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首页> 外文期刊>IEEE Journal of Quantum Electronics >Phase Correlation and Linewidth Reduction of 40 GHz Self-Pulsation in Distributed Bragg Reflector Semiconductor Lasers
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Phase Correlation and Linewidth Reduction of 40 GHz Self-Pulsation in Distributed Bragg Reflector Semiconductor Lasers

机译:分布式布拉格反射半导体激光器中40 GHz自脉动的相位相关和线宽减小

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摘要

In this paper, self-pulsation (SP) in a distributed Bragg reflector (DBR) semiconductor laser without a saturable absorber is experimentally and theoretically investigated. Detailed experimental characterizations of the SP DBR laser are reported in the optical and radio-frequency domains. Phase correlation between the longitudinal modes selected by the DBR mirror has been experimentally demonstrated. A theoretical model based on coupled rate equations for three modes has been developed to study the time evolution of phases and amplitudes of the modes. The carrier density modulation, resulting from the beating between adjacent longitudinal modes generates four-wave mixing (FWM) and is responsible for mutual injection locking, leading to passive mode-locking. The calculated power spectral density of the frequency noise derived from the model is in agreement with experimental results and proves that the phases of the longitudinal modes are identically correlated through the FWM process in this type of SP lasers
机译:本文对无饱和吸收体的分布式布拉格反射器(DBR)半导体激光器中的自脉冲(SP)进行了实验和理论研究。 SP DBR激光器的详细实验特性已在光学和射频领域报告。已经通过实验证明了由DBR反射镜选择的纵向模式之间的相位相关性。已经开发了基于耦合速率方程的三种模式的理论模型,以研究模式的相位和幅度的时间演化。由相邻纵向模式之间的跳动引起的载流子密度调制会产生四波混频(FWM),并导致相互注入锁定,从而导致无源模式锁定。从模型得出的频率噪声的功率谱密度计算结果与实验结果一致,并证明了通过这种类型的SP激光器的FWM过程,纵模的相位是相同相关的。

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