在高温下工作的980nm二极管激光泵浦模块

SPIE LASE Pub Date : 2016-04-22 DOI:10.1117/12.2214427
Jenna Campbell, T. Semenic, P. Leisher, A. Bhunia, M. Mashanovitch, D. Renner
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引用次数: 5

摘要

现有的二极管激光泵浦热管理技术给高功率固态和光纤激光系统的尺寸、重量和功耗带来了巨大的负担,从而使当前的激光系统在许多重要的实际应用中变得非常庞大、沉重和低效。由Freedom Photonics和Teledyne Scientific组成的团队正在通过开发新型高功率激光芯片阵列架构来解决这个问题,该架构可以在高于50摄氏度的温度下使用冷却剂冷却时高效运行,并且还开发了一种先进的热管理系统,用于有效地从激光芯片阵列中提取热量。本文将展示980 nm二极管激光泵浦模块的光学、电学和热学特性的实验结果,在50摄氏度以上的温度下,液体冷却剂有效地工作,当工作温度从20摄氏度增加到50摄氏度时,性能变化很小。这些泵浦模块在冷却剂温度升高的情况下,每个阵列激光元件的输出功率可达数瓦,工作时的壁插效率(WPE)可达55%。本文还将讨论实现这种高水平泵模块性能的技术方法以及进一步改进的机会。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
980nm diode laser pump modules operating at high temperature
Existing thermal management technologies for diode laser pumps place a significant load on the size, weight and power consumption of High Power Solid State and Fiber Laser systems, thus making current laser systems very large, heavy, and inefficient in many important practical applications. This problem is being addressed by the team formed by Freedom Photonics and Teledyne Scientific through the development of novel high power laser chip array architectures that can operate with high efficiency when cooled with coolants at temperatures higher than 50 degrees Celsius and also the development of an advanced thermal management system for efficient heat extraction from the laser chip array. This paper will present experimental results for the optical, electrical and thermal characteristics of 980 nm diode laser pump modules operating effectively with liquid coolant at temperatures above 50 degrees Celsius, showing a very small change in performance as the operating temperature increases from 20 to 50 degrees Celsius. These pump modules can achieve output power of many Watts per array lasing element with an operating Wall-Plug-Efficiency (WPE) of >55% at elevated coolant temperatures. The paper will also discuss the technical approach that has enabled this high level of pump module performance and opportunities for further improvement.
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