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首页> 外文期刊>IEEE Journal of Quantum Electronics >A Michelson interferometer with balanced detection for the characterization of modulation and noise properties of semiconductor lasers
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A Michelson interferometer with balanced detection for the characterization of modulation and noise properties of semiconductor lasers

机译:具有平衡检测功能的迈克尔逊干涉仪,用于表征半导体激光器的调制和噪声特性

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A Michelson interferometer with balanced detection, built to study semiconductor lasers, is analyzed. The quantum noise due to vacuum fluctuations, coupling losses, detector quantum efficiency, and spatial mode mismatches are included in the analysis. The limits for frequency noise detection and the sensitivity of the interferometer are examined. It is observed that under ordinary measurement conditions the frequency noise can only be measured up to slightly above the cavity bandwidth of the laser. Comprehensive measurement procedures are proposed, and experimental results showing the frequency modulation response, measured from 10 kHz to 8 GHz, of a three-section distributed feedback (DFB) laser and the frequency noise spectra, measured from 30 MHz to 8 GHz, of a two-section distributed Bragg reflector (DBR) laser are presented. These results reveal new cavity detuning effects in the noise characteristics of tunable DBR lasers.
机译:分析用于研究半导体激光器的具有平衡检测的迈克尔逊干涉仪。分析中包括由于真空波动,耦合损耗,检测器量子效率和空间模式不匹配引起的量子噪声。检查了频率噪声检测的极限和干涉仪的灵敏度。可以看出,在普通的测量条件下,频率噪声只能测量到略高于激光器的腔带宽。提出了全面的测量程序,并给出了实验结果,显示了三段式分布式反馈(DFB)激光器在10 kHz至8 GHz范围内测得的频率调制响应以及在30 MHz至8 GHz范围内所测得的频率噪声频谱介绍了两部分分布式布拉格反射器(DBR)激光器。这些结果揭示了可调DBR激光器的噪声特性中出现了新的腔失谐效应。

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