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开发高功率混合谐振增益开关掺铥光纤激光器。

Developing high-power hybrid resonant gain-switched thulium fiber lasers.

作者信息

Yan Shuo, Wang Yao, Zhou Yan, Yang Nan, Li Yue, Tang Yulong, Xu Jianqiu

出版信息

Opt Express. 2015 Oct 5;23(20):25675-87. doi: 10.1364/OE.23.025675.

Abstract

In this paper, we propose hybrid-pumped resonant gain-switched thulium fiber lasers to realize high-average-power and high-pulse-energy 2-μm laser emissions. Based on numerical simulation, laser dynamics (pulse peak power, pulse energy, pulse duration, etc.) of this kind of laser system are investigated in detail. By taking advantages of the 793 nm continuous wave pump and the 1900 nm pulsed pump, performance of the laser emission can be significantly improved, with the highest average power of 28 W, peak power of 3.5 kW, pulse energy of 281 μJ, and narrowest pulse duration of 92 ns, all of which can be further optimized through designing the cavity parameters and the pumping circumstance. Compared with the pump pulses, two times improvement in pulse energy and average power has been achieved. This hybrid resonant gain-switched system has an all-fiber configuration and high efficiency (low heat load), and can be steadily extended into the cladding pump scheme, thus paving a new way to realize high power (>100 W average power) and high pulse energy (>1 mJ) 2 μm thulium fiber lasers.

摘要

在本文中,我们提出了混合泵浦谐振增益开关掺铥光纤激光器,以实现高平均功率和高脉冲能量的2μm激光输出。基于数值模拟,详细研究了这种激光系统的激光动力学特性(脉冲峰值功率、脉冲能量、脉冲持续时间等)。通过利用793nm连续波泵浦和1900nm脉冲泵浦,可显著提高激光输出性能,最高平均功率可达28W,峰值功率为3.5kW,脉冲能量为281μJ,最窄脉冲持续时间为92ns,所有这些都可通过设计腔参数和泵浦条件进一步优化。与泵浦脉冲相比,脉冲能量和平均功率提高了两倍。这种混合谐振增益开关系统具有全光纤结构和高效率(低热负载),并且可以稳定地扩展到包层泵浦方案,从而为实现高功率(平均功率>100W)和高脉冲能量(>1mJ)的2μm掺铥光纤激光器开辟了一条新途径。

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