Presentation 2004/1/22
Attenuation and phase tunable AWG and its application to photonic network
Naoya WADA, Yuki KOMAI, Hiroko WATANABE, Fumito KUBOTA, Kashiko KODATE,
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Abstract(in English) As an optical spectrum synthesizer, a new planer light-wave circuit device based on attenuation and phase tunable arrayed wave-guide grating (AWG) is proposed and experimentally tested. Its tuning time is less than 3 ms. As its application to photonic network, 20 to 160 GHz variable rate pulse train generation, carrier suppressed return to zero (CS-RZ) pulse train generation, waveform shaping, and spectrum domain matched filtering systems are proposed and experimentally demonstrated.
Keyword(in Japanese) (See Japanese page)
Keyword(in English) Arrayed wave-guide grating (AWG) / Planer light-wave circuit (PLC) / Optical spectrum synthesizing / Photonic network
Paper # PN2003-74,OFT2003-96,OPE2003-253,LQE2003-190
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Committee LQE
Conference Date 2004/1/22(1days)
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Registration To Lasers and Quantum Electronics (LQE)
Language JPN
Title (in Japanese) (See Japanese page)
Sub Title (in Japanese) (See Japanese page)
Title (in English) Attenuation and phase tunable AWG and its application to photonic network
Sub Title (in English)
Keyword(1) Arrayed wave-guide grating (AWG)
Keyword(2) Planer light-wave circuit (PLC)
Keyword(3) Optical spectrum synthesizing
Keyword(4) Photonic network
1st Author's Name Naoya WADA
1st Author's Affiliation Communications Research Laboratory, Information and Network Systems Division, Ultra-fast Photonic Network Group()
2nd Author's Name Yuki KOMAI
2nd Author's Affiliation Japan Women's University, Faculty of Science, Department of Mathematical and Physical Sciences
3rd Author's Name Hiroko WATANABE
3rd Author's Affiliation Japan Women's University, Faculty of Science, Department of Mathematical and Physical Sciences
4th Author's Name Fumito KUBOTA
4th Author's Affiliation Communications Research Laboratory, Information and Network Systems Division, Ultra-fast Photonic Network Group
5th Author's Name Kashiko KODATE
5th Author's Affiliation Japan Women's University, Faculty of Science, Department of Mathematical and Physical Sciences
Date 2004/1/22
Paper # PN2003-74,OFT2003-96,OPE2003-253,LQE2003-190
Volume (vol) vol.103
Number (no) 620
Page pp.pp.-
#Pages 6
Date of Issue