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Numerical Simulation of Intensity and Phase Noise From Extracted Parameters for CW DFB Lasers

机译:连续波DFB激光器提取参数强度和相位噪声的数值模拟

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摘要

A self-consistent numerical approach is demonstrated to analyze intensity and phase noise from experimentally extracted parameters for a continuous-wave distributed feedback (DFB) laser. The approach takes into account the intrinsic fluctuations of the photon number, carrier number, and phase. Values for the parameters appearing in the rate equations are extracted from the measured relative intensity noise spectra and linewidth of the laser. The simulation of the frequency spectra of intensity and phase noise of the DFB laser are performed by fast Fourier transform and exhibit good agreement with experimental results. The model presented here can readily be extended for the purpose of system simulations.
机译:演示了一种自洽数值方法,可以从实验提取的参数中分析连续波分布反馈(DFB)激光器的强度和相位噪声。该方法考虑了光子数,载流子数和相位的固有波动。从测得的相对强度噪声谱和激光器的线宽中提取出速率方程中出现的参数值。通过快速傅里叶变换对DFB激光器的强度和相位噪声频谱进行了仿真,与实验结果吻合良好。为了系统仿真的目的,可以很容易地扩展此处介绍的模型。

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