Modulation Characteristics Enhancement of Monolithically Integrated Laser Diodes Under Mutual Injection Locking

Modulation characteristics enhancement by mutual injection locking of monolithically integrated distributed feedback (DFB) lasers is studied. Locking bistability in mutually coupled integrated lasers is observed. Resonance frequency as high as 34.3 GHz is recorded, corresponding to more than fivefol...

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Published inIEEE journal of selected topics in quantum electronics Vol. 21; no. 6; pp. 628 - 635
Main Authors Sun, Changzheng, Liu, Dong, Xiong, Bing, Luo, Yi, Wang, Jian, Hao, Zhibiao, Han, Yanjun, Wang, Lai, Li, Hongtao
Format Journal Article
LanguageEnglish
Published IEEE 01.11.2015
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Abstract Modulation characteristics enhancement by mutual injection locking of monolithically integrated distributed feedback (DFB) lasers is studied. Locking bistability in mutually coupled integrated lasers is observed. Resonance frequency as high as 34.3 GHz is recorded, corresponding to more than fivefold enhancement over the relaxation oscillation frequency at free running state. The mutually injection-locked lasers exhibit reduced harmonics and third-order intermodulation distortion, as well as suppressed relative intensity noise near the relaxation oscillation frequency. The spurious-free dynamic range is improved from 75 to 80 dB·Hz 2/3 . Furthermore, alleviation of chirp-induced power fading in analog optical links has been demonstrated. To our knowledge, this is the first time that suppressed nonlinear distortion and noise as well as chirp reduction are simultaneously demonstrated for monolithic mutually injection-locked DFB lasers.
AbstractList Modulation characteristics enhancement by mutual injection locking of monolithically integrated distributed feedback (DFB) lasers is studied. Locking bistability in mutually coupled integrated lasers is observed. Resonance frequency as high as 34.3 GHz is recorded, corresponding to more than fivefold enhancement over the relaxation oscillation frequency at free running state. The mutually injection-locked lasers exhibit reduced harmonics and third-order intermodulation distortion, as well as suppressed relative intensity noise near the relaxation oscillation frequency. The spurious-free dynamic range is improved from 75 to 80 dB·Hz 2/3 . Furthermore, alleviation of chirp-induced power fading in analog optical links has been demonstrated. To our knowledge, this is the first time that suppressed nonlinear distortion and noise as well as chirp reduction are simultaneously demonstrated for monolithic mutually injection-locked DFB lasers.
Author Yi Luo
Lai Wang
Yanjun Han
Changzheng Sun
Jian Wang
Zhibiao Hao
Hongtao Li
Dong Liu
Bing Xiong
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modulation frequency response
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monolithic integration
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Snippet Modulation characteristics enhancement by mutual injection locking of monolithically integrated distributed feedback (DFB) lasers is studied. Locking...
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SubjectTerms chirp
Couplings
Frequency modulation
injection locking
Injection-locked oscillators
modulation frequency response
monolithic integration
Nonlinear optics
Optical modulation
Resonant frequency
Title Modulation Characteristics Enhancement of Monolithically Integrated Laser Diodes Under Mutual Injection Locking
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