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2.05微米的铥钬:钇锂氟化物波导激光器

Tm,Ho:YLF waveguide lasers at 2.05 µm.

作者信息

Bai Zichen, Chen Zhixiang, Xiong Yujie, Liu Hongliang, Gao Siying, Ren Yingying, Zhao Xingjuan, Liu Fengqin, Jia Yuechen, Chen Feng

出版信息

Opt Lett. 2024 Apr 15;49(8):1977-1980. doi: 10.1364/OL.520576.

Abstract

In this work, we report on the first, to our knowledge, 2.05-µm laser based on femtosecond-laser direct written (FsLDW) Tm,Ho:YLF cladding waveguides. A channel waveguide with a 90-µm diameter "fiber-like" low-index cladding is fabricated in a 6 at. % Tm, 0.4 at. % Ho:LiYF crystal by FsLDW. Pumped by Ti:sapphire laser at 795.1 nm, the fabricated waveguide supports efficient lasing oscillation at 2050 nm with a maximum output power of 47.5 mW, a minimum lasing threshold of 181 mW, and a slope efficiency of 20.1%. The impacts of cavity conditions and polarizations of the pump light on the obtained lasing performance are well studied. The experimental results obtained in this study demonstrate the great potential of utilizing Tm,Ho:YLF and FsLDW for the development of durable mid-infrared lasers featuring compact designs.

摘要

在本工作中,据我们所知,我们首次报道了基于飞秒激光直写(FsLDW)铥钬共掺钇锂氟化物(Tm,Ho:YLF)包层波导的2.05微米激光器。通过FsLDW在6原子%铥、0.4原子%钬掺杂的钇锂氟化物(LiYF)晶体中制备了一种直径为90微米、具有“类光纤”低折射率包层的通道波导。由795.1纳米的钛宝石激光器泵浦时,所制备的波导在2050纳米处支持高效激光振荡,最大输出功率为47.5毫瓦,最小激光阈值为181毫瓦,斜率效率为20.1%。对腔条件和泵浦光偏振对所获得的激光性能的影响进行了深入研究。本研究获得的实验结果表明,利用Tm,Ho:YLF和FsLDW开发具有紧凑设计的耐用中红外激光器具有巨大潜力。

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