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Temperature dependence of spontaneous switch-on and switch-off of laser cavity solitons in vertical-cavity surface-emitting lasers with frequency-selective feedback

机译:具有频率选择反馈的垂直腔面发射激光器中激光腔孤子的自发开启和关闭与温度的关系

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摘要

A systematic experimental and numerical investigation of the conditions for the spontaneous formation of laser cavity solitons in broad-area vertical-cavity surface-emitting lasers with frequency-selective feedback by a volume Bragg grating is reported. It is shown that the switching thresholds are controlled by a combination of frequency shifts induced by ambient temperature and Joule heating. The gain level has only a minor influence on the threshold but controls mainly the power of the solitons. At large initial detuning and high threshold gain, the first observed structure can be a high order soliton. In real devices spatial disorder in the cavity length causes a pinning of solitons and a dispersion of thresholds. The experimental observations are in good agreement with numerical simulations taking into account disorder and the coupling of gain and cavity resonance due to Joule heating. In particular, we demonstrate that the existence of the traps explain the spontaneous switch on of the solitons, but do not modify the soliton shape significantly, i.e. the observed solitons are a good approximation of the ones expected in a homogeneous system.
机译:进行了系统的实验和数值研究,该条件是通过体积布拉格光栅在具有频率选择反馈的广域垂直腔面发射激光器中自发形成激光腔孤子的条件。结果表明,开关阈值受环境温度和焦耳热引起的频移的组合控制。增益水平对阈值影响很小,但主要控制孤子的功率。在较大的初始失谐和高阈值增益下,观察到的第一个结构可以是高阶孤子。在实际的设备中,空腔长度的空间混乱会导致孤子钉扎和阈值分散。考虑到无序以及焦耳加热引起的增益和腔共振的耦合,实验观察结果与数值模拟非常吻合。特别是,我们证明陷阱的存在解释了孤子的自发接通,但是并没有显着改变孤子的形状,即,所观察到的孤子是在均匀系统中预期的孤子的良好近似。

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