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Supermodes of high-repetition-rate passively mode-locked semiconductor lasers

机译:高重复率无源锁模半导体激光器的超模

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We present a steady-state analysis of high-repetition-rate passively mode-locked semiconductor lasers. The analysis includes effects of amplitude-to-phase coupling in both gain and absorber sections. A many-mode eigenvalue approach is presented to obtain supermode solutions. Using a nearest-neighbor mode coupling approximation, chirp-free pulse generation and electrically chirp-controlled operation are explained for the first time. The presence of a nonzero alpha parameter is found to change the symmetry of the supermode and significantly reduce the mode-locking range over which the lowest order supermode remains the minimum gain solution. An increase in absorber strength tends to lead to downchirped pulses. The effects of individual laser parameters are considered, and agreement with recent experimental results is discussed.
机译:我们提出了高重复率被动锁模半导体激光器的稳态分析。该分析包括增益和吸收器部分中幅度-相位耦合的影响。提出了一种多模特征值方法来获得超模解。使用最近邻居模式耦合逼近,首次解释了无线性脉冲产生和电线性控制操作。发现非零alpha参数的存在会改变超模的对称性,并显着减小最低阶超模仍为最小增益解的锁模范围。吸收体强度的增加往往会导致脉冲降低。考虑了各个激光参数的影响,并讨论了与最新实验结果的一致性。

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