| 5 Optoelectronics |
5.1 Semiconductor Lasers
and Light Emitting Devices |
| March 27 9:30`11:40 |
| 27a-ZQ-@/ III |
| | 1 | GaN based 405nm DFB Laser Diodes | Nichia corporation 1@*Tsukayama kazutaka 1, Masui Shingo 1, Yanamoto Tomoya 1, Kozaki Tokuya 1, Nagahama Shin-ichi 1, Mukai Takashi 1 |
| | 2 | Spectrum broadened red semiconductor laser array for displays with reduced speckle | Sony Corp. CTDG 1, Univ. of Newcastle 2@Furukawa Akio 1, Murphy Brendan 2, Hirata Shoji 1 |
| | 3 | 4.8W High-Power Laser Diode Array Emitting at 644nm with High Reliability | Sony Corp.,CTDG@Takiguchi Yoshiro 1, Naganuma Kaori 1, Sato Yoshifumi 1, Imanishi Daisuke 1, Ito Satoshi 1, Hirata Shoji 1 |
| | 4 | 700nm band InGaAsP/AlGaInP Quantum-Well Ridge Lasers |
Central Research Lab.Hitachi Ltd. 1 Opnext Japan,Inc.2@*Taniguchi
Takafumi 1, Etsuko Nomoto 1, Sasaki Shinya 2, Kasai jyunji 1 ,Ootoshi Hajime
1 , Aoki Masahiro 1 |
| | | Break 10:30`10:40 | |
| | 5 | Wide-band Noise Reduction by Electric Positive and Negative Feedback in Semiconductor Lasers | Faculty of Eng, Kanazawa Univ@*Maryam Huda 1, Teraoka Eiji 1, Kuwamura Yuji 1, Yamada Minoru 1 |
| | 6 | Microwave Modulation in Simultaneously Oscillated Dual-wavelength Laser Diode | Shonan Institute of Technology 1@*Murasawa Kengo 1, Hidaka Takehiko 1 |
| | 7 | High power operation of GaAs quasi-stadium laser diodes having unstable resonators | Okayama Prefectural Univ. 1, ATR Wave Engineering Labs. 2@*Fukushima Takehiro 1 2, Tanaka Tomoko 2, Harayama Takahisa 2 |
| | 8 | Observation of beam intensity patterns in quasi-stadium laser diodes. | Konan Sci.Univ.1, ATR Wave Engineering Labs.2,Okayama Pref.Univ.3@*Takehana hiroki 1.2,Sasaki takahiko 2,Nakae Yutaka 2,Fukushima Takehiro 2.3,Harayama Takashisa 1.2,Sugimura Akira 1 |
| 5.1 Semiconductor Lasers
and Light Emitting Devices |
| March 28 9:00`18:15 |
| 28a-SG-@/ III |
| | 1 | Improvement of emission efficiency of quantum dot structures by Sb-irradiation technique. | NICT@*Naokatsu Yamamoto 1, Kouichi Akahane 1, Shin-ichirou Gozu 1, Akio Ueta 1, and Masahiro Tsuchiya 1 |
| ’ | 2 | Temperature dependence of gain characteristics in p-doped 1.3-μ m quantum dot lasers | RCAST, Uviv. of Tokyo 1, NCRC, IIL, Univ. of Tokyo 2, Nano Quine Univ. of Tokyo 3, Fujitsu Laboratory Ltd. 4, Fujitsu Ltd. 5, OITDA 6, QD Laser Inc. 7@Tetsutaro Yukutake 1,2, Mitsuru Ishida 1,2, Nobuaki Hatori 1,2, Hisao Sudo 4-6, Tsuyoshi Yamamoto 4-6, Yoshiaki Nakata 1,2, Hiroji Ebe 1,2, Mitsuru Sugawara 4-7, Yasuhiko Arakawa 1-3 |
| | 3 | Enhanced maximum modal gain of 1.3-Κm antimony mediated InAs self-assembled quantum-dot lasers | NCRC, IIS, Univ. of Tokyo 1, RCAST, Univ. of Tokyo 2, CINQIE, Univ. of Tokyo 3, Fujitsu Laboratories Ltd. 4, Fujitsu Ltd. 5, OITDA 6, QD Laser, Inc. 7 @*Ishida Mitsuru 1,2, Watanabe Katsuyuki 1,2, Kumagai Naoto 1,2, Nakata Yoshiaki 1,2, Hatori Nobuaki 1,2, Sudo Hisao 4-6, Yamamoto Tsuyoshi 4-6, Sugawara Mitsuru 4-7, Arakawa Yasuhiko 1-3 |
| | 4 | 1.3ΚmInAs/GaAs QD Lasers with Narrow Stripe Structure | AIST 1, Univ. of Tsukuba@*Aoki Shigenori 1,2, Amano Takeru 1, Sugaya Takeyoshi 1, Komori Kazuhiro 1, Okada Yoshitaka 2 |
| | 5 | Room-temperature continuous wave operation of 1.3 Κm InAs Quantum Dot Lasers with GaInNAs burying layer on GaAs substrate Grown by MOCVD |
Nanoelectronics Collaborative Research Center 1,
Inst. of Industrial Science 2, Research Center for Advanced Science and
Technology 3, Corporate R&D Center, Toshiba Corporation 4 @Hashimoto Rei
1.4, Kushibe Mitsuhiro1.4, Managaki Nobuto 1.4, Ezaki Mizunori 1.4, Nishioka
Masao 1.2, Arakawa Yasuhiko 1.2.3 |
| | | Break 10:15`10:30 | |
| | 6 | Controlling Polarization inInAs Columnar Quantum Dots Semiconductor Optical Amplifiers | Fujitsu Limited 1,OITDA 2,NCRC Univ. of Tokyo 3,IIS Univ. of Tokyo 4,QD[U 5,Fujitsu Lab. Ltd. 6,RCAST Univ. of Tokyo 7 @*Yasuoka Nami 1,2,Kawaguchi Kenichi 1,2,Ebe Hiroji 3,4,Akiyama Tomonori 5,Ekawa Mitsuru 1,2,Uetake Ayaro 6,Tanaka Shinsuke 6,Morito Ken 6,Sugawara Mitsuru 1,2,5,Arakawa Yasuohiro 3,4,7 |
| | 7 | Analysis of High-Speed Optical Nonlinear Response Characteristics in SOA | Waseda Univ. 1@*Motoki Hasegawa 1, Katsuyuki Utaka 1 |
| | 8 | Characteristics of 1.5Κm infrared emission from Er-doped silicon suboxide | Kumamoto Univ. 1,Univ. of Tokyo 2,NICT 3@*Minami Takashi 1,Kishi Masato 2,Yamamoto Naokatsu 3,Miyawaki Daisuke 1,Yoshida Takeshi 1,Ito Kosaburo 1,Naka Yoshihiro 1,Tsuchiya Masahiro 3,Nakamura Yusui 1 |
| | 9 | Orthogonal indirect-valley excitons bound to strained Si1-XGeX/Si quantum wells as evidenced by linear polarization anisotropies | Graduate School of Arts and Sciences, The Univ. of Tokyo 1@Yasuhara Nozomu 1, Fukatsu Susumu 1 |
| | 10 | Phase-matched parametric gain in an SOI-based multimode Si waveguide | Graduate School of Arts and Sciences, The Univ. of Tokyo 1, PRESTO JST 2@Yasuda Kazushi 1, Tanaami Norishige 1, Yasuhara Nozomu 1, Sugawara Yoshitaka 1 2, Kawamoto Kiyoshi 1, Fukatsu Susumu 1 2 |
| | 11 | GaInAsP/InP Membrane DFB Lasers on SOI Substrate Integrated with Waveguide Structure | Tokyo Tech 1, JST-CREST 2@*Maruyama Takeo 1,2, Okumura Tadashi 1, Kanemaru Masaki 1, Sakamoto Shinichi 1, Arai Shigehisa 1,2 |
| | | Lunch 12:00`13:00 | |
| 28p-SG-@/ III |
| | 1 | Present Status and Future Prospect of Quantum Cascade Lasers | Hamamatsu Photonics KK@*Yamanishi Masamichi 1 |
| | 2 | Linewidth enhancement factor of quantum cascade lasers | Ritsumeikan Univ. 1, Central Res. Labs., Hamamatsu Photonics KK2@Kumazaki Naoki1, Takagi Youhei1, Kumamoto Tetsurou1, *Kasahara Kenichi1, Akikusa Naota2, and Edamura Tadataka2 |
| | 3 | Optical confinement of the quantum cascade lasers | Ritsumeikan Univ. 1, Central Res. Labs., Hamamatsu Photonics KK2@Kumamoto Tetsurou1, Kumazaki Naoki1, Takagi Youhei1, *Kasahara Kenichi1, Akikusa Naota2, and Edamura Tadataka2 |
| | 4 | Development and investigation of Quantum Cascade Lasers grown by Organometallic Vapor-Phase Epitaxy. | Central Research Labs., Hamamatsu Photonics KK 1@*Furuta Shinichi 1,Sugiyama Atsushi 1,Ochiai Takahide 1,Fujita Kazuue 1,Akikusa Naota 1,Edamura Tadataka 1,Yamanishi Masamichi 1,Kan Hirofumi 1 |
| | 5 | Chirp characteristics and spectroscopic applications of pulsed quantum cascade lasers | Hamamatsu Photonics Central Research Labs.1@Akikusa Naota1,Edamura Tadataka1,Sugiyama Atsushi1,Ochiai Takahide1,Fujita Kazuue1,Furuta Shin-ichi1,Yamanishi Masamichi1,Uehara Kiyoji and Kan Hirofumi1 |
| | 6 | Structual dependency of carrier injection at Tunnel injection quantum well Laser | Tokyo Tech. 1@*Yasutaka Higa 1,Tomoyuki Miyamoto 1,Takahiro Iwasaki 1,Hiroshi Nakajima 1,Fumio Koyama 1 |
| | 7 | Discussion of lasing characteristics of tunnel injection lasers by theoretical analysis | P&I Lab, Tokyo Tech@Nakajima Hiroshi 1,Miyamoto Tomoyuki 1,Iwasaki Takahiro 1,Higa Yasutaka 1,Matsuura Tetsuya 1,Koyama Fumio 1 |
| | | Break 15:15`15:30 | |
| | 8 | 1.3-Κm directly modulated GaInNAs triple quantum well laser diodes | Hitachi CRL 1@*Adachi Koichiro 1, Nakahara Kouji 1, Kasai Junichi 1, Kitatani Takeshi 1, Tsuchiya Tomonobu 1, Aoki Masahiro 1 |
| | 9 | GaInNAs DFB laser with GaAs grating (II) | 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, and Katsuyama Tsukuru 1,2 |
| | 10 | 1.3Κm Gain-Coupled DFB Lasers for Isolator-Free Modules |
Oki Electric Industry Co., Ltd. 1, Fujikura Ltd.
2@*Satoshi Miyamura1, Koji Nakamura1, Ryo Sekikawa1, Daisuke Shimura1, Susumu
Nakaya2, Teijirou Ori2, Hiroki Yaegashi1, Yoh Ogawa1 |
| ’ | 11 | GaInAsP/InP Membrane BH-DFB Laser with Air-Bridge Structure | Quantum Nanoelectronics Research Center,Tokyo Tech. 1,Dept. of Electrical and Electronic Engineering,Tokyo Tech. 2,JST-CREST 3@*Naitoh Hideyuki 1,Sakamoto Shinichi 1,Ohtake Mamoru 1,Okumura Tadashi 1,Maruyama Takeo 1,3,Nishiyama Nobuhiko 1,2,Arai Shigehisa 1,3 |
| | 12 | Proton Radiation Effects in Semiconductor Lasers 1.3-um wavelength InGaAsP Lasers | Fukui Univ. Tech.1,Wakasawan Energy Research Center 2@*Gonda Shun-ichi 1,Tsutsumi Hiroyuki 1,Ishigami Ryoya 2,Kume Kyo 2,Ito Yoshifumi 2 |
| £ | 13 | Reduction of Passive Waveguide's loss in Selective Area MOVPE Monolithically Integrated Photonic devices by Selective Zinc Diffusion | RCAST, The University of Tokyo 1, JST-SORST 2@*Melvin Jeffrey Chan 1, Jesse Darja 1, Masakazu Sugiyama 1,2, Yoshiaki Nakano 1,2 |
| £’ | 14 | Distributed Reflector Laser Integrated with Electro Absorption Modulator using Width Modulated Wirelike Active Regions |
Quantum Nanoelectronics Research Center, Tokyo
Inst. of Tech. 1,Graduate School of Sci. and Eng., Tokyo Inst. of Tech.
2, JST-CREST. 3@*Saeed Mahmud ULLAH 1, Ryo SUEMITSU 1, SeungHun LEE 1, Yoshifumi
NISHIMOTO 1, Masato OTAKE 1, Nobuhiko NISHIYAMA 2 and Shigehisa ARAI 1,3 |
| ’ | 15 | Integration of Front Power Monitor with Distributed Reflector Laser through Deeply Etched Narrow Groove for Electrical Isolation |
Quantum Nanoelectronics Research Center, Tokyo
Inst. of Tech. 1, Graduate School of Sci. and Eng., Tokyo Inst. of Tech.
2, JST-CREST. 3@*Ryo SUEMITSU 1, Saeed Mahmud ULLAH 1, SeungHun LEE 1, Yoshifumi
NISHIMOTO 1, Masato OTAKE 1, Nobuhiko NISHIYAMA 2 and Shigehisa ARAI 1,3 |
| | 16 | Characterization of optical coupling efficiency by InGaAlAs-InGaAsP multiple butt-jointed laser | Hitachi CRL 1@*Kitatani Takeshi 1, Shinoda Kazunori 1, Shiota Takashi 1, Makino Shigeki 1, Fukamachi Toshihiko 1, Aoki Masahiro 1 |
| | 17 | A wavelength-tunable light source integrated with tunable distributed amplification (TDA) DFB laser array and an SOA | Fujitsu Laboratories@Kazumasa Takabayashi, Shigeaki Sekiguchi, Akinori Hayakawa, Shichi Tomabechi, Ayahito Uetake, Haruhiko Kuwatsuka |
| ’ | 18 | Full C-band Tuning Operation of Semiconductor Double-ring-resonator-coupled Laser with Low Tuning Current |
NTT Photonics Labs.@*Segawa Toru 1, Matsuo Shinji
1, Kakitsuka Takaaki 1, Sato Tomonari 1, Kondo Yasuhiro 1, Suzuki Hiroyuki
1, |
| 5.1 Semiconductor Lasers
and Light Emitting Devices |
| March 29 9:00`11:30 |
| 29a-SG-@/ III |
| | 1 | 850nm vertical-cavity surface-emitting lasers with monolithically integrated monitoring photo detectors | Seiko Epson Corp. 1@Imai Yasutaka 1, Kito Satoshi 1, Kaneko Tsuyoshi 1, Kaneko Takeo 1 |
| | 2 | 100 High-Temperature Operations of 850nm-Vertical-Cavity Surface-Emitting Lasers Modulated at 10Gbps | Sony Corp. Materials Labs@Rintaro Koda 1, *Takahiro Arakida 1, Yuji Masui 1, Terukazu Naruse 1, Tomoyuki Oki 1, Kayoko Kikuchi 1, Hironobu Narui1 |
| | 3 | High-speed modulation with buried tunnel junction VCSEL | NEC System Device Res. Labs. 1@* Takayoshi Anan, Kenichiro Yashiki, Naofumi Suzuki, Hiroshi Hatakeyama, Kimiyoshi Fukatsu, Masayoshi Tsuji |
| | 4 | 10 Gbps operation of 1 Κm-range VCSELs with InGaAs/GaAsP strain-compensated quantum wells at 150 degree | NEC System Devices Res. Labs. 1@Takeshi Akagawa 1, Naofumi Suzuki 1, Hiroshi Hatakeyama 1, Kimiyoshi Fukatsu 1, Kenichiro Yashiki 1, Takayoshi Anan 1, Masayoshi Tsuji 1 |
| | | Break 10:00`10:15 | |
| | 5 | Limiting Factor of Fundamental-mode Power of External Cavity Surface Emitting Laser Diode | Toyota Central R. and D. Lab. Inc. 1,Toyota Motor Corp. 2@Daisuke Inoue 1, Kenji Itoh 1, Kazuo Hasegawa 1, Hiroshi Itoh 1, Akio Satoh 2 |
| | 6 | Transverse mode stability of proton-implanted photonic-crystal vertical cavity surface emitting lasers | The Furukawa Electric 1,FETI 2@*Kise Tomofumi 1,Kiyota Kazuaki 1,Maruyama Kazuomi 1,Yokouchi Noriyuki 1,Nyakas Peter 2,Hashizume Naoki 2 |
| £ | 7 | Polarization Control of 0.85 Κm VCSELs with Plasmonic Gold Nanorod Array | Tokyo Tech 1@P. Babu Dayal 1, Fumio Koyama 1 |
| | 8 | Tapered Hollow Waveguide Multiplexer for Muti-wavelength VCSEL array | Microsystem Research Center, P&I Lab., Tokyo Inst. of Tech.@*Kitabayashi Naoto 1, Matsutani Akihiro 1, Koyama Fumio 1 |
| £’ | 9 | Athermal Operation of Micromachined VCSELs using Bimorph Effect | Tokyo Tech. 1, Corning Inc. 2, Presently at Tokyo Tech. 3@*Janto Wiganes 1, Hasebe Koichi 1, Nishiyama Nobuhiko 2,3, Caneau Catherine 2, Sakaguchi Takahiro 1, Matsutani Akihiro 1, Koyama Fumio 1, Zah Chung-En 2 |
| 5.2 Optical Detection |
| March 29 12:30`15:00 |
| 29p-SG-@/ III |
| | 1 | Ultrafast Optoelectronic Devices based on the Uni-Traveling-Carrier Photodiode | NTT Photonics Laboratories@*Ito Hiroshi 1 |
| | 2 | High reliability of planar AlInAs-APD | Mitsubishi Electric Corp.Frequency & Optical Device1, Advance Technology R&D2@Ishimura Eitaro1,Yagyu Eiji2,Nakaji Masaharu1,Tokuda Yasunori2,Aoyagi Toshitaka1,Ishikawa Takahide1 |
| | 3 | Polarization Dependence of Two-Photon Absorption in Si-APD | Shonan Institute of Technology@Shunsuke Ooami, Toshiaki Kagawa |
| | 4 | Characterization of InGaAs-APD After Pulse probability: The difference between photon pulses and dark pulses. | System Devices Res. Labs. NEC 1, System Platforms Res. Labs. NEC 2, Fundamental and Environmental Res. Labs. NEC, 3, JST-SORST 4@*Nakata Takeshi 1, Mizuki Emiko 1, Makita Kikuo 1, Takahashi Seigo 2, Tomita Akihisa 3,4 |
| | 5 | The measurement system of the gain distribution of an APD for single photoelectrons. | National Inst. of Info. and Com. Tech.@*Tsujino Kenji 1, Akiba Makoto 1, Sasaki Masahide 1 |
| | 6 | TEM observation of Ge/Si hetero junction Interface Fabricated by Wafer Bonding | Kochi Univ. of Technology 1, Kyoto Research Reactor Inst. 2@*Hirose Mami 1, Miyaji Masayuki 1, Nitta Noriko 2, Taniwaki Masafumi 1, Kanbe Hiroshi 1 |
| | 7 | A MIR spectroscopic system for high sensitive detectors in a 4.2K space: Evaluation of the double-quantum-well MIR detector | JST-SORST/CREST 1, Basic science Univ.Tokyo 2, IIS Univ.Tokyo 3@*Takeji Ueda1,2, Zhenghua An1,2, Susumu Komiyama1,2, Kazuhiko Hirakawa1,3 |
| | 8 | Development of cryogenic readout electronics for a THz camera | NAOJ 1,SOKENDAI 2, Toho Univ. 3, NICT 4, JAXA 5@*Nagata Hirohisa 1, Matsuo Hiroshi 1, Kobayashi Jun 2, Nakahashi Misato 3, kobayashi Kei 3, Fujiwara Mikio 4, Ikeda Hirokazu 5 |
| | | Break 15:00`15:15 | |
| |
9`19@15:15`18:30 (5.3 Optical Storage) |
| 5.3 Optical
Storage |
| March 29 15:15`18:30 |
| 29p-SG-@/ III |
| |
1`8@12:30`15:00 (5.2 Optical Detection) |
| | 9 | Application of Near-Field Optics to Ultra-High Density Optical Data Storage | Natl' Inst. Indust. Sci. & Tech.@*Tominaga Junji |
| £ | 10 | Fresnel coefficients of the interfaces of normally micro-structured films on substrate of in-plane molecular orientation | General Graduate School, Ajou Univ.@Kim, Myoung-June |
| ’ | 11 | Thermal Diffusivity Measurement of GeTe-Sb2Te3 pseudobinary system Thin Films Using Thermoreflectance Method (3) |
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 |
| | 12 | Low Noise Reflective Material for High-Density Optical Data Storage | Pioneer Corp.@*Higuchi Takanobu, Hosoda Yasuo |
| ’ | 13 | Shift Slectivity of the Collinear Holographic Storage System | IIS, Univ. of Tokyo 1, OPTWARE 2@*Terada Masaru 1, Ashizuka Yasushi 1, Shimura Tsutomu 1, Fujimura Ryushi 1, Kuroda Kazuo 1, Horimai Hideyoshi 2 |
| | | Break 16:45`17:00 | |
| | 14 | Optimized write power for reliability | Osaka Sangyo Univ.1,@*Nakatani Kenichi 1,Nisiki Jyunichi 1,Irie Mitsuru 1, |
| | 15 | Statistical analysis method for life expectancy of optical disk (2) Evaluation parameter of HF signal | Osaka Sangyo Univ. 1@*Nishiki Jyunichi 1,Nakatani Kenichi 1,Irie Mitsuru 1 |
| | 16 | The Mechanism of Electrochromism and Recordimg Mark Formation of a Tungsten-oxide Film for Ultra-multilayer Optical Recording | NHK Sci. & Tech. Res. Labs. 1@Ryuji Sato 1, Norikazu Kawamura 1, Haruki Tokumaru 1 |
| ’ | 17 | Measurement of focus error signal for multilayered media | Shizuoka Univ. 1, LINTEC Corp. 2@*Miyamoto Masao 1, Kawata Yoshimasa 1, Nakabayashi Masahito 2 |
| | 18 | Multiple optical storage by linear polarized blue light | R&D Engineering Dept., Funai Electric Co.,Ltd. 1, Graduate School of Engineering, Kyoto Univ. 2@*Takeda Toru 1, Maeda Shigeo 1, Shihara Tetsuya 1, Nagashima Kenji 1, Yoshimura Hideto 1, Ohkita Hideo 2, Ito Shinzaburo 2 |
| ’ | 19 | Novel multilevel optical recording method using photoinduced chirality: Proposal and verification | AIST Photonics Research Inst. 1, Inst. Appl. Phys., Univ. Tsukuba 2, SR Project Nanoscience, Univ. Tsukuba 3@*Daisuke Barada 1,2, Hiroshi Sumimura 2, Takashi Fukuda 1,3, Masahide Itoh 2, Toyohiko Yatagai 2,3 |
| 5.4 Optical Processing
|
| March 27 10:00`11:30 |
| 27a-ZS-@/ III |
| ’ | 1 | THz Repetition-Rate Tuneable Optical Clock Generation Based on Tuneable Optical Spectrum Synthesizer II | Japan Women's Univ. 1, NICT 2@Shimako Anzai 1, Yuki Komai 1, Fumi Moritsuka 1, Mitsuko Mieno 1, Naoya Wada 2, Tetsuya Miyazaki 2, Kashiko Kodate 1 |
| | 2 | Investigation of the optical code conversion for optical code division multiplexing using time-to-2D space conversion | Osaka Univ. 1@Ryosuke Itoh 1, Tsuyoshi Konishi 1, Kazuyoshi Itoh 1 |
| | 3 | Spectrum Measurement with Modulation Frequency Scanning of Optical Phase Modulator and Heterodyne Detection | Tokyo Univ. of Agri. & Tech. 1@*Takayoshi Mori 1,Tatsuya Sugimoto 1,Tatsutoshi Shioda 1,Yosuke Tanaka 1,Takashi Kurokawa 1 |
| ’ | 4 | Chirp Measurement of Optical Short Pulses Based on Differential Filtering with Spatial Light Modulator | Tokyo Univ. of Agri. and Tech. 1, NTT East Corp. 2@*Ryo Kobe 1, Shinsuke Takeda 1, Tatsutoshi Shioda 1, Yosuke Tanaka 1, Hirokazu Takenouchi 2, Takashi Kurokawa 1 |
| | 5 | Propagation loss evaluation of high mesa waveguide for compact breath-sensing system via infrared spectroscopy | Kyushu Univ. I-Eggs 1@*Satoshi Yano 1, Kousuke Kameyama 1, Kuwahara Kengo 1, Kiichi Hamamoto 1 |
| | 6 | Proposal of novel pulse-peak resonance CRD (cavity ring-down) method for compact breath-sensing system via infrared spectroscopy | Kyushu Univ. I-Eggs 1@*Hirayama Yosuke 1, Imaya Jun-ichi 1, Hamamoto Kiichi 1 |
| 5.4 Optical Processing
|
| March 27 9:00`17:45 |
| 27a-SG-@/ III |
| ’ | 1 | 4ch Polymer Optical GI Waveguide toward Parallel Optical Interconnects | Faculty of science and technology, Keio Univ. 1@*Takeyoshi Yusuke 1, Ishigure Takaaki 1 |
| | 2 | CW amplified spontaneous emission in Eu-Al/PMMA nanoclusters planner waveguides | Kyoto Inst. Tech. 1, KRI, Inc. 2@*Shun Yuyama 1,Hronori Taniguchi 1,Kenichi Yamashita 1,Kunishige Oe 1,Jun Sun 2, Hroshi Mataki 2 |
| | 3 | Optical Bistable Behavior of Quasi-waveguide with Polymethylmethacrylate/Poly(3-hexylthiophene)(PMMA/P3HT) Composite Thin Film | Aichi Inst. of tech.@*Koji Isogai 1,Shizuyasu Ochiai 1,Goro Sawa 1,Yoshiyuki Uchida 1, Kenzo Kojima 1, Asao Ohashi 1, Teruyoshi Mizutani 1 |
| | 4 | Polarized Saturable Absorbing Waveguide Device Using Carbon Nanotube-Polyimide Composite Material | AIST 1,Tokyo Univ. Sci.2@*Oomuro Toshiyuki 1,2, Kaji Ryousaku 1, Itatani Tarou 1, Matsuzaki Shun 1,2, Kataura Hiromichi 1, Yamashita Masafumi 2, Mori Masahiko 1, Sakakibara Youichi 1,2 |
| | | Break 10:00`10:15 | |
| | 5 | A study on optical waveguide using polyethylene terephthalate (2nd report) | Kanazawa Univ Graduate 1,Kanazawa Univ 2@*Takamura Toshihiro 1,Ono Yusuke 2,Yamagishi Tadaaki 1,Iiyama Koichi 1 |
| | 6 | Analysis of Reflective Self-Organized Lightwave Network with PR materials for Nano Optical ICfs by FDTD | Tokyo Univ. of Technology@Kaburagi Hiroshi 1, Yoshimura Tetsuzo 1, Asama Kunihiko 1 |
| | 7 | 4-µm-wide Polymer Waveguides with Tapered Mirrors | Tokyo Univ. of Technology@Naito Kaneyuki 1, Arai Yukihiko 1, Yoshimura Tetsuzo 1, Asama Kunihiko 1 |
| | 8 | Proposal and design of 3-D optical circuits consisting of film waveguides with skirt-shaped two-layered mirrors | Tokyo Univ. of Technology@Kitabayashi Yohei 1, Ogushi Kazuhiro 1, Arai Yukihiko 1, Yoshimura Tetsuzo 1, Asama Kunihiko 1 |
| | 9 | Fabrication of film waveguides with skirt-shaped two-layered structure 45 mirrors | Tokyo Univ. of Technology@Ogushi Kazuhiro 1, Kitabayashi Yohei 1, Arai Yukihiko 1, Yoshimura Tetsuzo 1, Asama Kunihiko 1 |
| | 10 | A fine-particle phosphor for self-organized optical weveguide formaition | Tokyo Univ. of Tech. 1@*Atsushi Naitoh 1,Masayoshi Miyazaki 1,Tetsuzo Yoshimura 1,Hajime Yamamoto 1 |
| | | Lunch 11:45`13:00 | |
| 27p-SG-@/ III |
| | 1 | MEMS mirror for optical communication devices | FUJITSU Laboratories Ltd.@Sawaki Ippei 1 |
| | 2 | Fabrication of a comb drive actuator for tunable nano-photonic devices and its operating characteristics | Tohoku Univ. Hane Lab. 1@*Kazunori Takahashi 1, Yoshiaki Kanamori 1, Kazuhiro Hane 1 |
| £ | 3 | Modeling of Low-loss and Polarization Insensitive 3D Hollow Waveguides for Widely Tunable Photonic Devices | Tokyo Tech 1@Kumar Mukesh 1, Koyama Fumio 1 |
| | 4 | Coupling characteristics of narrow air core hollow optical waveguide | Tokyo Tech 1@*Imamura Akihiro 1, Koyama Fumio 1 |
| | 5 | High Efficiency Concentrater for Plastic Optical Fiber | Japan Science and Technology 1,Keio University 2@*Uehara Keiji 1,Kondo Atsushi 2,Koike Yasuhiro 1,2 |
| | 6 | Fabrication of a self-controlled optical branch | Ryukoku Univ. 1@Yoshimura Kazuhiro 1, Yamada Itsunari 1, *Saito Mitsunori 1 |
| | | Break 15:00`15:15 | |
| | 7 | Enhancement and reversal of UV trimming of annealed SiON microring resonator by multi point UV irradiation | Yokohama Nat'l Univ. 1@*Tatewaki Takashi 1, Kokubun Yasuo 1 |
| | 8 | Polarization independent microring resonator filter using the control of temperature and stress | Yokohama Nat'l Univ.@*Kobayashi Naoki 1, Nobuhiro Zaizen 1, Kokubun Yasuo 1 |
| | 9 | OCDM coder using cascaded hitless wavelength selective switch | Yokohama Natfl Univ. 1,Tokyo Inst. Tech. 2@*Goebuchi Yuta 1,Kato Tomoyuki 1,2,Kokubun Yasuo 1 |
| ’ | 10 | Multi-wavelength selective switch using double series coupled microring resonator | Yokohama Natfl Univ. 1,Tokyo Inst. Tech. 2@*Goebuchi Yuta 1,Kato Tomoyuki 1,2,Kokubun Yasuo 1 |
| | 11 | Box-like filter response of quadruple series coupled microring resonator by coupling efficiency control | Yokohama Nat'l Univ. 1@*Hisada Masahiko 1,Kokubun Yasuo 1 |
| | 12 | Integration of optical waveguide device with bulk device using vertical optical path conversion by 45-degree mirror | Yokohama Nat'l Univ.,@*Johraku Yasutomo 1,Kokubun Yasuo 1 |
| | 13 | A study of fabrication process of Si wire waveguide | Kanazawa Univ. Graduate School 1.Kanazawa Univ. Faculty of Engineering 2@*Asai Satoshi 1.Wakashima Masahiro 2.Iiyama Koichi 1 |
| | 14 | Fabrication and numerical simulation of nonlinear directional couplers using chalcogenide glasses | Shizuoka Univ. 1@*Nishio Hajime 1,Suzuki Ichiro 1,Ma Zetao 1,Ogusu Kazuhiko 1 |
| | 15 | Bandpass filter based on long-period gratings with core mode blocker | Shizuoka Univ. 1@*Suzuki Shunpei 1, Ito Hisashi 1, Takata Yohei 1, Sakata Hajime 1 |
| | 16 | Optical waveguide biosensors using ligand reaction | Grad. School of Sci. & tech. Kobe Univ. 1@Watanabe Aoi 1,Sumitomo Masahiko 1,Moriwaki Kazuyuki 1,Hishiya Takayuki 1,Takeuchi Toshifumi 1 |
| 5.4 Optical Processing
|
| March 28 9:00`11:50 |
| 28a-ZS-@/ III |
| | 1 | Magneto-Optic Effect in Sputtered Bi3Fe5O12 Waveguide | Research Center for Nanodevice and System, Hiroshima Univ. 1@*Shishido Youhei 1, Tanushi Yuichiro 1, Tokunaga Tomohiro 1,Yokoyama Shin 1 |
| | 2 | Room-temperature bonding of GaN to GaAs and Si | The University of Tokyo@*Higurashi Eiji 1, Tokuda Yuichiro 1, Wakamatsu Tsuguharu 1, Akaike Masatgake 1, Suga Tadatomo 1 |
| | 3 | Intensity change by a HfO2 -waveguide Mach-Zender interferometer with a ferroelectric liquid crystal cladding | Kanagawa Inst Of Technology 1@*Sato Hiroki 1,Nakatsuhara Katsumi 1,Nakagami Takakiyo 1 |
| | 4 | A latch function by a Si-waveguide Mach-Zehnder interferometer having a ferro-electric liquid crystal cladding. | Kanagawa Inst. of Tech. 1@Toyokazu Sasaki 1,Hiroki Sato 1,Katsumi Nakatsuhara 1,Takakiyo Nakagami 1 |
| | | Break 10:00`10:15 | |
| | 5 |
Pioneering study on the basic technologies for
monolithic optoelectronic integrated systems |
Toyohashi University of Technology@* Hiroo Yonezu |
| | 6 | The Change of the Extinction Ratio of a-Si:H/SiN Multilayers Slab Optical Waveguide by Optical Pumping | Waseda Univ. 1, Otsuma Women's Univ. 2@*Hattori Motohiro 1, Murakoshi Kenichi 1, Sakamoto Hajime 1, Tamaru Naoyuki 2, Kato Isamu 1 |
| ’ | 7 | Fabrication and Evaluation of Band-Selection Interleaver on Silicon Waveguide |
Waseda Univ. 1,NanoTechnology Research Center 2@*Matsui
Junya 1,Honda Soichiro 1,Wu Zhigang 1,Utaka Katsuyuki 1,Edura Tomohiko 2,Tokuda
Masahide 2,Tsutsui Ken 2,Wada Yasuo 2 |
| £ | 8 | Ge selective epitaxial growth (SEG) on Si for on-chip photodetectors | Univ. Tokyo 1, NTT MI Labs. 2@*Park Sungbong 1, Ishikawa Yasuhiko 1, Tsuchizawa Tai 2, Watanabe Toshifumi 2, Yamada Koji 2, Itabashi Seiichi 2, Wada Kazumi 1 |
| | 9 | Insulating property of AlN thin film dipped in alkaline developer | Shinshu Univ. 1, CITIZEN FINE TECH CO., LTD. 2@*K. Abe 1, M. Obata 2, C. Fujisawa 2, A. Shiono 1, M. Nakakuki 1, I. Kobayashi 1, T. Yamakami 1, R. Hayashibe 1, K. Kamimura 1 |
| 5.4 Optical Processing
|
| March 29 9:00`19:15 |
| 29a-ZS-@/ III |
| | 1 | Optical Characteristics of a PZT Waveguide Fabricated with Aerosol Deposition for Optical Modulators on LSI Chip | MIRAI-Selete 1, AIST 2@*Shimizu Takanori 1, Nakada Masafumi 1, Tsuda Hiroki 2, Akedo Jun 2, Nishi Ken-ichi 1, Ohashi Keishi 1 |
| | 2 | Measurement of effective electro-optic coefficients (r13E,r33E,r22E) of LiNbO3 crystals at 3.39Κm | Seikei Univ. 1@*Yonekura Kazuya 1, Lianhua Jin 1, Kuniharu Takizawa 1 |
| ’ | 3 | Determination of relative sign between electrooptic coefficient and piezoelectric constant of LiTaO3 crystal | Seikei Univ. 1@*Sugimoto Naoya 1,Yonekura Kazuya 1,Jin Lianhua 1,Takizawa Kuniharu 1 |
| ’ | 4 | LiNbO3 light modulator using electro-optic and inverse piezoelectric effects | Seikei Univ. 1@*Ibayashi Akiko 1, Jin Lianhua 1, Takizawa Kuniharu 1 |
| | 5 | Theoretical Analysis of Optical Deflection by Kerr Effect and Space-Charge-Controlled Electrical Conduction in EO Crystal | NTT Photonics Laboratories@Koichiro Nakamura,Jun Miyazu,Takashi Sakamoto,Kazunori Naganuma,Masahiro Sasaura,Kazuo Fujiura |
| | 6 | Control of Electron Injection into KTN crystals by Electrode Materials | NTT Photonics Labs.@*Miyazu Jun 1, Nakamura Koichiro 1, Enbutsu Koji 1, Imai Tadayuki 1, Fujiura Kazuo 1 |
| | | Break 10:30`10:45 | |
| | 7 | Time-to-space mapping of optical signals with picosecond time resolution using quasi-velocity-matched electrooptic beam deflector | Graduate School of Eng. Sci., Osaka Univ. 1, CASI Osaka Univ. 2 @*Hisatake Shintaro 1, Kobayashi Tetsuro 2 |
| £ | 8 | Enlargement of frequency deviation range in optical FSK modulator with polarization reversal | Osaka Univ. 1@* Pham Ha Viet 1, Murata Hiroshi 1, Okamura Yasuyuki 1 |
| | 9 | Study on electro-optic modulation in LiNbO3 thin-film photonic crystal waveguides | Osaka Univ. 1, Matsushita Electrical Industrial Co. Ltd., Advanced Technology Research Laboratories 2@*Kumagai Hitoshi 1,Murata Hiroshi 1,Enokihara Akira 2, Okamura Yasuyuki 1 |
| | 10 | Fabrication of 2-dimensional periodically inverted domain structure of LiNbO3 | Tokyo Inst. of Tech. 1, RIKEN 2@*Watanabe Kosuke 1, Inoue Shin-ichiro 2,1, Aoyagi Yoshinobu 1,2 |
| | 11 | Characterization of GRIIRA properties in LiNbO3ALiTaO3Aand borate crystals with different composition | Oxide corp.@*Hirohashi Junji, Tago Tsuyoshi, Nakamura Osamu, Miyamoto Akio, Furukawa Yasunori |
| | 12 | Formation of domain-inverted gratings in MgO:LiNbO3 by voltage application with insulation layer cladding | Osaka Univ. 1@Tsubouchi takashi 1, Horikawa Nobuyuki 1,*Fujimura masatoshi 1, Suhara Toshiaki 1 |
| | 13 | Study on the coercive-field measurement in undoped and Mg-doped congruent LiNbO3 | Inst. for Molecular Science@*Ishizuki Hideki 1, Taira Takunori 1 |
| | | Lunch 12:30`13:30 | |
| 29p-ZS-@/ III |
| | 1 | Characterization of basic properties in Mg-doped congruent LiTaO3 crystal | Inst. for Molecular Science@*Ishizuki Hideki 1, Taira Takunori 1 |
| | 2 | Characterization of field-poling properties in 7mol% Mg-doped congruent LiTaO3 crystal | Inst. for Molecular Science@*Ishizuki Hideki 1, Taira Takunori 1 |
| | 3 | Observations of polarization-reversed domain structures by the confocal SHG interference microscope | Waseda Univ. 1,NIMS 2@*Satoshi Kawado 1,Junichi Kaneshiro 1,Hiroko Yokota 1,Yoshiaki Uesu 1,Sunao Kurimura 2 |
| | 4 | Variable wavelength converter fabricated by using direct bonding of LiNbO3 | NTT Photonics Labs.@Asobe Masaki 1,Umeki Tuyoshi 1, Nishida Yoshiki 1,Tadanaga Osamu 1, Suzuki Hiroyuki 1 |
| ’ | 5 | Widely tunable 3.4-µm-band wavelength converter using apodized Τ(2) grating | NTT Photonics Labs@*Takeshi Umeki 1,Masaki Asobe 1, Yoshiki Nishida 1, Osamu Tadanaga 1, Katsuaki Magari, Tsutomu Yanagawa 1, Hiroyuki Suzuki 1 |
| | 6 | Sub-mW mid-infrared DFG laser source using direct-bonded QPM-LN ridge waveguide and laser diodes | NTT Photonics Labs. 1@*Tadanaga Osamu 1, Nishida Yoshiki 1, Yanagawa Tsutomu 1, Magari Katsuaki 1, Umeki Takeshi 1, Asobe Masaki 1, Suzuki Hiroyuki 1 |
| | 7 | Second harmonic generation by periodically poled MgO-doped stoichiometric LiNbO3 ridge waveguide (2) | Oki Electric Industry Co.,Ltd. 1, RIEC Tohoku Univ. 2@*Hideki Ono 1, Yutaka Okabe 1, Hideaki Okayama 1, Hiroki Yasgashi 1, Yoh Ogawa 1, Sigehiro Nagano 2, Hiromasa Ito 2 |
| | 8 | Highly efficient Sum Frequency Generation characteristics in Periodically Poled Lithium Niobate Waveguide | Osaka City Univ. 1, NTT Photonics Labs. 2, NTT Basic Research Labs. 3@*Minami Kazuhiro 1,Inoue Masayuki 1,Miyazaki Daisuke 1,Mukai Takaaki 1,Asobe Masaki 2,Kamada Hidehiko 3 |
| | 9 | Microchip Green Module using periodically poled MgO:SLT | Shimadzu Corp.@*Tokuda Katsuhiko,Hisamitsu Mamoru,Kadokura Kazutomo |
| | 10 | Waveguided PPLN-SHG device with equilateral-type-modulator using dual-phase-shifters. | Grad. Sch. of ISEE., Kyushu Univ.@*Yuji Oki 1, Takahiro Okaguchi 1, Hirofumi Watanabe 1, Tatsuo Okada 1 |
| | | Break 16:00`16:15 | |
| | 11 | Thermal managements for highly efficient SHG with improved input/output characteristics using PPMgSLT |
NIMS 1, SWING 2, Megaopto 3@*Hatano Hideki 1,2,
Takekawa Shunji 1,2, Kurimura Sunao 1, Louchev Oleg 3, Kitamura Kenji 1,2 |
| | 12 | 355nm ultraviolet light generation by cascaded wavelength conversion using PPMgSLT | NIMS 1, SWING 2, Megaopto 3@*Hatano Hideki 1,2, Takekawa Shunji 1,2, Kitamura Kenji 1,2, Sakashita Michio 3, Akagawa Kazuyuki 3 |
| | 13 | High-power, highly efficient second-harmonic generation using a planar-waveguide periodically poled MgO doped LiNbO3 | Information Technology R&D Center, Mitsubishi Electric Corp.@Kiyohide Sakai, Shigetaka Itakura, Yasuharu Koyata, Yoshihito Hirano |
| £’ | 14 | Continuous wave 8.4-W green light generation in periodically poled Mg-doped stoichiometric lithium tantalate | National Inst. for Mat. Sci. (NIMS) 1@*S.V. TOVSTONOG 1, S. KURIMURA 1, K. KITAMURA 1 |
| | 15 | Cascaded third-harmonic generation of ultrashort laser pulses with two-dimensional quasi-phase-matching structure | IIS Univ. of Tokyo 1,Tokyo Univ. of Agri. & Tech. 2,PRESTO JST 3@*Fujioka Nobuhide 1,Ashihara Satoshi 2,3,Ono Hidenobu 1,Shimura Tsutomu 1,Kuroda Kazuo 1 |
| ’ | 16 | Cascaded third-harmonic generation of ultrashort laser pulses with a one-dimensional periodically poled device | IIS Univ. of Tokyo 1, Tokyo Univ. of Agri. & Tech. 2, PREST JST 3 @Kengo Hayashi 1, Nobuhide Fujioka 1, Satoshi Ashihara 2,3, Hidenobu Ono 1,Tsutomu Shimura 1, Kazuo Kuroda 1 |
| ’ | 17 | Third harmonic generation in periodically poled PPMgLN disk resonator | NICT 1@*Kiyotaka Sasagawa 1, Masahiro Tsuchiya 1 |
| | 18 | 266 nm generation by quasi-phase-matching in quartz II | NIMS 1, NIDEK 2@*Adachi Muneyuki 1 2, Kurimura Sunao 1, Hayashi Ken-ichi 2, Kitamura Kenji 1 |
| | 19 | Fabrication and characterization of Type II parametric down-converter using quasi-phase-matched LiNbO3 (2) | RIEC, Tohoku Univ. 1, Nagoya Univ. 2 @*Nagano Shigehiro 1,Suizu Koji 2,Sugiura Yohei 1,Shimizu Ryosuke 1,Edamatsu Keiichi 1,Ito Hiromasa 1 |
| | 20 | Highly Efficient Wavelength Conversion Devices Utilizing Strong Optical Confinement Due to High Index Contrast | Univ. Tokyo@Ikuma Ohta 1, Takahiro Mitada 1, Takashi Kondo 1 |
| ’ | 21 | A novel quasi-phase-matching technique using semiconductor bent waveguides | Univ. Tokyo@*Ishikawa Hiroshi 1, Kondo Takashi 1 |
| | 22 | Mesurement of nonlinear-optical coefficients of widegap semiconductors SiC and GaN | Univ. Tokyo 1,Chuo Univ. 2,Kyoto Univ. 3@*Abe Makoto 1,Maruyama Koichi 2,Sato Hiroaki 2,Tanaka Hiroaki 2,Suda Jun 3,Shoji Ichiro 2,Kondo Takashi 3 |
| 5.4 Optical Processing
|
| March 30 9:00`15:00 |
| 30a-SG-@/ III |
| ’ | 1 | Coupling characteristics of slow light optical modulator with Bragg reflector waveguide. | Tokyo Inst. Of Tech. 1, P&I Lab. 2@*Hirano Go, Kuroki Keisuke, Koyama Fumio |
| | 2 | Carrier effect in a doped and reverse-biased MQWs and its applicability to optical phase modulators | RCAST The Univ. of Tokyo 1, Tokyo Univ. of Agri. Tech. 2, JST-SORST 3@*Hideki Ooe 1,3, Hiromasa Shimizu 2,3, Yoshiaki Nakano 1,3 |
| | 3 | GaAs/AlGaAs Five-Layer Asymmetric Coupled Quantum Well Mach-Zehnder Optical Modulator (III) | Yokohama Univ.1 ,Kanazawa Inst of Tec.2 ,Yokogawa Ele.3@*Takehiro Arima 1, Hiroyuki Matsumoto 1, Wataru Endo 1, Tarou Arakawa1, Kunio Tada 2, J.-H. Noh3 |
| | 4 | Mach-Zehnder optical modulator based on InGaAs/InAlAs Five Layer Asymmetric Coupled Quantum Wells (FACQW) | Yokohama Nat'l Univ. 1,Kanazawa Inst.Tech. 2@*Uchimura Takahiro 1.Hariki Takehiro 1,Negishi Yasuyuki 1,Toya Takahiro 1,Arakawa Taro 1,Tada Kunio 2 |
| ’ | 5 | High Speed Response of Optical Nonlinear Phase Shifter Based On 1.55 \mu m VCSEL | Tokyo Tech. 1, Corning Inc.(presently Tokyo Tech.) 2, Corning Inc. 3@Satoshi Suda 1, Fumio Koyama 1, Nobuhiko Nishiyama 2, Catherine Caneau 3, Chung-En Zah 3 |
| | 6 | Optical Response of InP-based HEMT and its Application to Optically Controlled Millimeter-Wave Oscillator | Osaka Univ. 1, NTT Photonics Lab. 2@Noriyo Kobayashi 1, Hiroshi Murata 1, Toshihiko Kosugi 2, Takatomo Enoki 2, Yasuyuki Okamura 1 |
| | 7 | Optically controlled microwave signals -Spatial light modulator based optically controlled phased array antenna | Mitsubishi Electric Corporation@*Akiyama Tomohiro 1, Suzuki Jiro 1, Ando Toshyuki 1, Hirano Yoshihito 1 |
| | | Break 10:45`10:50 | |
| | 8 | A High-Speed Optically Clocked Transistor Array and its Application to Processing of Asynchronous Optical Packets | NTT Photonics Labs 1@*Urata Ryohei 1, Takahashi Ryo 1, Nakahara Tatsushi 1, Suemitsu Tetsuya 1, Suzuki Hiroyuki 1 |
| | 9 | Polarization-independent, 160 Gbps all-optical clock recovery using a mode-locked laser diode | Oki Electric Industry 1@Arahira Shin 1, Ogawa Yoh 1 |
| | 10 | Study of Optical Signal Regenerating Directional Coupler Loaded with SOA and Long-Period Grating | Waseda Univ. 1@*Kawakami Yasuhiro 1,Ochiai Takanori 1,Utaka Katuyuki 1 |
| | 11 | Analysis of operating condition of semiconductor optical digital-to-analog converter | P&I Lab., Tokyo Inst. of Tech. 1@*Kengo Sawada 1, Hiroyuki Uenohara 1 |
| | | Lunch 12:05`12:45 | |
| 30p-SG-@/ III |
| | 1 | Intersubband transition in GaN/AlN multiple quantum disk nanocolumns | Sophia Univ.1,CREST-JST 2@*Tanaka Kaiichi 1,Ikuno Keita 1,Kasai Youhei 1,Fukunaga Kazuya 1,Kunugita Hideyuki 1,2,Ema Kazuhiro 1,2,Kikuchi Akihiko 1,2,Kishino Katsumi 1,2 |
| ’ | 2 | Waveguide fabrication for improvement of saturation efficiency in AlN/GaN MQW ISBT switch device | Univ. Tokyo 1, RCAST 2, JST-SORST 3, Toshiba 4@* Toshimasa Shimizu 1,2,3, Norio Iizuka 4, Masakazu Sugiyama 1,3, Yoshiaki Nakano 1,2,3 |
| ’ | 3 | Characterization of narrow mesa width waveguide for all optical switching device based on intersubband transition in II-VI based quantum well | Tokyo University of Science, Faculty of Industrial Science and Technology 1, National Institute of Advanced Industrial Science and Technology (AIST), Ultrafast Photonic Devices Laboratory 2@Kazumichi Akita 1 2, Ryoichi Akimoto 2, Cong Guangwei 2, Toshifumi Hasama 2,Hiroshi Ishikawa 2, Yoshifumi Takanashi 1@ |
| £ | 4 | Verification of plasma dispersion effect as the cause of ultrafast phase modulation in InGaAs/AlAsSb CDQW ISBT switch | AIST 1@Lim Cheng Guan 1, Simoyama Takasi 1, Mozume Teruo 1, Nagase Masanori 1, Tsuchida Hidemi 1, Hasama Toshifumi 1, Ishikawa Hiroshi 1 |
| £ | 5 | Numerical studies on the roles of the sublevel-coupling enhancement for ultrafast intersubband optical switch | AIST Ultrafast Photonic Devices Lab.@Cong Guangwei 1, Ryoichi Akimoto 1,Kazumichi Akita 1,Toshifumi Hasama 1,Hiroshi Ishikawa 1 |
| | 6 | Analysis of Multimode Interference Photonic Switch using Mach-Zehnder Interferometer(MIPS-MZI) | Waseda Univ. 1@*Ishikawa Tomohiro 1,Ueda Yuuta 1,Utaka Katsuyuki 1 |
| | 7 | Electric power reduction of wavelength switch in selectively grown waveguide array using thermo-optic effect | Sophia Univ. 1@Yoshioka Taichi 1,Shimizu Yu 1,Mogi Mizuho 1,Shimomura Kazuhiko 1 |
| £ | 8 | Source power effect on inductive coupled plasma (ICP) etching of InP near an optimized etching point |
RCAST, The University of Tokyo 1,JST-SORST 2@*Salah
Ibrahim 1, Shu Murakami 1, Masakazu Sugiyama 1,2, Yoshiaki Nakano 1,2 |
| ’ | 9 | Reduced insertion loss and single mode propagation in TM-mode waveguide optical isolators based on the nonreciprocal loss | RCAST 1, Dept. of Elect. Eng., Univ. of Tokyo 2, Tokyo Univ. of Agri. & Tech. 3, JST-SORST 4, @Tomohiro Amemiya 1,4, Hiromasa Shimizu 3,4, Masafumi Yokoyama 2,4, P.N. Hai 2,4, Masaaki Tanaka 2,4 and Yoshiaki Nakano 1,4@ |
| 5.5 Optical Fibers |
| March 29 |
| 29p-P8-@/ III |
| |
|
Poster Session
29p-P8-1`21 15:30`17:30 |
| | 1 | Numerical Analysis of Supercontinuum Generation in a Controlling Dispersion Tapered Fiber with Optical Pulses at 1064 nm. | Kitami Inst. of Tech. 1, Muroran Inst. of Tech. 2@*Hiroyasu SONE 1, Zhaoyang WANG 2, Yasuhide TSUJI 1, Masaaki IMAI 2, Yasuhiro HARADA 1, Koichi HIRAYAMA 1, Yukinari HAYASHI 1 |
| | 2 | Tapering of tellurite fiber using CO2 laser irradiation | Ibaraki Univ 1,NTT Photonics Lab 2@*Kimura Mitsunobu 1,Nakamura Yuusuke 1,Kawashiri Hiroki 1,Yokota Hirohisa 1,Sasaki Yutaka 1,Mori Atsusi 2 |
| | 3 | Characteristic improvement of super structure fiber grating coupler | Ibaraki Univ. 1@*Fukuda seiji 1,Yokota Hirohisa 1,Sasaki Yutaka 1 |
| | 4 | Study of connecting loss suppression of a high-nonlinear photonic crystal fiber using CO2 laser irradiation | Ibaraki Univ. 1@*Yashima Hirotomo 1,Yokota Hirohisa 1,Sasaki Yutaka 1 |
| | 5 | Stability in Bandwidth of W-shaped Plastic Optical Fiber for Fiber Static Bending | Graduate School of Science and Technology, Keio Univ. 1, JST ERATO-SORST 2@*Aoyagi Kenichi 1,2, Ishiyama Yorichika 1,2, Ishigure Takaaki 1,2, Koike Yasuhiro 1,2 |
| | 6 | Effect of Polymer Jacket on OH contents of Silica Optical Fiber at Elevated Temperature | Tohoku Univ. 1, IMR Tohoku Univ. 2 @*Shuhei Kondo 1, Kentaro Toh 2, Shinji Nagata 2, Bun Tsuchiya 2, Tatsuo Shikama 2 |
| | 7 | Development of optical fiber sensor fabrication technique by vacuum ultraviolet light II |
Univ. of Miyazaki1, JST satellite Miyazaki2, Toyoko
ELMES Co.,LTD.3@Makoto Wasamoto1, Tomohiro Kuriaki1, Yoshinari Maezono2,
Yousuke Iwasa2, Ikuo Yamamoto3, Masahito Katto1, *Atsushi Yokotani1 |
| | 8 | Development of optical fiber Bragg grating fabrication technique by a near ultraviolet laser | JST satellite Miyazaki1, Toyoko ELMES Co.,LTD.2, Univ. of Miyazaki3@Y. Maezono1, Y. Iwasa1, I. Yamamoto2, M. Katto3, *A. Yokotani3 |
| | 9 | Extension of measurement range of multipoint reflectometry optical fiber strain sensor | Fukui Univ. 1@*Hirata Yuu 1, Uno Kyousuke 1, Kobayashi Takao 1 |
| | 10 | High precision operation of FBG underwater acoustic sensor using EO modulated light | National Defense Academy 1, JAMSTEC 2@Yokosuka Hiroki 1, Tanaka Satoshi 1, Inamoto Kiyoyuki 1, Takahashi Nobuaki 1, Sawa Takao 2, Asakawa Kenichi 2 |
| | 11 | Characteristics of Fabry-Perot type multi-wavelength fiber laser – Application to FBG vibration sensing – | National@Defense Academy@*Kiyoyuki Inamoto, Satoshi Tanaka, Hiroki Yokosuka and Nobuaki Takahashi |
| | 12 | SOA -Fiber Ring Laser Sensor - III | Gunma Univ. 1@*Otani Hiromu 1, Takahashi Yoshitaka 1 |
| | 13 | Optical Sensing of Alcohol Vapor Using Small Core-Sized Polymer Waveguide with Sensing Clad | Univ. of Yamanashi 15@*Nagata jun-ichi 1, Honma Satoshi 1, Morisawa Masayuki 1, Muto Shinzo 1 |
| | 14 | Plastic Optical Fiber Sensing of Multi-Point Leakage Using Several Wavelength | Univ. of Yamanashi 1@Hirohumi Suzumori, Kazuya Iijima, Satoshi Honma, Masayuki Morisawa, Shinzo Muto |
| | 15 | Recognition of Voiceless Consonannt Using Plastic Optical Fiber Microphone | Univ. of Yamanashi@Taki Tomohito,Ti@Kai,@Honma@Satoshi,@Morisawa@Masayuki,@* Muto Shinzo |
| | 16 | Low power digital remote sensor based on optical powering | Tokyo Univ. of A&T.@*Chanty Rotha, Takeshi Nishimura, Muneyuki Nakagawa, Yosuke Tanaka, Tatsutoshi Shioda, Takashi Kurokawa |
| | 17 | Estimation of stimulated Brillouin scattering lights occured in Bismuth based fiber | Mitsubishi Electric Corp. Information Technology R&D Center@Sakimura Takeshi 1, Ando Toshiyuki 1, Hirano Yoshihito 1 |
| | 18 | Estimation of BGS phase characteristics using properly modulated probe light | National defense ac. 1@*kim Jungmin 1, Yamaguchi Teppei 1, Tsuji Kenichiro 1, Onodera Noriaki 1, Saruwatari Masatoshi 1 |
| | 19 | High-precision measurement of the Brillouin gain spectra of optical fibers with one-way injection of phase-modulated probe light | National Defense Academy 1@*Tsuji Kenichiro 1, Inaba Yuichi 1, Kim Jungmin 1, Yamaguchi Teppei 1, Onodera Noriaki 1, Saruwatari Masatoshi 1 |
| | 20 | Measurement of nonlinear refractive index by using nonlinear dynamics generated in modulated OFRR III | Ibaraki Univ. 1.@*Masakuni Mimuro, Kazusige Kanbe, Satosi Yamauchi, Yoh Imai |
| | 21 | Pulse compression of multimode oscillation pulses from gain-switched laser diode using fiber interferometer | Osaka Pref. Univ.@*Takamatsu Shuji 1, Watanabe Hideyuki 1, Wada Kenji 1, Matsuyama Tetsuya 1, Horinaka Hiromichi 1 |