Presentation 2007-01-29
Chaotic Dynamics in the Optical Feedback Instabilities of 650nm Band Red Light Semiconductor Lasers and its Control for Noise Reduction
Katsuya TAKEGAMI, Naoki TSUTSUMI, Wakao SASAKI,
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Abstract(in English) Optical feedback causes periodic and chaotic oscillations in the semiconductor laser output power and leads to relative intensity noise (RIN) enhancement. In this report, we have investigated dynamical behaviors of a red light semiconductor laser with external optical feedback such as stable state, periodic and quasi-periodic oscillations, and chaos with the change of the system parameter values. In addition, the RIN suppressing technique known as a high frequency injection modulation is turned into a problem of stabilizing chaos through parameter modulations. We have achieved the RIN suppression when the feedback-induced chaos is effectively controlled with the optimized modulation frequency.
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Keyword(in English) red light semiconductor lasers / optical feedback instabilities / chaotic dynamics / chaos control / rate equations / relative intensity noise
Paper # PN2006-48,OPE2006-130,LQE2006-119
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Conference Date 2007/1/22(1days)
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Language JPN
Title (in Japanese) (See Japanese page)
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Title (in English) Chaotic Dynamics in the Optical Feedback Instabilities of 650nm Band Red Light Semiconductor Lasers and its Control for Noise Reduction
Sub Title (in English)
Keyword(1) red light semiconductor lasers
Keyword(2) optical feedback instabilities
Keyword(3) chaotic dynamics
Keyword(4) chaos control
Keyword(5) rate equations
Keyword(6) relative intensity noise
1st Author's Name Katsuya TAKEGAMI
1st Author's Affiliation Department of Electronics, Doshisha University()
2nd Author's Name Naoki TSUTSUMI
2nd Author's Affiliation /
3rd Author's Name Wakao SASAKI
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Date 2007-01-29
Paper # PN2006-48,OPE2006-130,LQE2006-119
Volume (vol) vol.106
Number (no) 513
Page pp.pp.-
#Pages 6
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