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Semiconductor laser dynamics for feedback from a finite-penetration-depth phase-conjugate mirror

机译:半导体激光动力学从有限穿透深度的相位共轭镜获得反馈

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Most of the previous treatments of semiconductor lasers subject to optical feedback from a phase-conjugate mirror (PCM) have assumed that the PCM responds instantaneously. Furthermore, the mechanism responsible for phase conjugation does not usually enter into the analysis. In this paper, we derive the time-dependent reflectivity of a PCM created through nondegenerate four-wave mixing in a Kerr-type nonlinear medium. The resulting laser dynamics are compared with the case of the ideal PCM, as a function of the external-cavity length, the PCM reflectivity, and the PCM interaction depth. The PCM with a significant interaction depth tends to suppress otherwise chaotic output and produces pulses whose repetition rate is tunable by varying PCM reflectivity. At high feedback levels, it stabilizes the laser output. We use the circle-map formalism to explain our numerical results.
机译:受到来自相位共轭镜(PCM)的光反馈的半导体激光器的大多数先前处理都假定PCM瞬时响应。此外,负责相位共轭的机制通常不会进入分析。在本文中,我们推导了在Kerr型非线性介质中通过非简并四波混频产生的PCM随时间变化的反射率。根据外腔长度,PCM反射率和PCM相互作用深度,将所得的激光动力学与理想PCM的情况进行比较。具有较大交互作用深度的PCM倾向于抑制其他情况下的混沌输出,并产生脉冲,其脉冲重复率可通过改变PCM反射率来调节。在高反馈水平下,它可以稳定激光输出。我们使用圆图形式主义来解释我们的数值结果。

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