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 Conference Papers (Available on Advance Programs)  (Sort by: Date Descending)
 Results 1 - 20 of 59  /  [Next]  
Committee Date Time Place Paper Title / Authors Abstract Paper #
CS 2023-07-28
13:15
Tokyo Hachijo-machi Chamber of Commerce and Industry [Invited Talk] Comparison of signal quality between electrical and optical superposition of AMCC signals in SOA-integrated EA-DFB Laser
Yasunari Tanaka, Takuya Kanai, Mingchen Chen, Takahiko Shindo, Kazutaka Hara, Hirotaka Nakamura, Jun-ichi Kani, Kimikazu Sano, Tomoaki Yoshida (NTT) CS2023-54
The All-Photonics Network (APN) has been proposed that realizes direct optical connection with large capacity, low laten... [more] CS2023-54
pp.141-145
CQ, CS
(Joint)
2022-05-13
16:10
Fukui Fukui (Fuku Pref.)
(Primary: On-site, Secondary: Online)
Comparison of signal quality between electrical and optical superposition of AMCC signals in SOA-integrated EA-DFB Laser
Yasunari Tanaka, Takuya Kanai, Mingchen Chen, Takahiko Shindo, Kazutaka Hara, Hirotaka Nakamura, Jun-ichi Kani, Kimikazu Sano, Tomoaki Yoshida (NTT) CS2022-8
The All-Photonics Network (APN) has been proposed that realizes direct optical connection with large capacity, low laten... [more] CS2022-8
pp.31-36
R, LQE, OPE, CPM, EMD 2020-08-28
11:25
Online Online Precision Improvement of FMCS LiDAR by Point Spread Function using Spectrum
Masahiro Ueno, Yurina Tanaka, Yuichi Akage, Takashi Sakamoto, Sohan Kawamura, Souichi Oka (NTT) R2020-11 EMD2020-10 CPM2020-3 OPE2020-23 LQE2020-3
Ranging precision is a important performance index in FMCW LiDAR, which is one of ranging technologies using light. In F... [more] R2020-11 EMD2020-10 CPM2020-3 OPE2020-23 LQE2020-3
pp.11-16
LQE, OPE, SIPH 2018-12-07
11:45
Tokyo Keio University [Invited Talk] Recent Progress on 53-Gbaud EA/DFB and DFB Lasers for 400GbE Applications
Kazuhiko Naoe, Takayuki Nakajima, Yoshihiro Nakai, Yoriyoshi Yamaguchi, Yasushi Sakuma, Noriko Sasada (Oclaro) OPE2018-133 LQE2018-143 SIPH2018-49
High speed lasers of both Electro-Absorption modulator integrated DFB (EA/DFB) lasers and directly modulated DFB lasers ... [more] OPE2018-133 LQE2018-143 SIPH2018-49
pp.183-188
EMD, LQE, OPE, CPM, R 2018-08-24
13:40
Hokkaido Otaru Camber of Commerce & Industry Oscillation chracteristics of a narrow linewidth DFB LD array with an optical feedback method
Keisuke Kasai, Masataka Nakazawa (Tohoku Univ.) R2018-31 EMD2018-34 CPM2018-34 OPE2018-61 LQE2018-50
We describe a 1.5 m, narrow linewidth, high output power wavelength tunable LD with a self-optical feedback circuit. By... [more] R2018-31 EMD2018-34 CPM2018-34 OPE2018-61 LQE2018-50
pp.73-78
EMT, EST, LQE, MWP, OPE, PEM, PN, IEE-EMT [detail] 2018-01-25
14:15
Hyogo   Fast Wavelength Switching Technique in DFB Array with High-Stable Output Power and Large Tuning Range
Yuto Ueno, Keita Mochizuki, Kiyotomo Hasegawa, Masamichi Nogami, Hiroshi Aruga (Mitsubishi Electric Corp.) PN2017-61 EMT2017-98 OPE2017-139 LQE2017-121 EST2017-97 MWP2017-74
We have invented fast wavelength switching method which combines the manipulation of the laser injection current with th... [more] PN2017-61 EMT2017-98 OPE2017-139 LQE2017-121 EST2017-97 MWP2017-74
pp.127-130
R, EMD, CPM, LQE, OPE 2017-09-01
10:40
Aomori   Temperature dependance of threshold current of membrane DFB/DR lasers using Bragg wavelength detuning
Daisuke Inoue, Kai Fukuda, Takuo Hiratani, Takahiro Tomiyasu, Tatsuya Uryu, Tomohiro Amemiya, Nobuhiko Nishiyama, Shigehisa Arai (Tokyo Inst. of Tech.) R2017-34 EMD2017-28 CPM2017-49 OPE2017-58 LQE2017-31
The performance of integrated circuits has proceeded to higher integration density and speed based on scaling law in MOS... [more] R2017-34 EMD2017-28 CPM2017-49 OPE2017-58 LQE2017-31
pp.51-54
LQE, LSJ 2017-05-26
15:25
Ishikawa   Low Power Consumption Operation of 1.3um Quantum Dot DFB Lasers under Wide Temperature Range
Nobuaki Hatori, Seok-hwan Jeong, Yu Tanaka (PETRA) LQE2017-20
We have investigated quantum dot distributed feedback (DFB) lasers for low power consumption operation in wide temperatu... [more] LQE2017-20
pp.85-88
OPE, EST, LQE, EMT, PN, MWP, IEE-EMT [detail] 2017-01-19
10:20
Mie Iseshi Kanko Bunka Kaikan 25.8-Gbps Uncooled Operation of 1.3-μm InGaAlAs-MQW Directly Modulated DFB Lasers up to 120℃
Akira Nakanishi, Takayuki Nakajima, Noriko Sasada, Shigenori Hayakawa, Yasushi Sakuma, Ryu Washino, Masaru Mukaikubo, Daisuke Noguchi, Sachiko Mizuseki, Norimichi Shibuya, Kazuhiko Naoe, Kouji Nakahara, Kazuhisa Uomi (Oclaro) PN2016-65 EMT2016-94 OPE2016-140 LQE2016-129 EST2016-104 MWP2016-78
High-temperature 25.8-Gbps clear-eye-opening of a 1.3-μm InGaAlAs-MQW directly modulated DFB laser with ACPM grating for... [more] PN2016-65 EMT2016-94 OPE2016-140 LQE2016-129 EST2016-104 MWP2016-78
pp.135-138
LQE, OPE, EMD, R, CPM 2016-08-26
14:10
Hokkaido   Dual-output Wavelength-tunable LD Module using rear-side wavelength monitor for Micro-ITLA
Keita Mochizuki, Yuto Ueno, Kiyotomo Hasegawa, Fukiko Hirose, Satoshi Kajiya, Masamichi Nogami, Hiroshi Aruga (Mitsubishi Electric Corp.) R2016-41 EMD2016-45 CPM2016-54 OPE2016-75 LQE2016-50
We propose a novel wavelength-tunable dual-output laser module using a rear wavelength monitor with no additional optica... [more] R2016-41 EMD2016-45 CPM2016-54 OPE2016-75 LQE2016-50
pp.109-112
LQE, EST, OPE, EMT, PN, MWP, IEE-EMT, PEM [detail] 2016-01-28
10:30
Hyogo   Fast Wavelength Switching Techonology in Wavelength Tunable Laser
Yuto Ueno, Keita Mochizuki, Kiyotomo Hasegawa, Masamichi Nogami, Hiroshi Aruga (Mitsubishi Electric Corp.) PN2015-37 EMT2015-88 OPE2015-150 LQE2015-137 EST2015-94 MWP2015-63
In WDM network, wavelength tunable lasers which can offer high-speed wavelength switching are required due to the high d... [more] PN2015-37 EMT2015-88 OPE2015-150 LQE2015-137 EST2015-94 MWP2015-63
pp.17-20
CPM, OPE, LQE, R, EMD 2015-08-28
10:30
Aomori Aomori-Bussankan-Asupamu A 50-Gb/s Optical Transmitter Using a Lens-integrated DFB-LD and a Laser Diode Driver based on 0.18-um SiGe Process
Takashi Takemoto, Yasunobu Matsuoka, Hidenori Yonezawa, Hiroki Yamashita, Koichiro Adachi, Takahiro Nakamura, Hideo Arimoto (Hitachi) R2015-39 EMD2015-47 CPM2015-63 OPE2015-78 LQE2015-47
The current explosive increase in the data traffic causes a rapid expansion in the total throughput for intra-rack and r... [more] R2015-39 EMD2015-47 CPM2015-63 OPE2015-78 LQE2015-47
pp.81-86
CPM, OPE, LQE, R, EMD 2015-08-28
10:55
Aomori Aomori-Bussankan-Asupamu 25.8 Gbps Direct Modulation AlGaInAs DFB-LD with Low Power Consumption for 100 Gbps Application in the Data Center
Naoki Nakamura, Masaaki Shimada, Go Sakaino, Takashi Nagira, Harunaka Yamaguchi, Yuichiro Okunuki, Atsushi Sugitatsu, Masayoshi Takemi (Mitsubishi Electric) R2015-40 EMD2015-48 CPM2015-64 OPE2015-79 LQE2015-48
Data centers are introducing 100Gbps network systems because of data traffic increasing, and also require lower power co... [more] R2015-40 EMD2015-48 CPM2015-64 OPE2015-79 LQE2015-48
pp.87-90
LQE, OPE 2015-06-19
14:50
Tokyo   Tunable Light Source Integrated with DFB Laser Array for Future Coherent Systems
Tatsuro Kurobe, Toshio Kimura, Hiroyuki Koshi, Toshikazu Mukaihara (Furukawa Electric Co., Ltd.) OPE2015-16 LQE2015-26
We describe the challenges and solutions for future narrow linewidth lasers with small footprint. We fabricated DR laser... [more] OPE2015-16 LQE2015-26
pp.31-34
LQE, OPE 2015-06-19
15:50
Tokyo   Error Free 10km-SMF Transmission Using 25.8 Gbps Direct Modulation of 1.3μm-DFB Lasers up to 85℃ for Compact 100GbE Transceivers
Takayuki Nakajima, Toshihiko Fukamachi, Mitsuo Akashi, Atsushi Nakamura, Yasushi Sakuma, Shigenori Hayakawa, Ryu Washino, Masaru Mukaikubo, Kaoru Okamoto, Katsuya Motoda, Kazuhiko Naoe, Kouji Nakahara, Shigehisa Tanaka, Kazuhisa Uomi (Oclaro) OPE2015-18 LQE2015-28
We developed four 25.8 Gbps InGaAlAs-MQW DFB lasers modulated directly which have four lasing wavelengths correspond to ... [more] OPE2015-18 LQE2015-28
pp.39-42
OPE, LQE 2014-12-19
15:15
Tokyo Kikai-Shinko-Kaikan, NTT Atsugi R&D center Low Power-consumption Distributed Feedback Quantum Cascade Laser (DFB-QCL) at λ=7μm
Jun-ichi Hashimoto, Hiroyuki Yoshinaga, Hiroki Mori, Yukihiro Tsuji, Makoto Murata, Mitsuru Ekawa, Toshiyuki Tanahashi, Tsukuru Katsuyama (Sumitomo Electric) OPE2014-147 LQE2014-134
We developed a low power-consumption DFB-QCL atλ=7μm used for gas-sensors. For power-consumption reduction, we introduce... [more] OPE2014-147 LQE2014-134
pp.41-46
OCS, OPE, LQE 2014-10-30
17:45
Nagasaki Nagasaki Museum of History and Culture Fabrication of membrane lasers by epitaxial growth of InP using InP-based active layer film on SiO2/Si substrate
Takuro Fujii, Tomonari Sato, Koji Takeda, Koichi Hasebe, Takaaki Kakitsuka, Shinji Matsuo (NTT) OCS2014-68 OPE2014-112 LQE2014-86
Integration of III-V lasers on a Si substrate is the key to realizing large-scale photonic integrated circuits (PICs) us... [more] OCS2014-68 OPE2014-112 LQE2014-86
pp.135-140
OCS, OPE, LQE 2014-10-31
16:05
Nagasaki Nagasaki Museum of History and Culture [Invited Talk] 8 x 50-Gb/s EADFB laser array module using flip-chip interconnection technique
Shigeru Kanazawa, Takeshi Fujisawa, Kiyoto Takahata, Hiroaki Sanjoh, Ryuzo Iga, Hiroyuki Ishii (NTT) OCS2014-82 OPE2014-126 LQE2014-100
We developed the first flip-chip interconnection EADFB laser array module for 400G system. The flip-chip interconnection... [more] OCS2014-82 OPE2014-126 LQE2014-100
pp.211-214
EMD, LQE, OPE, CPM, R 2014-08-21
11:15
Hokkaido Otaru Economy Center Lateral current injection DFB laser on Si/SiO2 substrate
Shinji Matsuo, Takuro Fujii, Koichi Hasebe, Koji Takeda, Tomonari Sato, Takaaki Kakitsuka (NTT) R2014-25 EMD2014-30 CPM2014-45 OPE2014-55 LQE2014-29
Membrane lasers with buried heterostructure are expected to obtain extremely small operating energy because of the enhan... [more] R2014-25 EMD2014-30 CPM2014-45 OPE2014-55 LQE2014-29
pp.13-16
EMD, LQE, OPE, CPM, R 2014-08-21
11:35
Hokkaido Otaru Economy Center Integrated waveguide type membrane DFB lasers by BCB bonding on Si substrate
Daisuke Inoue, Jieun Lee, Takuo Hiratani, Yuki Atsuji, Tomohiro Amemiya, Nobuhiko Nishiyama, Shigehisa Arai (Tokyo Inst. of Tech.) R2014-26 EMD2014-31 CPM2014-46 OPE2014-56 LQE2014-30
On-chip optical interconnection technology which can replace copper electrical global wiring to optical wiring is expect... [more] R2014-26 EMD2014-31 CPM2014-46 OPE2014-56 LQE2014-30
pp.17-22
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