Modified Thermal-divergence Model for a High-power Laser Diode

IF 0.1 Q4 OPTICS
Hyeon Joong Yong, Young Jae Baek, D. Yu, O. Beomhoan
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Abstract

The design and control of thermal flow is important for the operation of high-power laser diodes (LDs). It is necessary to analyze and improve the thermal bottleneck near the active layer of an LD. As the error in prediction of the thermal resistance of an LD is large, typically due to the hyperbolic increase and saturation to linear increase of the thermal resistance as a function of thickness, it is helpful to use a simple, modified divergence model for the improvement and optimization of thermal resistance. The characteristics of LDs are described quite well, in that the values for simulated thermal resistance curves and the thermal cross section followed are almost the same as the values from the model function. Also, the thermal-cross-section curve obtained by differentiating the thermal resistance is good for identifying thermal bottlenecks intuitively, and is also fitted quite well by the model proposed for both a typical LD structure and an improved LD with thin capping and high thermal conductivity.
大功率激光二极管的改进热发散模型
热流的设计和控制对大功率激光二极管的工作至关重要。分析和改进LD有源层附近的热瓶颈是必要的。由于LD的热阻预测误差较大,通常是由于热阻随厚度的双曲线增长和从饱和到线性增长,因此使用简单的修正散度模型有助于热阻的改进和优化。ld的特性描述得很好,因为模拟的热阻曲线和随之而来的热截面的值与模型函数的值几乎相同。此外,通过对热阻求导得到的热截面曲线可以直观地识别热瓶颈,并且对于典型的LD结构和具有薄盖和高导热系数的改进LD结构模型都能很好地拟合。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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