hiroyuki Kawashima1, Shigeo Tamura1,Takeo Maruyama1,2 and Shigehisa Arai1,2 |
| ’ |
7 |
1-step OMVPE Grown Strongly Index-Coupled Membrane
DFB Laser with Surface Corrugation Grating Structure |
Quantum Nanoelectronics Research Center,Tokyo Inst.
of Technology 1,JST-CREST 2@*Hideyuki Naitoh 1,Shinichi Sakamoto 1,Hiroyuki
Kawashima 1,Yoshifumi Nishimoto 1, Shigeo Tamura 1,Takeo Maruyama 1,2,Shigehisa
Arai 1,2 |
| ’ |
8 |
Temperature Dependence of GaInAsP/InP DFB Lasers
with Wirelike Active Regions Incorporating Bragg Wavelength Detuning |
Tokyo Tech 1, JST-CREST 2@*Nishimoto Yoshifumi
1, Plumwongrot Dhanorm 1, Tamura Yosuke 1, Maruyama Takeo 1,2, Arai Shigehisa
1,2 |
| ’ |
9 |
Threshold Current Reduction of Distributed Reflector
(DR) Laser after Antireflection Coating |
Tokyo Tech 1, JST-CREST 2@*SeungHun LEE 1, Saeed
Mahmud ULLAH 1, Ryo SUEMITSU 1, Shigehisa ARAI 1,2 |
| £’ |
10 |
A Low Threshold Current Operation of Distributed
Reflector (DR) Laser |
Tokyo Tech 1, JST-CREST 2
@*Ullah Saeed Mahmud 1, Suemitsu Ryo 1, Lee SeungHun 1, Shigehisa Arai 1,2 |
| |
11 |
1.55-μm-Wavelength AlGaInAs λ/4-shift-DFB
Semi-Insulating Buried-Heterostructure Lasers |
Fujitsu Labs. 1@*Tsuyoshi Yamamoto 1, Kan Takada
1, Manabu Matsuda 1, Shigekazu Okumura 1, Suguru Akiyama 1, Mitsuru Ekawa
1 |
| ’ |
12 |
Low-Drive-Current 10-Gb/s Operation of AlGaInAs
Buried-Heterostructure λ/4-Shifted DFB Lasers |
Fujitsu Laboratories Ltd. 1@* Takada Kan 1,Matsuda
Manabu 1,Okumura Shigekazu 1,Ekawa Mitsuru 1,Tsuyoshi Yamamoto 1 |
| |
13 |
Highly reliable operation of InGaAlAs-MQW lasers
butt-jointed with InGaAsP DBR |
Hitachi 1@*Shinoda Kazunori 1, Kitatani Takeshi
1, Makino Shigeki 1, Aoki Masahiro 1 |
| |
14 |
Coupling coefficient dependence on oscillation
frequency stability of self-pulsating DFB laser diodes |
Advanced Technology R&D Center Mitsubishi Electric
Corp. 1, OITDA 2@*Satoshi Nishikawa 1,2, Mitsunobu Gotoda 1,2 Tetsuya Nishimura
1,2 Yasunori Tokuda 1,2 |
| |
15 |
GaInAsP/InP Membrane DFB Laser on SOI Substrate
by Direct Wafer Bonding Method |
Tokyo Tech 1, JST-CREST 2 @*Maruyama Takeo 1,2,
Okumura Tadashi 1, Sakamoto Shinichi 1, Arai Shigehisa 1,2 |
| |
|
Break 10:15`10:30 |
|
| |
16 |
Multi-wavelength Mux/Demultiplexer using Tapered
Bragg Reflector Waveguide |
Tokyo Tech.@Kitabayashi Naoto1,Koyama Fumio1 |
| |
17 |
Fabrication of Hybrid-Integrated Tunable Hollow
Waveguide DBR Laser and its Athermal and Tuning Characteristics |
Microsystem Research Center, P&I Lab.,Tokyo Tech.@Hideaki
Yamakawa 1, Fumio Koyama 1 |
| |
18 |
Novel wavelength tunable DFB-LD with high coupling
coefficient gratings |
NTT Photonics Lab.@*Nunoya Nobuhiro 1, Shibata
Yasuo 1, Ishii Hiroyuki 1, Okamoto Hiroshi 1, Kawaguchi Yoshihiro 1, Kondo
Yasuhiro 1, Oohashi Hiromi 1, Kato Kazutoshi 1 |
| |
19 |
Tunable distributed amplification (TDA) DFB laser
array with a tuning range of 39.5 nm |
Fujitsu Laboratories@Takabayashi Kazumasa, Sekiguchi
Shigeaki, Hayakawa Akinori, Tomabechi Shuichi, Uetake Ayahito, Kuwatsuka
haruhiko |
| |
20 |
Over 100-mW Operation of Full C-Band External Cavity
Wavelength Tunable Laser |
System Devices Research Labs., NEC Corp. 1@*Sudo
Shinya 1, Mizutani Kenji 1, Okamoto Takeshi 1, Tsuruoka Kiyotaka 1, Nielsen
Mads 1, Sato Kenji 1, Kudo Koji 1
|
| |
21 |
Wavelength Control of LD using a Liquid-Crystal
Device(LCD) |
Shonan Inst.Tech.@*Xu Liang 1,Kengo Murasawa 1,Takehiko
Hidaka 1 |
| £ |
22 |
Polarization Control of 0.85 Κm VCSELs using Metal
Nano-structures |
Tokyo Tech. 1@P. Babu Dayal 1, Jiro Hashizume 1,
Fumio Koyama 1 |
| £ |
23 |
Polarization control of 1.15 Κm single-mode VCSELs
using auto-cloned photonic crystal polarizers |
Tokyo Tech. 1, Photonic Lattice 2 @P. Babu Dayal
1, T. Kawashima 2, N. Kitabayashi 1, T. Miyamoto 1, F. Koyama 1 and S. Kawakami
2 |
| |
24 |
Multi-wavelength Vertical Cavity Surface Emitting
Laser Array on the Patterned Substrate using Dry Etching |
Tokyo Tech.@*Naoto Kitabayashi1,Akihiro Matsutani1,Fumio
Koyama1 |
| |
25 |
Development of short-wavelength(<5Κm) quantum cascade
lasers with strained QW structure |
Hamamatsu Photonics 1@*Edamura Tadataka 1,Akikusa
Naota 1,Sugiyama Atsushi 1,Ochiai Takahide 1,Fujita Kazuue 1,Yamanishi Masamichi
1, Kan Hirofumi 1 |
| |
26 |
Relative intensity noise (RIN) of quantum cascade
lasers |
Ritsumeikan Univ. 1, Central Res. Labs., Hamamatsu
Photonics KK2@Youhei Takagi 1, Naoki Kumazaki 1, *Kenichi Kasahara 1, Naohiro
Akikusa 2,Tadataka Edamura 2 |
| |
27 |
Laser characteritics of InAs/AlGaSb superlattice
quantum cascade lasers |
RIEC Tohoku Univ. 1, JST-PRESTO 2, AsahiKASEI EMD
3@Ohtani Keita 1,2, Moriyasu Yoshitaka 1,3, Ohnishi Hidekazu 1, Ohno Hideo
1 |
| |
28 |
Laser characteristics of InAs/AlSb quantum cascade
lasers operating at 5µm wavelength region (2) |
RIEC Tohoku Univ. 1, AsahiKASEI EMD 2, JST-PRESTO
3@Moriyasu Yoshitaka 1 2,Ohtani Keita 1 3,Ohnishi Hidekazu 1,Ohno Hideo
1 |
| 5.1 Semiconductor
Lasers and Light Emitting Devices |
| August 30 (Wed.) |
| 30a-ZT-@/ III |
| |
|
Short Presentation (5min.) 9:00`10:20
30a-ZT-1`16@Poster Session 13:00`15:00 |
| |
1 |
High-power 200 mW blue-violet laser diodes with
high-temperature operation |
SANYO Electric Co.,Ltd. 1@*Inoue Daijiro 1,Kano
Takashi 1,Tsutomu Yamaguchi 1,Hata Masayuki 1,Bessho Yasuyuki 1,Nomura Yasuhiko
1,Shono Masayuki 1 |
| |
2 |
Proton Radiation Effects in Semiconductor Lasers
(I) Infrared & Red High Power Lasers |
Fukui Univ.of Technol. 1, Wakasawan Energy Res.
Center 2, Hamamatsu Photonics 3 @*Tsutsumi Hiroyuki 1, Gonda Shun-ichi 1,
Ito Yoshifumi 2, Morita Takenori 3, Makino Takamitsu 3, Kan Hirofumi 3 |
| |
3 |
Proton Radiation Effects in Semiconductor Lasers
(II) Violet Lasers |
Fukui Univ. of Technol. 1, Wakasawan Energy Res.
Center 2, Nichia Corporation 3@*Gonda Shun-ichi 1, Tsutsumi Hiroyuki 1,
Ito Yoshifumi 2, Mukai Tkashi 3, Nagahama Shin-ichi 3 |
| |
4 |
Highly reliable operation of 660nm laser diodes
for POF data links I |
Fuji Photo Film@*Mukai Atsushi 1,Ohgoh Tsuyoshi
1,Mukaiyama Akihiro 1,Asano Hideki 1,Hayakawa Toshirou 1 |
| |
5 |
Highly reliable operation of 660nm laser diodes
for POF data links II |
FUJIFILM 1@Tsuyoshi Ohgoh 1, Atsushi Mukai 1, Akihiro
Mukaiyama 1, Hideki Asano 1, Toshiro Hayakawa 1 |
| |
6 |
Lasing Properties of Broad-Area Laser Diodes under
Pulsed Operation |
CTDG, Sony Corporation@*Asatsuma Tsunenori 1, Furukawa
Akio 1, Takiguchi Yoshiro 1, Frederico Sebastien 1, Dollfus Hadrien 1, Hirata
Shoji 1 |
| |
7 |
Fablication of Sb-based quantum dots for Silicon-based
nano-light-emitter |
NICT 1@*Yamamoto Naokatsu 1, Akahane Kouichi 1,
Gozu Shin-ichirou 1, Ueta Akio 1, Tsuchiya Masahiro 1 |
| |
8 |
FCA-limited gain of an injection pumped Si-based
SOA with GaSb quantum dots embedded in the active region |
Graduate School of Arts and Sciences, The Univ.
of Tokyo 1, PRESTO JST 2@Yasuhara Nozomu 1, Jo Masafumi 1, Tanaami Norishige
1, Kawamoto Kiyoshi 1, Fukatsu Susumu 1 2 |
| |
9 |
Triggered light pulses from spatially separated
electron-hole pairs in a strained Si1-XGeX/Si single
quantum well |
Graduate School of Arts and Sciences, The Univ.
of Tokyo 1, PRESTO JST 2@Yasuhara Nozomu 1, Fukatsu Susumu 1 2 |
| |
10 |
Numerical analysis of detuning effect on characteristics
of quantum dot lasers |
NTT Photonics Labs. 1, NCRC, Univ. of Tokyo 2@*Kakitsuka
Takaaki 1, Saito Toshio 2, Arakawa Yasuhiko 2 |
| |
11 |
Characteristics of 1.3 Κm QD Laser with high density
and high uniformity QD |
AIST 1, Tsukuba Technology 2@*Takeru Amano 1, Shigenori
Aoki 12, Takeyoshi Sugaya 1, Kazuhiro Komori 1, Yoshitaka Okada 2 |
| |
12 |
Fabrication of mid – far infrared PbTe semiconductor
laser and applications: non-destructive evaluations of Si crystals |
Dep.MS&E, Graduate School of Eng., Tohoku Univsity
1,Semiconductor Research Institute of Semiconductor Research Foundation2@*Yoshikazu
Kato 1,Arata yasuda 1,Ikuo Tanabe 1,Yutaka Oyama 1, Ken Suto 2,Jun-ichi
Nshizawa 2 |
| |
13 |
Fabrication of mid – far infrared PbTe semiconductor
laser and application to bio-imaging |
Dep.MS&E, Graduate School of Eng., Tohoku Univsity
1,Semiconductor Research Institute of Semiconductor Research Foundation2@*Yoshikazu
Kato 1,Arata yasuda 1,Ikuo Tanabe 1,Yutaka Oyama 1, Ken Suto 2,Jun-ichi
Nshizawa 2
|
| |
14 |
Temperature characteristics of highly strained
MQW laser on InGaAs ternary substrate |
NTT Photonics Laboratories 1, JAXA 2@*Masakazu
Arai 1, Takao Watanabe 1, Masahiro Yuda 1,Kyoichi Kinoshita2, Yasuyuki Ogata
2, Shinichi Yoda 2, Yasuhiro Kondo 1 |
| ’ |
15 |
1.3Κm low threshold GaInNAs triple quantum well
laser diodes for high speed operation |
Hitachi CRL@Adachi Koichiro 1, Nakahara Kouji 1,
Kasai Junichi 1, Kitatani Takeshi 1, Tsuchiya Tomonobu 1, Aoki Masahiro
1 |
| |
16 |
GaInNAs DFB laser with GaAs grating |
Sumitomo Electric Industries 1, OITDA 2@*Koyama
Kenji 1,2, Hashimoto Jun-ichi 1,2, Ishizuka Takashi 1,2, Tsuji Yukihiro
1, Yamada Takashi 1,2, Fujii Kousuke 1, Katsuyama Tsukuru 1,2 |
| 5.2 Optical
Detection |
| August 31 (Thu.) 10:00`11:30 |
| 31a-ZT-@/ III |
| |
1 |
Characterization of electron structure and chemical
bond nature of CdS/Ga-rich CIGS interfaces |
Kagoshima Univ. 1, AIST 2@Teshima Shimpei 1, Kashiwabara
Hirotake 1, Hayase Youhei 1, Masamoto Keimei 1,
Odahara Yousuke 1, Obara Kouzou 1, Okuda Tetsuji 1, Sakurai Keiichirou 2,
Yamada Akimasa 2, Ishizuka Shougo 2, Matsubara Kouji 2, Niki Shigeru 2,
Terada Norio 1.2 |
| |
2 |
Fabrication of sub-millimeter detector using ultra-high
pure GaAs film grown by liquid phase epitaxy for astronomical observation(5) |
Tokai Univ. 1,JAXA/ISAS 2,Jasco Opt Co.Ltd 3@*Ueno
Maki 1,Watanabe Kentaroh 2,Kitagawa Hidekazu 1,Wakaki Moriaki 1,Murakami
Hiroshi 2,Abe Osamu 3 |
| |
3 |
Buried structure pin-PD with high microwave output
power |
High Frequency & Optical Device Works, Mitsubishi
Electric Corp. 1@*Eitaro Ishimura 1, Masaharu Nakaji 1, Chikara Watatani
1, Toru Ota 1, Toshitaka Aoyagi 1 and Takahide Ishikawa 1 |
| |
4 |
High humidity resistance of Mesa-type InAlAs Avalanche
Photodiodes |
NEC System Devices Res. Labs. 1,NEC R&D Support
Center 2@*Mizuki Emiko 2,Shiba Kazuhiro 1,Watanabe Sawaki 1,Nakata Takeshi
1,Makita Kikuo 1 |
| |
5 |
Metal-Semiconductor-Metal Photodiode on spatter-deposited
SiGe on SOI Substrate |
Kanazawa Univ. 1@*Kawasaki Sho 1,Matoba Akinari
1,Sasaki Kimihiro 1,Iiyama Koichi 1 |
| |
6 |
Photocurrent characteristics of a Ge/Si hiterojunction
Photodiode |
Kochi Univ. Tech 1@*Miyaji Masayuki 1, Kanbe Hiroshi
1 |
| 5.3 Optical
Storage |
| August 31 (Thu.) 14:00`18:00 |
| 31p-ZX-@/ III |
| |
1 |
Super-resolution readout simulation of ROM disc
based on temperature distribution
|
CAN-FOR AIST 1
@*Yuzo Yamakawa 1, Kazuma Kurihara 1, Takayuki Shima 1, Masashi Kuwahara
1, Osamu Suzuki 1, Takashi Nakano 1, Junji Tominaga 1
|
| |
2 |
Thermal simulation including temperature dependence
of properties for optical disc material II
|
CAN-FOR AIST 1, NMIJ AIST 2
@*Yuzo Yamakawa 1, Masashi Kuwahara 1, Osamu Suzuki 1, Naoyuki Taketoshi
2, Takashi Yagi 2, Kazuma Kurihara 1, Takayuki Shima 1, Takashi Nakano 1,
Tetsuya Baba 2, Junji Tominaga 1
|
| |
3 |
A study using Sb/Te stacking layers for super-resolution
readout |
AIST 1@*Shima Takayuki 1, Nakano Takashi 1, Tominaga
Junji 1 |
| |
4 |
Measurement of thermal conductivity for Sb-Te alloys |
AIST CAN-FOR 1, NMIJ 2 @Masashi Kuwahara 1, Osamu
Suzuki 1, Takashi Yagi 2, Naoyuki Taketoshi 2, Yuzo Yamakawa 1, Toshio Fukaya
1, Junji Tominaga 1, Tetsuya Baba 2
|
| |
5 |
Specific heat capacity at high temperature for
optical disk |
AIST CAN-FOR 1, NMIJ 2@Osamu Suzuki 1, Masashi
Kuwahara 1, Yuzo Yamakawa 1, Naoyuki Taketoshi 2, Takashi Yagi 2, Toshio
Fukaya 1, Tetsuya Baba 2, Junji Tominaga 1 |
| ’ |
6 |
Overwrite characteristics of an AgOx type super-RENS
optical disk |
Ritsumei Univ. 1@*Tamura Naoyoshi 1, Ukita Hiroo
1 |
| ’ |
7 |
Thermal Diffusivity Measurement of Ge-Sb-Te Thin
Films Using Thermoreflectance Method (2) |
Aoyama Gakuin Univ. 1, AIST 2 @*Watanabe Hiroshi
1, Yagi Takashi 2, Taketoshi Naoyuki 2, Baba Tetsuya 2, Miyamura Amika 1,
Sato Yasushi 1, Shigesato Yuzo 1 |
| |
8 |
The Transient Characteristics of Coloring Tungsten-oxide
Film for Optical Recording |
Japan Broadcasting Corporation 1@Sato Ryuji, Sasaki
Kentaro, Kawamura Norikazu, Tokumaru Haruki |
| |
|
Break 16:00`16:15 |
|
| |
9 |
Statistical analysis method for life expectancy
of optical disk (1) |
Osaka Sangyo Univ. 1, Kansai Univ. 2, T.KUBO Eng.
Office 3 @Mitsuru IRIE 1, Jyunichi NISHIKI 1, Kenichi NAKATANI 1, Yoshihiro
OKINO 2,Takahiro KUBO 3 |
| ’ |
10 |
Polarization sensitive reading method for high
density data storage |
Keio Univ. 1, KAST 2@*Yasui Toshifumi 1, Saiki
Toshiharu 1 2 |
| |
11 |
Focusing of Gaussian beam by nonlinear refractive
index material and its application to high-density optical recording disk
-- Simulation |
Setsunan Univ. 1, Kitasato Univ. 2, Osaka Prefecture
Univ. 3@*Ohke Shigeaki 1, Umeda Tokuo 2, Wada Kenji 3, Horinaka Hiromichi
3, Cho Yoshio 3 |
| ’ |
12 |
Fabrication of Thin-Film Diarylethene Layer and
High-Accuracy Evaluation of Optical Properties by Spectral Photometer with
Front Monitor for Super-Multilayered Optical Memory |
AV Core Technology Development Center, Matsushita
Electric Ind. Co., Ltd. 1@*Mihara Takashi 1, Nishino Seiji 1, Shiono Teruhiro
1 |
| |
13 |
Optical Noise Reduction for Coaxial Holographic
Data Storage Systems |
Corporate Research Group Fuji Xerox 1@*Yasuda Shin,
Ogasawara Yasuhiro, Minabe Jiro, Kawano Katsunori, Furuki Makoto, Hayashi
Kazuhiro, Haga Koichi and Yoshizawa Hisae |
| |
14 |
The method of calculation using differentiation
for detecting@displacement of retrieved holographic memory images |
Sharp Corp. Advanced Technology Res. Lab. 1@*Hayashi
Tetsuya 1, Okumura Tetsuya 1, Akiyama Jun 1, Maeda Shigemi 1, Murakami Yoshiteru
1 |
| ’ |
15 |
Calculation of reconstructed images for the Collinear
Holographic Storage System with phase mask |
IIS Univ. of Tokyo 1,OPTWARE Corp. 2@*Ashizuka
Yasushi 1,Shimura Tsutomu 1,Fujimura Ryushi 1,Kuroda Kazuo 1,Tan Xiodi 2,Horimai
Hideyoshi 2 |
| 5.4 Optical
Processing |
| August 29 (Tue.) 9:00`17:30 |
| 29a-ZX-@/ III |
| |
1 |
Mode-Selective Property on Leaky Waveguide Structure
through Ultra-Low Refractive Index Ultra-Thin Film Layer |
Setsunan Univ. 1, Kitasato Univ. 2, Quantum Phase
Lab. 3@*Ohke Shigeaki 1, Umeda Tokuo 2, Cho Yoshio 3 |
| |
2 |
All-optical analog-to-digital conversion with bitwise
signal allocation using spatial coding filter |
Osaka Univ. 1@Takashi Nishitani 1, Tsuyoshi Konishi
1, Kazuyoshi Itoh 1 |
| |
3 |
Demonstration of interferometric waveguide optical
isolator with a unidirectional magnetic field |
Graduate School of Sci. and Eng., Tokyo Inst. of
Tech. 1, OITDA 2@Yazaki Yoshihiro 1, Shoji Yuya 1, Mizumoto Tetsuya 1,2 |
| ’ |
4 |
Wideband operation of Mach-Zehnder interferometric
optical isolator using phase adjustment |
Tokyo Inst. of Tech. 1, CREST-JST@*Yuya Shoji 1,
Tetsuya Mizumoto 1 2 |
| |
5 |
Coupling characteristics of three-guide tapered
coupler for optical isolator with Si guiding layer |
Shibaura Inst. of Technol. 1, Tokyo Inst. of Technol.
2 @Hideki Yokoi 1, Yuya Shoji 2, Naoki Nishimura 1, Takuya Suzuki 1, Tetsuya
Mizumoto 2
|
| |
6 |
Demonstration of semi-leaky optical isolator |
Tokyo Inst. Tech. 1@*Tetsuya Mizumoto 1, Hideki
Saito 1, Ryohei Takei 1 |
| |
7 |
Output light switching by A Si-waveguide Mach-Zehnder
Interferometer having a ferro-electric liquid crystal cladding |
Kanagawa Institute of Technology@Toyokazu Sasaki
1,Katsumi Nakatsuhara 1,Takakiyo Nakagami 1 |
| |
8 |
Propagation Characteristic of Nonlinear Optical
Waveguide Device Using Carbon Nanotube-Polyimide Composite Material |
AIST 1, TokyoUniv.Sci. 2@*Oomuro Toshiyuki 1,2,
Kaji Ryousaku 1, Matsuzaki Shun1,2, Itatani Tarou 1, Itoga Emiko 1, Kataura
Hiromichi 1, Yamashita Masafumi 2, Sakakibara Youichi1,2 |
| |
|
Break 11:30`11:45 |
|
| |
9 |
Refractive index change of silica waveguide films
irradiated by synchrotron radiation@(II) |
Grad. school of sci. & Tech. Kobe Univ. 1, LASTI
Univ. of Hyogo 2, NTT Photonics Labs. 3@*Nakamura Akihiro 1,Moriwaki Kazuyuki
1,Inoshita Takayuki 1,Kanda Kazuhiro 2,Matsui Shinji 2,Watanabe Kei 3 |
| |
10 |
Vertically Y-Branched Mode Splitter for Intra-Board
Optical Interconnects with Wavelength-Division-Multiplexing |
Kyoto Inst. Tech. 1, AIST 2@Satoshi Yamaguchi 1,
Takayuki Kobayashi 1, Yasuhiro Awatsuji 1, *Shogo Ura 1, Kenji Kintaka 2 |
| |
11 |
Multi-channel-integrated WDM coupler using high-’
SiON waveguides |
NEC System Platforms Research Lab. 1, R&D Suppot
Center 2, OITDA 3@*Yukari Deki 1,3, Tsuyoshi Takeuchi 1,3, Sekizen Takaesu
2,3, Ichiro Ogura 1,3 |
| |
12 |
Reversal of UV sensitivity of SiON film by thermal
annealing and selective trimming of microring resonator |
Yokohama Nat'l Univ. 1@Ueno Satoshi 1, *Tatewaki
Takashi 1, Kokubun Yasuo 1 |
| |
|
Lunch 12:15`13:15 |
|
| 29p-ZX-@/ III |
| |
1 |
Response time of optical waveguide switch based
on liquid movement driven by electrostatic force |
Yokohama Nat'l Univ. 1@*Takuji Ikemoto 1, Yasuo
Kokubun 1 |
| £ |
2 |
Micromachined resonant-cavity photodetectors with
low temperature dependence |
Precision and Intelligence Laboratory, Tokyo Institute
of Technology 1
Corning Incorporated 2@Janto Wiganes 1, Hasebe Koichi 1, Nishiyama Nobuhiko
2, Caneau C. 2, Sakaguchi Takahiro 1, Matsutani Akihiro 1, Koyama Fumio
1, and Zah C.E. 2 |
| |
3 |
Coupling efficiency control of vertically coupled
microring resonator filter by micro-actuator |
Yokohama Nat'l Univ. 1@Sekiguchi Go , *Kobayashi
Naoki 1, Kokubun Yasuo 1 |
| £ |
4 |
Optical filters with a narrow linewidth and a wide
tunable range |
Tohoku Univ. 1@*Ye Jia-Sheng 1, Kanamori Yoshiaki
1, Hu Fang-Ren 1, Hane Kazuhiro 1 |
| ’ |
5 |
Development of comb drive actuator for nano-photonic
devices |
Tohoku Univ. 1@*Kazunori Takahashi 1, Yoshiaki
Kanamori 1, Kazuhiro Hane 1 |
| |
6 |
Fabrication of electro static micro mirror devices
using aluminum thin films |
Ritsumeikan University Faculty of Science and Engineering1,
Dainippon Screen Mfg.Co.,Ltd@2@Ryohei Hamazaki 1, Kazuhiko Asada 2@,Katsuhiko
Tanaka 3, Susumu Sugiyama 4 |
| |
7 |
Tuning Performance of Si Bragg Gratings on SOI
Rib Waveguides by Themooptical Effect |
Waseda Univ. School of Science and Engineering
1,
Waseda Univ. NanoTechnology Research Center 2@*Soichiro Honda 1, Jyunya
Matsui 1, Zhigang Wu 1, Katsuyuki Utaka 1, Tomohiko Edura 2, Masahide Tokuda
2, Ken Tsutsui 2, Yasuo Wada 2 |
| |
8 |
Short optical pulse formation by Si wire waveguide |
NTT MI Labs.@*Fukuda Hiroshi 1, Yamada Koji 1,
Tsuchizawa Tai 1, Watanabe Toshifumi 1, Itabashi Sei-ichi 1 |
| |
9 |
Compact Multi-Mode Optical Ring Resonators for
Interconnection on Si Chips |
Hiroshima Univ. 1@*Tanushi Yuichiro 1, Yokoyama
Shin 1 |
| |
10 |
Upconversion emission from ErSiO superlattice crystal
waveguide |
Univ. of Electro-Communications 1@*Ushiyama Tomoyuki
1, Isshiki Hideo 1, Kimura Tadamasa 1 |
| |
|
Break 16:15`16:30 |
|
| |
11 |
Input Laser Intensity Dependence of Optical Bistability
of Optical Qusi-waveguide Prepared with Composite Thin Film |
Aichi Inst. of Tech. 1 @*Koji Isogai 1, Shizuyasu
Ochiai 1, Goro Sawa 1, Yoshiyuki Uchida 1, Kenzo Kojima 1, Asao Ohashi 1,
Teruyoshi Mizutani 1 |
| |
12 |
Fabrication of Optical Waveguides with Photo-refractive
Sol-Gel Materials |
Tokyo Univ. of Technology
Nissan Chemical Industries@*Matsumoto Kotaro 1, Arai Yukihiko 1, Yoshimura
Tetsuzo 1, Asama Kunihiko 1, Nawata Hideyuki 2, Abe Toyohiko 2 |
| |
13 |
Analysis of Self-Organized Lightwave Network with
PR material for Nano Optical ICfs by FDTD |
Tokyo Univ. of Technology@*Kaburagi Hiroshi 1,
Yoshimura Tetsuzo 1, Arai Yukihiko 1, Asama Kunihiko 1 |
| |
14 |
A study on optical waveguide using polyethylene
terephthalate |
Kanazawa Univ. 1@Takamura Toshihiro,Yamagishi Tadaaki,Iiyama
Koichi |
| ’ |
15 |
Evaluation of optical signal transmission with
self-written waveguide in photosensitive polyimide |
Kyoto Inst 1,NITTO DENKO 2@*Kitanobo Akira 1,Yamashita
Kenichi 1,Oe Kunishige 1,Hikita Takashi 2,Naitou Ryusuke 2,Mune Kazunori
2 |
| |
16 |
New Opto/Electro Printed Circuit Board with Polynorbornene
Optical Waveguide |
Sumitomo Bakelite co.,ltd. 1, Tohoku Univ.,2@*Fujiwara
Makoto 1, Shirato Yoji 1, Owari Hiroshi 1, Watanabe Kei 1, Matsuyama Mutsuhiro
1, Takahama Keizo 1, Mori Tetsuya 1, Miyao Kenji 1, Choki Koji 1, Fukushima
Takafumi 2, Tanaka Tetsu 2, Koyanagi Mitsumasa 2 |
| 5.4 Optical
Processing |
| August 30 (Wed.) 10:00`19:15 |
| 30a-ZX-@/ III |
| ’ |
1 |
Ultrafast optical response in Ι=1.55 Κm II-VI-based
intersubband transition optical switch waveguide |
Tokyo University of Science.1,National Institute
of
Advanced Industrial Science and Technology.2
@Kazumichi Akita 1,2, Ryoichi Akimoto 2, Toshifumi Hasama 2,Hiroshi Ishikawa
2, Yoshifumi Takanashi 1 |
| |
2 |
10-Gb/s wavelength conversion using cross phase
modulation in InGaAs/AlAsSb quantum well intersubband transition |
AIST 1,Central Res. Lab. Hitachi 2@Tsuchida Hidemi
1,Shimoyama Takasi 1,Kasai Jun-ichi 2,Mozume Teruo 1,Nagase Masanori 1,Ishikawa
Hiroshi 1 |
| |
3 |
Mechanism of TE light phase modulation by TM gate
pulse in InGaAs/AlAs/AlAsSb intersubband transition switch |
AIST 1, NICT 2@*Ishikawa Hiroshi 1, Tsuchida Hidemi
1, Abedin Kazi Sawar 2, Simoyama Takashi 1, Mozume Teruo 1, Nagase Masanori
1, Toshifumi Hasama 1 |
| |
4 |
Theoretical Estimation of Intersubband Electron
Energy Relaxation Rate in InN/AlInN Quantum Well Structures |
Dept. of Eng.,Chiba Univ. 1, VBL,Chiba Univ. 2,
JST-CREST,Chiba Univ. 3@*Jonishi Akihiro 1,Ishitani Yoshihiro 1 2 3,Terashima
Wataru 1 3,Che Song-Bek 1 2 3,Yoshikawa Akihiko 1 2 3 |
| ’ |
5 |
Fabrication of AlN-based waveguides by ICP etching
and ISBT absorption measurements |
Univ. of Tokyo 1, RCAST 2, JST 3, Toshiba 4@*Toshimasa
Shimizu 1,3, Chaiyasit Kumtornkittikul 1,3, Norio Iizuka 4, Nobuo Suzuki
4, Masakazu Sugiyama 1,3, Yukihiro Shimogaki 1,3, Yoshiaki Nakano 2,3 |
| |
|
Break 11:15`11:30 |
|
| |
6 |
Evaluation of Two Photon Absorption in InGaAs/AlAsSb
Intersubband Transition All-Optical Switch |
AIST@*Simoyama Takasi 1, Nagase Masanori 1, Mozume
Teruo 1, Hasama Toshifumi 1, Ishikawa Hiroshi 1 |
| |
7 |
Optical control of near-field energy transfer between
InAs quantum dots I |
JST 1, Univ. Tokyo 2, NICT 3@T. Kawazoe 1, K. Nishibayashi
2, T. Yamamoto 2, K. Akahane 3, N, Yamamoto 3, M. Ohtsu 1,2 |
| |
8 |
Optical control of near-field energy transfer between
InAs quantum dots II |
Univ. Tokyo 1, SORST JST 2, NICT 3, @Nishibayashi
Kazuhiro 1, Yamamoto Takumi 1, Kawazoe Tadashi 2, Akahane Kouichi 3, Yamamoto
Naokatsu 3, Ohotsu Motoichi 1,2 |
| |
9 |
A Self-Clocked, Bidirectional Serial-to-Parallel
Converter |
NTT Photonics Labs 1@*Ryohei Urata 1, Ryo Takahashi
1, Tetsuya Suemitsu 1, Hiroyuki Suzuki 1 |
| |
10 |
Injected carrier-to-photon conversion efficiencies
of semiconductor optical amps in ultrafast all-optical gates |
Univ. of Electro-Communications, Dept of Electronic
Engineering 1, KDDI R&D labs 2@*Sakaguchi Jun 1, Ueno Yoshiyasu 1, Nishimura
Kohsuke 2, Yazaki Tomonori 2 |
| |
11 |
Investigation of ultrafast-wavelength conversion
by SOA-XPM spectral synthesis |
Electro-Communications Univ. 1@Nakamoto Ryoichi
1, Sakaguchi Jun 1, Ueno Yoshiyasu 1 |
| |
|
Lunch 13:00`14:00 |
|
| 30p-ZX-@/ III |
| |
1 |
Preparation and Characterization of Ti:Er:LiNbO3
films grown by sol-gel method |
Chubu Univ.1@*Yuki Takeda 1,Naofumi Kajitani 1,Syouji
Sato 1,Makoto Takahashi 1,Kouiti Wakita 1,Yosiyuki Maeda 1,Hiroyuki Hota
1 |
| |
2 |
Accurate measurement of second-order nonlinear-optical
coefficients of near-stoichiometric LiNbO3 (II) |
Chuo Univ. 1, Oxide 2@*Shoji Ichiro 1, Ue Tatsuro
1, Hayase Kei 1, Furukawa Yasunori 2 |
| ’ |
3 |
LiNbO3 Optical Waveguide of One Dimensional
Photonic Crystal Structure |
Matsushita Electric Industrial Co.,Ltd. ATRL 1,Osaka
Univ. Graduate School of Engineering Sciense 2@*Iwamoto Takuya 1,Asamira
Suzuki 1,Akihiro Itoh 1,Jingo Adachi 1,Akira Enokihara 1,Hiroshi Murata
2,Yasuyuki Okamura2 |
| |
4 |
Fabrication of Domain Inversion on LiNbO3
Terrace-shaped Substrate |
R.I.E. Shizuoka Univ. 1@*Awano Haruyuki 1, Sugiyama
Tatsuhiko 1, Yoneyama Satoshi 1, Minakata Makoto 1, |
| |
5 |
Improvement by using insulation layer of MgO:LiNbO3
domain-inverted grating formation by applying voltage with heating |
Osaka Univ. 1@Tsubouchi Takashi 1,Horikawa Nobuyuki
1,*Fujimura Masatoshi 1,Suhara Toshiaki 1 |
| |
6 |
Applying long-interval voltage pulses with heating
for improving MgO:LiNbO3 domain-inverted grating formation |
Osaka Univ. 1@Horikawa Nobuyuki 1, Tsubouchi Takashi
1, *Fujimura Masatoshi 1,Suhara Toshiaki 1 |
| |
7 |
Mid-infrared wavelength conversion module using
direct-bonded quasi-phase-matched LiNbO3 ridge waveguide |
NTT Photonics Labs. 1@*Tadanaga Osamu 1, Nishida
Yoshiki 1, Yanagawa Tsutomu 1, Magari Katsuaki 1, Umeki Takeshi 1, Yoshino
Kaoru 1, Asobe Masaki 1, Suzuki Hiroyuki 1 |
| |
8 |
Fine Observation of CH4 Absorption by
DFG Using QPM-LN Waveguide and FBG-Stabilized Single Mode LD |
NTT Photonics Laboratories@Magari Katsuaki*, Yanagawa
Tsutom, Tadanaga Osamu, Nishida Yoshiki, Asobe Masaki, and Suzuki Hiroyuki |
| |
9 |
Fabrication of optical wavelength converter using
periodically poled MgOSLN (MgO-doped Stoichiometric LiNbO3) |
Oki Electric Industry Co.,Ltd 1, RIEC Tohoku Univ.
2@*Okabe Yutaka 1, Ogawa Yoh 1, Okayama Hideaki 1, Sasaki Yuuzou 2, Takasaka
Hitoshi 2, Ito Hiromasa 2 |
| |
10 |
Semiconductor-Laser-Pumped Waveguide Quasi-Phase-Matched
Sum-frequency-Generation Devices for Detection of Single Photon in Communication
Wavelength Band |
Grad. Sch. Eng., Osaka Univ. 1@Okabe Hiroaki 1,Beniya
Kazuhumi 1,*Fujimura Masatoshi 1,Suhara Toshiaki 1 |
| |
|
Break 16:30`16:45 |
|
| |
11 |
Second harmonic generation by periodically poled
MgO-doped stoichiometric LiNbO3 ridge waveguide |
Oki Electric Industry Co.,Ltd 1, RIEC Tohoku Univ.
2@*Ono Hideki 1, Okabe Yutaka 1, Okayama Hideaki 1, Ogawa Yoh 1, Suzuki
Yusaku 2, Nagano Shigehiro 2, Suizu Koji 2, Ito Hiromasa 2 |
| |
12 |
Broadband quasi-phase-matching wavelength converter
using an engineered Τ(2) grating |
NTT Photonics Labs@*T. Umeki,M. Asobe, Y. Nishida,
O. Tadanaga, K. Magari, T. Yanagawa and H. Suzuki |
| |
13 |
Green-light-pumped optical parametric oscillator
in MgO-doped stoichiometric LiTaO3 |
NIMS 1, Inst. of Atomic and Molecular Sciences
2, Nanjing Univ. 3, National Chiao-Tung Univ. 4@*S. KURIMURA 1, K. KITAMURA
1, S.-Y. TU 2, Z. D. GAO 3, S. N. ZHU 3, A. H. KUNG 2,4 |
| |
14 |
High-power high-efficiency second-harmonic generation
using a planar-waveguide periodically poled MgO-doped LiNbO3 |
Mitsubishi Electric Corp.@*Koyata Yasuharu 1, Sakai
Kiyohide 1, Hirano Yoshihito 1 |
| £’ |
15 |
Continuous wave 2-W green light generation in periodically
poled Mg-doped stoichiometric lithium tantalate |
National Inst. for Mat. Sci. (NIMS)@*S. V. TOVSTONOG,
S. KURIMURA, K. KITAMURA |
| |
16 |
High-power Single Pass Second Harmonics Generation
by Bulk Periodically Poled MgO doped LiNbO3 |
Tohoku R&D Center, R&D Group, Ricoh Co., Ltd. 1,
Institute for Molecular Science 2 @*Yasuhiro Satoh 1, Tsuyoshi Suzudo 1,
Hironobu Mifune 1, Hideki Ishizuki 2, Yoichi Sato 2, Takunori Taira 2 |
| |
17 |
Fabrication and characterization of Type II parametric
down-converter using quasi-phase-matched LiNbO3 |
RIEC, Tohoku Univ. 1, Nagoya Univ. 2, RIKEN PDC
3 @*Shigehiro Nagano 1, Takashi Sugiyama 1, Koji Suizu 2, Ryosuke Shimizu
1, Keiichi Edamatsu 1, Hiromasa Ito 1,3 |
| ’ |
18 |
Second and third-harmonic generations of femtosecond
pulses by use of a periodically poled device |
IIS Univ. of Tokyo 1@Kengo Hayashi 1, Nobuhide
Fujioka 1, Satoshi Ashihara 1, Hidenobu Ono 1, Tsutomu Shimura 1, and Kazuo
Kuroda 1 |
| ’ |
19 |
Simultaneous second- and third-harmonic generations
of femtosecond pulses by use of a two-dimensional quasi-phase-matching device
(V) |
IIS Univ. of Tokyo 1@*Fujioka Nobuhide 1,Ashihara
Satoshi 1,Ono Hidenobu 1,Shimura Tsutomu 1,Kuroda Kazuo 1 |
| |
20 |
Characteristics of 266 nm generation by quasi-phase-matching
in quartz |
NIMS 1, Nidek Co. 2 @Tsuyoshi Yamada 1,2, *Muneyuki
Adachi 1,2, Sunao Kurimura 1, Ken-ichi Hayashi 2, Kenji Kitamura 1 |
| 5.4 Optical
Processing |
| August 31 (Thu.) 10:00`13:00 |
| 31a-ZX-@/ III |
| |
1 |
Multi beam coherent combining with phase control
by prism pair |
ILE Osaka Univ. 1@*Kuwata Mitsunori 1,Tsuchida
Kunio 1,Tsubakimoto Koji 1,Miyanaga Noriaki 1, |
| |
2 |
Monolithic Integration of Mach-Zhender Optical
Switch using (Ba,Sr)TiO3 Deposited at Low Temperature |
Hiroshima Univ. 1@*Suzuki Masato 1, Nagata Kazuma
1, Tanushi Yuichiro 1, Yokoyama Shin 1 |
| |
3 |
An electro-optic crystal-based Fabry-Perot light
modulator with ultra-low voltage using both electro-optic and inverse piezoelectric
effects |
Seikei Univ. 1@*Jin Lianhua 1, Takizawa Kuniharu
1, Yonekura Kazuya 1 |
| |
4 |
Wide angle, Low Voltage Optical Beam Scanner with
KTN Crystal Based on Novel Principle of Operation |
NTT Photonics Laboratories@Koichiro Nakamura, Masahiro
Sasaura, Kazuo Fujiura |
| |
5 |
Millimeter-wave electrooptic single-sideband modulators
by using resonant electrodes and polarization reversal |
Osaka Univ.1, Matsushita Electric.2@Hiroshi Murata1,
Daisuke Nakata1, Akira Enokihara2, Yasuyuki Okamura1 |
| £ |
6 |
Novel optical FSK modulator utilizing polarization-reversed
structure |
Osaka Univ. 1@*Ha Viet Pham1, Hiroshi Murata1,
Yasuyuki Okamura1 |
| |
|
Break 11:30`11:45 |
|
| |
7 |
Optical polarization modulator by using polarization-reversed
structures |
Osaka Univ. 1@*Takahashi Asuka 1,Murata Hiroshi
1, Okamura Yasuyuki 1 |
| |
8 |
Frequency-doubled optical clock pulse generation
using selective optical sideband rejection of PM light |
National Defense Academy@*Tsuji Kenichiro 1, Yamaguchi
Teppei 1, Kim Jumgmin 1, Onodera Noriaki 1, Saruwatari Masatoshi 1 |
| |
9 |
THz Repetition-Rate Optical Clock Generation Based
on Tuneable Optical Spectrum Synthesizer |
Japan Women's Univ. 1, NiCT 2@*Komai Yuki 1, Anzai
Shimako 1, Moritsuka Fumi 1, Wada Naoya 2, Miyazaki Testuya 2, Kodate Kashiko
1 |
| |
10 |
Random Signal Response of PM-IM Converter Based
on Optical Filtering |
National Defense Academy 1@*Yamaguchi Teppei 1,kim
Jungmin 1,Tsuji Kenichro 1,Onodera Noriaki 1,Saruwatari Masatosi 1 |
| |
11 |
Optical code division multiplexing scheme using
time/wavelength 2D signal generator |
Osaka Univ. 1@Itoh Ryosuke 1,Konishi Tsuyoshi 1,Nishitani
Takashi 1,Itoh Kazuyoshi 1 |
| 5.4 Optical
Processing |
| September 1 (Fri.) 9:00`15:00 |
| 1a-ZX-@/ III |
| ’ |
1 |
Dynamic All-Optical Flip-Flop Operation of MMI-BLD
using Distributed Bragg Reflectors |
The Univ. of Tokyo RCAST 1, OITDA 2, Infinera 3,
UCSB 4, JST-SORST 5@*Takeda Koji 1, Takenaka Mitsuru 1,2, Raburn Maura 3,
Kanema Yasuki 1, Song Xueliang 1, Barton Jonathon 4, Nakano Yoshiaki 1,5 |
| |
2 |
Generation of carrier-suppressed broad optical
pulses from a mode-locked DBR laser diode |
Oki Electric@*Arahira Shin 1, Yaegashi Hiroki 1,
Nakamura Kouji 1, Ogawa Yoh 1 |
| |
3 |
Proposal of optical flip-flop device based on photonic
crystal-based ultra-small all-optical switch (PC-SMZ) |
Univ. of Tsukuba 1, Meijo Univ 2, AIST 3@Asakawa
Kiyoshi 1, Watanabe Akira 2, Wang Xiaomin 3, Sugimoto Yoshimasa 1,3, Watanabe
Yoshinori 1, Ozaki Nobuhiko 1, Mizutani Akio 1 |
| |
4 |
Growth of InAs-QDs with different absorption wavelengths
at different growth-areas for ultra-small all-optical functional device |
Univ. of Tsukuba 1, NEC Corp. 2, AIST 3@Ozaki Nobuhiko
1, Takata Yoshiaki 1, Ohkouchi Shunsuke 2, Kitagawa Yoshinori 1, Ikeda Naoki
1,3, Sugimoto Yoshimasa 1,3, Asakawa Kiyoshi 1 |
| |
5 |
Optical Nonlinear-Effect Compensator using Vertical
Microcavity Structure with Saturable Absorber II |
Tokyo Tech. 1, Corning Inc. 2@*Satoshi Suda 1,
Go Hirano 1, Fumio Koyama 1, Nobuhiko Nishiyama 2, Catherine Caneau 2, Chung-En
Zah 2 |
| |
|
Break 10:15`10:30 |
|
| ’ |
6 |
High Speed Characterization of Nonlinear Phase-Shifter
Using 1.55 um VCSEL |
Tokyo Tech. 1, Corning Inc. 2@*Satoshi Suda 1,
Go Hirano 1, Fumio Koyama 1, Nobuhiko Nishiyama 2, Catherine Caneau 2, Chung-En
Zah 2 |
| |
7 |
Modeling of a NRZ-RZ format converter based on
vertical-cavity surface-emitting laser |
Tokyo Tech@Koichi Hasebe 1, Fumio Koyama 1 |
| |
8 |
Analysis on the response of Multi-Mode Interference
Photonic Switch with Partial Index-Modulation Region(MIPS-P).
|
Waseda Univ.@*Yuuta Ueda,Tomohiro Ishikawa,Zhigang
Wu,Kastuyuki Utaka |
| |
9 |
Switching characteristic of Two-Mode interferometer
type optical switch by thermooptic effect |
Sophia Univ. 1@Kawabe Sou 1,Iwasaki Hiroya 1,Matsumoto
Hiromasa 1,Shimomura Kazuhiko 1 |
| |
10 |
Wavelength switching in selectively grown waveguide
array using thermo-optic effect |
Sophia Univ. 1@*Mogi Mizuho 1, Yosioka Taichi 1,
Simizu Yu 1, Shimomura Kazuhiko 1 |
| |
11 |
Sinc-Sampled Gratings using InGaAsP/InP deep-waveguide
with vertical-groove surface grating |
NTT Photonics Labs. 1,@*Segawa Toru 1, Matsuo Shinji
1, Ishii Tetsuyoshi 1, Suzuki Hiroyuki 1, |
| |
|
Lunch 12:00`13:00 |
|
| 1p-ZX-@/ III |
| |
1 |
Study on Polarization Independence and Tolerance
in Long-Period-Grating Loaded Semiconductor Waveguide -type Gain Equalizing
Devices |
Waseda Univ. 1.@Terada Kenichi 1 |
| |
2 |
Fabrication and characterization of electro-optic
phase modulators with InGaAs/InAlAs coupled quantum wells |
Univ. of Tokyo 1, JST-SORST 2@H. Ohe 1, H. Shimizu
1,2, Y. Nakano 1,2 |
| |
3 |
Theoretical Analysis of Electrorefractive Effect
in InGaAs/InAlAs Five Layer Asymmetric Coupled Quantum Wells(FACQW)(III) |
Yokohama National Univ. 1, Kanazawa Inst.@Tech.
2@*Toya Takahiro 1, Miyake Hiroaki 1, Arakawa Taro 1, Tada kunio 2 |
| |
4 |
GaAs/AlGaAs Five-Layer Asymmetric Coupled Quantum
Well Mach-Zehnder Optical modulator (II) |
Yokohama National Univ 1,Kanazawa Inst of Tech
2,Yokogawa Electric Corp 3@Kouji Takada 1,*Takehiro Arima 1,Hirokazu Ito
1,Rina Tashima 1,Tarou Arakawa 1, Kunio Tada 2, and J.-H. Noh 3 |
| |
5 |
Proposal and Modeling of Miniature Slow Light Modulator
Integrated with VCSEL |
P&I Lab. Tokyo Tech. 1@Keisuke kuroki, Fumio koyama |
| |
6 |
GaInNAs/InP tensile-strained bulk polarization
insensitive SOA |
Fujitsu Ltd. 1, Fujitsu Laboratories Ltd. 2@*Ken
Morito 1, Shinsuke Tanaka 1,Ayahito Uetake 1, Mitsuru Ekawa 2, Susumu Yamazaki
1 |
| |
7 |
Nonreciprocal attenuation without external magnetic
field in semiconductor waveguide optical isolators using epitaxial MnAs
electrodes |
RCAST 1 and Dept. of Elecron. Eng. 2, The Univ.
of Tokyo; JST-SORST 3@T.Amemiya1,3, H.Shimizu1,3, P.N.Hai2,3, M.Tanaka2,3
and Y. Nakano1,3 |
| |
8 |
Fabrication of highly reflactive index contrast
waveguide by wafer bonding and selective etching |
NICT 1, Doshisya Univ. 2@Gozu Shin-ichiro, Ueta
Akio, Yamamoto Naokatsu, Akahane Kouichi, Ohtani Naoki, Tsuchiya Masahiro |
| 5.5 Optical
Fibers |
| August 29 (Tue.) 10:00`16:45 |
| 29a-RB-@/ III |
| |
1 |
Design of Waveguide Structure and Mode Coupling
Management in GI-POF |
Keio Univ. 1, JST ERATO-SORST 2@*Ishiyama Yorichika
1,2, Ishigure Takaaki 1,2, Koike Yasuhiro 1,2 |
| |
2 |
Analysis of Propagating Mode Characteristics in
W-shaped Polymer Optical Fiber |
Keio Univ. 1, JST ERATO-SORST 2@*Aoyagi Kenichi
1,2, Takahashi Keita 1, Ishigure Takaaki 1,2, Koike Yasuhiro 1,2 |
| |
3 |
Analysis of Bending Loss in GI POF and its Optimum
Waveguiding Design |
Keio Univ. 1, JST ERATO-SORST 2@Chie Matsukura
1,2, Kenji Makino 1,2, Takaaki Ishigure 1,2, Yasuhiro Koike 1,2 |
| |
4 |
Characteristic Analysis of Perfluorinated Multi
Core Fiber |
Keio Univ. 1, AsahiGlass Co., LTD. 2@* Atsushi
Kondo 1, Chikafumi Tanaka 2, Masaaki Naritomi 2, Yasuhiro Koike |
| |
5 |
Investigation of optical fiber grating coupler
for all optical switching system |
Ibaraki Univ.1@*Kimura Mitsunobu 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
6 |
Characteristic@improvement of fiber grating coupler
for all optical switching |
Ibaraki Univ.1@*Fukuda Seiji 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
7 |
Study of an optical fiber coupler for high nonlinear
photonic crystal fiber module |
Ibaraki Univ.1@*Yashima Hirotomo 1,Yokota Hirohisa
1,Sasaki Yutaka 1 |
| |
8 |
Measurement of nonlinear refractive index by using
nonlinear dynamics generated in modulated OFRR 2 |
Ibaraki Univ. 1@*Masakuni Mimuro 1, Yoh Imai 1 |
| |
9 |
Polarization-maintaining fiber pulse compressor
by birefringent hollow-core photonic bandgap fiber |
Inst. for Laser Science, Univ. Electro-Commun.@Shirakawa
Akira 1, Tanisho Motoyuki 1, Ueda Ken-ichi 1 |
| |
10 |
Yb doped double clad fiber as stimulated Brillouin
scattering phase-conjugate mirror |
ILE Osaka Univ.@Sumimura Kauhiko, Hidetusu Yoshida,
Hajime Okada, Hisanori Fujita, Masahiro Nakatsuka |
| |
11 |
Characteristic evaluation of multiwavelemgth signal
for Bi doped fiber amplify |
ILE Osaka Univ 1, Kinki Univ 2@*Sasahara Ryuuhei
1, Seo Young Seok 1, Yoshida Minoru 2, Yasushi Fujimoto 1, Nakatsuka Masaharu
1 |
| |
|
Lunch 12:45`14:00 |
|
| 29p-RB-@/ III |
| |
1 |
Sensitivity and Frequency Characteristics at Vibration
Measurement on a Hetero-core Spliced Fiber Optic Sensor |
Soka Univ.@*Miyake Kazuhiro , Hiroyuki Sasaki 1,
Kazuhiro Watanabe 1 |
| |
2 |
Measurement property of hetero-core optical fiber
SPR sensor by 635nm-LED |
Soka Univ 1@*Takemoto Keiju 1,Sasaki Hiroyuki 1,Seki
Atsushi 1,Watanabe Kazuhiro 1 |
| |
3 |
Dual LED Optical Fiber SPR sensing system |
Shizuoka Univ.@*H. Shibata, H. Suzuki, M. Sugimoto,
Y. Matsui, J. Kondoh |
| |
4 |
Accuracy Improvement of Fabry-Perot interferometer-type
optical fiber strain sensor |
Fukui Univ. 1@Kyousuke Uno 1,Wu Di 1,Yasuhumi Enami
1,Takao Kobayashi 1 |
| ’ |
5 |
Formation of birefringence in optical fibers by
ion implantation |
Waseda Univ. 1, AIST 2@*Yu Seungjun 1, Suzuki Masahiro
1, Ohki Yoshimichi 1, Fujimaki Makoto 1,2, Awazu Koichi |
| |
6 |
fabrication of optical fiber Bragg grating sensors
utilizing vacuum ultraviolet light |
JST satellite miyazaki 1, univ. of Miyazaki2@Maezono
Yoshinari 1, Iwasa Yousuke1, Kurosawa Kou1, katto Masahito2, Yokotani Atsushi2 |
| |
7 |
WDM operation of thermally stabilized FBG underwater
acoustic sensor array using feedback circuit |
Nat. Def. Acad. 1, JAMSTEC 2@*Yokosuka Hiroki 1,
Tanaka Satoshi 1, Inamoto Kiyoyuki 1, Takahashi Nobuaki 1, Sawa Takao 2,
Asakawa Kenichi 2 |
| |
8 |
Temperature stabilized operation of FBG vibration
sensor array using dual-wavelength fiber laser |
National Defense Academy@*Kiyoyuki Inamoto 1, Satoshi
Tanaka 1, Hiroki Yokosuka 1 and Nobuaki Takahashi 1 |
| |
9 |
Optical biopsy probe using a hollow optical fiber |
RIKEN,Machida Endoscope Co, Ltd., Tohoku Univ.@Katagiri
Takashi 1,Hattori Yusuke 1,Suzuki Toshiaki 1,Komachi Yuichi 1 2,Matsuura
Yuji 3, Sato Hidetoshi 1.
|
| |
10 |
Effect of Polymer Jacket of Fused Silica Core Optical
Fiber for Thermal Radiation Property |
Tohoku Univ. 1, IMR Tohoku Univ. 2@Kondo Shuhei
1,Toh Kentaro 2, Nagata Shinji 2, Tsuchiya Bun 2, Shikama Tatsuo 2, |
| |
11 |
Development of moisture-resistant and odorless
optical adhesives |
Tokyo University of Techonology1, Nippon Kayaku
Co.LTD.2@Seiko Mitachi1, Masataka Shimizu1, Rie Shiga1, Chie Umeyama2, Yoshihiro
Kawada2 |