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光纤放大器放大自发辐射特性与高温易损点位置

罗亿 王小林 张汉伟 粟荣涛 马鹏飞 周朴 姜宗福

物理学报2017,Vol.66Issue(23):189-203,15.
物理学报2017,Vol.66Issue(23):189-203,15.DOI:10.7498/aps.66.234206

光纤放大器放大自发辐射特性与高温易损点位置

Amplified spontaneous emission characteristics and locations of high temperature vulnerable point in fiber amplifiers

罗亿 1王小林 1张汉伟 1粟荣涛 1马鹏飞 1周朴 1姜宗福1

作者信息

  • 1. 国防科学技术大学光电科学与工程学院, 高能激光技术湖南省重点实验室, 大功率光纤激光湖南省协同创新中心, 长沙 410073
  • 折叠

摘要

Abstract

Master oscillator power amplifier (MOPA) is a common configuration in fiber lasers to obtain high power output. Amplified spontaneous emission (ASE) is amplified stage by stage by MOPA, which may result in damage to the fiber amplifier. In the experiment of high-power fiber amplifier, thermal effect is one of the most critical issues. High temperature from significant thermal effect would restrict the further improvement of laser power and cause the fiber to damage. In most of the experiments, the gain fibers are broken usually at the place 10-50 cm away from the fused point of the pump injection end. To better understand in physics the highest temperature and the position of the burning point, we study the ASE and temperature characteristics by using the rate equation model of fiber laser and the thermal conduction model of gain fiber. We analyze the influences of seed power, pump power and pump absorption on Yb-doped double-cladding fiber amplifier. The results show that when magnification is relatively high and ASE is serious, the highest temperature point of the fiber amplifier is not at the fused point of the pump injection end but at the place 10-50 cm away from the fused point, which consists well with the experimental result. For studying the ASE suppression and the temperature control of the hottest point, we compare the three parameters in the 915 nm pumped case with those in the 975 nm pumped case, these being power ratio of ASE to the output laser, hottest location along the fiber, and the ratio of the temperature difference between the highest temperature and fusion point temperature to the latter one. It is concluded that the optimal parameters for the 915 nm pumped case are seed power larger than 7 W, pump power less than 1250 W, and pump absorption less than 20 dB. As to the 975 nm pumped case, it is suggested that the seed power should be not less than 8 W with an appropriate pump power. The research also implies that a better performance of fiber amplifier is pumped by 975 nm under the same condition. To prevent the local internal hot point from forming and the potential burnout risk from happening, the magnification of fiber amplifier needs to be set below 50-fold. In conclusion, this work presents a suggestion for optimizing the fiber amplifier design through using appropriate seed power, pump power, pump absorption, magnification and pump wavelength.

关键词

光纤放大器/放大自发辐射/温度特性

Key words

fiber amplifier/amplified spontaneous emission/temperature characteristics

引用本文复制引用

罗亿,王小林,张汉伟,粟荣涛,马鹏飞,周朴,姜宗福..光纤放大器放大自发辐射特性与高温易损点位置[J].物理学报,2017,66(23):189-203,15.

基金项目

国家自然科学基金 (批准号: 61505260, 61735007) 资助的课题. Project supported by the National Natural Science Foundation of China (Grant Nos. 61505260, 61735007). (批准号: 61505260, 61735007)

物理学报

OA北大核心CSCDCSTPCDSCI

1000-3290

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