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Numerical simulation on output performance of continuous-wave Raman silicon lasers

机译:连续波拉曼硅激光器输出性能的数值模拟

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To understand the physical process of SRS lasing in SOI waveguides and to optimize the performance of continuous-wave Raman silicon lasers, in this paper numerical simulation on the output characteristics of continuous-wave Raman silicon lasers with different parameters is performed. Based on power propagation equations in SOI waveguides and boundary conditions, the output powers as functions of the launched pump power, the gain length, the reflectivity of the output end, and the effective mode area of the SOI waveguide are presented. It is shown that two-photon absorption (TPA) and free-carrier absorption (FCA) lead to a significant reduction to the output power of continuous-wave Raman silicon lasers, which is in good agreement with the experimental reports. Numerical analysis predicts that in the absence of TPA and FCA there are optimum values for the silicon waveguide length, the effective mode area and the output reflectivity, respectively.
机译:为了了解SOI波导的SRS的物理过程,并优化连续波拉曼激光器的性能,在本文中,执行了对具有不同参数的连续波拉曼硅激光器的输出特性的数值模拟。基于SOI波导和边界条件中的功率传播方程,呈现输出功率作为发射泵功率,增益长度,输出端的反射率和SOI波导的有效模式区域的功能。结果表明,双光子吸收(TPA)和自由载体吸收(FCA)导致连续波拉曼硅激光器的输出功率显着降低,这与实验报告一致。数值分析预测,在没有TPA和FCA的情况下,分别存在硅波导长度,有效模式区域和输出反射率的最佳值。

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