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Effect of thermal lensing and the micrometric degraded regions on the catastrophic optical damage process of high-power laser diodes

机译:热透镜的影响和微观劣化区域对大功率激光二极管灾难性滤光过程的影响

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摘要

Catastrophic optical damage (COD) is one of the processes limiting the lifetime of high-power laser diodes. The understanding of this degradation phenomenon is critical to improve the laser power and lifetime for practical applications. In this Letter, we analyze the defect propagation inside the cavity of quantum well (QW) high-power laser diodes presenting COD. For this, we studied the effect of highly localized thermal gradients and degraded regions on the laser field distribution. Finite element method (FEM) simulations are compared to experimental cathodoluminescence (CL) measurements. The presence of micrometric hot spots inside the QW induces the thermal lensing of the laser field. The laser self-focusing inside the cavity eventually generates a new hot spot, and, in a repetitive way, a sequence of hot spots would be created. This would account for the propagation of the dark line defects (DLDs) that are characteristic of this degradation mode. (C) 2020 Optical Society of America
机译:灾难性的光学损坏(COD)是限制大功率激光二极管寿命的过程之一。对这种降解现象的理解对于改善实际应用来改善激光功率和寿命至关重要。在这封信中,我们分析了量子阱(QW)高功率激光二极管的腔内内的缺陷传播。为此,我们研究了高度局部热梯度和降解区域对激光场分布的影响。将有限元法(FEM)模拟与实验阴极发光(CL)测量进行比较。 QW内部的微米热点的存在引起了激光场的热透镜。腔内的激光自聚焦最终产生新的热点,并且以重复的方式,将创建一系列热点。这将考虑暗线缺陷(DLD)的传播,该缺陷是该降级模式的特征的。 (c)2020美国光学学会

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