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Design Optimization of Passively Mode-Locked Semiconductor Lasers With Intracavity Grating Spectral Filters

机译:腔内光栅光谱滤波器的无源锁模半导体激光器的设计优化

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摘要

We consider design optimization of passively mode-locked two-section semiconductor lasers that incorporate intracavity grating spectral filters. Our goal is to develop a method for finding the optimal wavelength location for the filter in order to maximize the region of stable mode-locking as a function of drive current and reverse bias in the absorber section. In order to account for material dispersion in the two sections of the laser, we use analytic approximations for the gain and absorption as a function of carrier density and frequency. Fits to measured gain and absorption curves then provide inputs for numerical simulations based on a large signal accurate delay-differential model of the mode-locked laser. We show how a unique set of model parameters for each value of the drive current and reverse bias voltage can be selected based on the variation of the net gain along branches of steady-state solutions of the model. We demonstrate the validity of this approach by demonstrating qualitative agreement between the numerical simulations and measured current–voltage phase space of a two-section Fabry–Perot laser. We then show how to adapt this method to determine an optimum location for the spectral filter in a notional device with the same material composition, based on the targeted locking range, and accounting for the modal selectivity of the filter.
机译:我们考虑了结合腔内光栅光谱滤波器的无源锁模两部分半导体激光器的设计优化。我们的目标是开发一种方法,为滤波器寻找最佳波长位置,以便根据吸收器部分中的驱动电流和反向偏置来最大化稳定锁模区域。为了考虑材料在激光的两个部分中的色散,我们使用增益和吸收的解析近似作为载流子密度和频率的函数。拟合到测得的增益和吸收曲线,然后根据锁模激光器的大信号精确延迟-微分模型为数值模拟提供输入。我们展示了如何基于沿着模型稳态解决方案分支的净增益的变化,为驱动电流和反向偏置电压的每个值选择一组唯一的模型参数。我们通过证明两节法布里-珀罗激光器的数值模拟与测量的电流-电压相空间之间的定性一致性,证明了这种方法的有效性。然后,我们将展示如何根据目标锁定范围,并考虑滤光器的模态选择性,来采用这种方法为具有相同材料成分的概念设备确定光谱滤光器的最佳位置。

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