Resonantly Fiber-Coupled Diode-Pumped Ho3+: YLiF4 Laser in Continuous-Wave and Q-Switched Operation

Resonantly Fiber-Coupled Diode-Pumped Ho3+: YLiF4 Laser in Continuous-Wave and Q-Switched Operation
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连续波和 Q 开关操作的谐振光纤耦合二极管泵浦 Ho3 : YLiF4 激光器

DOI:
10.1109/jqe.2016.2572358
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发表时间:
2016-05
影响因子:
2.5
通讯作者:
Gong, Mali
Gong, Mali
中科院分区:
工程技术3区
文献类型:
--
作者:
Cao, Xuezhe;Nie, Mingming;Fu, Xing;Gong, Mali

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本文首先介绍了共振光纤耦合二极管泵浦的Ho3+:YLiF4(Ho:YLF)激光器的理论定量能级特性和实验激光性能。我们的理论分析可以得到更精确的二极管泵浦Ho:YLF激光器的2.7能级特性。通过实验研究,获得了最大斜率效率为88.5%,对应的输出功率为1.85W。在主动调Q运转中,最大脉冲能量为0.3mJ,重复频率为5 kHz,最小脉冲宽度为160 ns。在最大重复频率为100 kHz时,获得了16μJ的脉冲能量和816 ns的脉冲宽度。在连续波和调Q两种情况下的性能都表明,电流谐振光纤耦合二极管泵浦的Ho:YLF激光器在需要几瓦平均输出功率的特定条件下具有很大的潜力。
In this paper, the theoretical quantitative energy-level character and the experimental laser performance of resonantly fiber-coupled diode-pumped Ho3+: YLiF4 (Ho: YLF) laser are first presented. More precise 2.7-level character of diode-pumped Ho: YLF laser can be acquired with our theoretical analysis. With the experimental study, a maximum slope efficiency of 88.5%, corresponding to an output power of 1.85 W, was obtained. In actively Q-switched operation, a maximum pulse energy of 0.3 mJ was achieved at the repetition frequency of 5 kHz with a minimum pulse duration of 160 ns. At a maximum repetition frequency of 100 kHz, a pulse energy of 16 μJ was achieved with a pulse duration of 816 ns. Both the performance in continuous-wave and Q-switched regimes indicates that the current resonantly fiber-coupled diode-pumped Ho: YLF laser has great potential in certain conditions that require several watts of average output power.
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