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Stability Limit of a Semiconductor Laser With Optical Feedback

机译:具有光反馈的半导体激光器的稳定性极限

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This paper presents comprehensive studies on the stability of a semiconductor laser (SL) with external optical feedback. In particular, based on numerical computation on the Lang and Kobayashi equations, the stability limit under the condition of minimum linewidth is investigated, revealing how it is influenced by three major parameters associated with SL operation conditions, including the feedback strength (), the external cavity length (), and the injection current (). In contrast to existing work in literature, the presented removed all the approximations and assumptions, hence resulting in relatively complete description of the stability limit. This paper presented leads to a number of important and interesting discoveries: 1) the possible stable area is broader than what is described by the existing work; 2) for long external cavities, the stability limit can be described by a linear relationship between and ; and 3) on the stability limit, the critical feedback strength () and critical external cavity length () are discovered, respectively, being proportional and inversely proportional to and .
机译:本文对具有外部光反馈的半导体激光器(SL)的稳定性进行了全面的研究。特别地,基于对Lang和Kobayashi方程的数值计算,研究了最小线宽条件下的稳定性极限,揭示了它如何受到与SL操作条件相关的三个主要参数的影响,包括反馈强度(),外部腔长()和注入电流()。与文献中的现有工作相反,本文提出的方法除去了所有近似值和假设,因此可以对稳定性极限进行较为完整的描述。提出的本文导致了许多重要而有趣的发现:1)可能的稳定区域比现有工作所描述的更广; 2)对于较长的外腔,稳定性极限可以通过和之间的线性关系来描述;和3)在稳定性极限上,分别发现了与和成正比和反比的临界反馈强度()和临界外腔长度()。

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