976nm锥形激光器失效机理研究

Hongran Wang, Wenyuan Liao, Shaohua Yang, Chengwei Zhang, G. Lu, Zhipeng Wei, Xiao-hua Wang
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引用次数: 0

摘要

锥形激光器由锥形区和脊区组成,脊区由于腔面较宽,光子密度较低。因此,该结构比传统激光器更容易实现高功率、高光束质量的激光输出。随着功率的增加,设备将出现更多的可靠性问题。本文利用仿真软件对锥形激光器进行了分析,得到了载流子和光场的分布,并通过实验对锥形激光器的失效进行了分析。仿真与实验相结合,分析了空间孔燃烧效应、空腔表面光学突变、空腔表面污染、空腔损伤和焊接不良是导致其失效的主要原因。确定了锥形激光器的失效机理,为推进锥形激光器的应用提供了有益的帮助。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Research on Failure Mechanism of 976nm Tapered Laser
The tapered laser consists of tapered area and ridge area, which has a lower photon density because it has a wider cavity surface. Therefore, the structure is easier to achieve highpower, high-beam quality laser output than traditional lasers. More reliability issues will occur in the device with increasing power. In this paper, the tapered laser is analyzed by simulation software, the distribution of carriers and light field is obtained, and the failure analysis of tapered laser is performed by experiment. Combined simulation and experiment, the main reasons for the failure include spatial hole burning effect, cavity surface optical catastrophe, cavity surface contamination, cavity damage and poor welding. The failure mechanism of tapered lasers is determined, which provides useful help for advancing the application of tapered lasers.
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