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976纳米和808纳米双增益开关波长泵浦的3微米掺铒固态激光器。

976 nm and 808 nm dual-GSA-wavelength pumped 3 µm erbium-doped solid-state laser.

作者信息

Shi Chengjin, Huang Haitao, Chen Wenjie, Li Zihan

出版信息

Opt Express. 2023 Aug 14;31(17):28370-28381. doi: 10.1364/OE.499849.

DOI:10.1364/OE.499849
PMID:37710892
Abstract

A dual-wavelength pumping scheme at 976 nm and 808 nm is proposed to improve the performance of 3 µm Er:YAP laser. 976 nm and 808 nm correspond to the ground state absorption processes of I→I and I→I, respectively. The experimental results indicate that the introduction of 808 nm pumping not only increases the total inversion population, but also can adjust the population distribution among the sublevels in the upper and lower manifold, thus supporting higher output power and multiple wavelengths emissions. Under the single-wavelength pumping, the maximum output powers of 1.192 W and 0.223 W are obtained for 976 nm and 808 nm pumping, respectively. With regard to the 976/808 nm dual-wavelength pumping, the achievable maximum output power is 1.398 W, increased by 17.3% compared to the case of single-wavelength pumping at 976 nm. The dual-wavelength pumped Er:YAP laser can also operate in a state of multi-wavelength emissions at 2.79 µm, 2.82 µm and 2.92 µm with different dual-wavelength pump power combinations. Considering the broadband absorption characteristics of ground state absorption and the convenience of obtaining near-infrared laser diodes pumping sources, the proposed dual-wavelength pump scheme shows great potential to realize high-power, high-efficiency 3 µm erbium-doped solid-state lasers with better cost-effectiveness and more compact structure.

摘要

提出了一种976 nm和808 nm的双波长泵浦方案,以提高3 µm掺铒钇铝石榴石(Er:YAP)激光器的性能。976 nm和808 nm分别对应于I→I和I→I的基态吸收过程。实验结果表明,引入808 nm泵浦不仅增加了总反转粒子数,还可以调节上下能级子能级间的粒子数分布,从而支持更高的输出功率和多波长发射。在单波长泵浦下,976 nm和808 nm泵浦时分别获得了1.192 W和0.223 W的最大输出功率。对于976/808 nm双波长泵浦,可实现的最大输出功率为1.398 W,比976 nm单波长泵浦的情况提高了17.3%。双波长泵浦的Er:YAP激光器还可以在不同的双波长泵浦功率组合下,以2.79 µm、2.82 µm和2.92 µm的多波长发射状态运行。考虑到基态吸收的宽带吸收特性以及获得近红外激光二极管泵浦源的便利性,所提出的双波长泵浦方案在实现具有更好性价比和更紧凑结构的高功率、高效率3 µm掺铒固态激光器方面显示出巨大潜力。

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