30 March 2023 Optimization of the overlap efficiency factor for power scaling in visible Pr:YLF laser at 607 nm pumped by fiber-coupled GaN laser diodes
Hongwei Guo, Yu Zhang, Yaoyao Qi, Zhenxu Bai, Jie Ding, Bingzheng Yan, Yulei Wang, Zhiwei Lu
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Abstract

The power scaling of an all-solid-state visible laser is limited by the mode-to-pump ratio related to the thermal effect based on the spatial rate equation. The mode-to-pump ratio is also known as the overlap efficiency factor (OEF). We investigated the thermal effect as a function of pump power, the waist radius of pump beams, and the waist position of pump beams and have simulated the three-dimensional distribution of the OEF as a variable of the waist position and size of pump beams. Also, it is seen that the calculated optimal OEF under a plane–concave cavity is a decreasing function of input pump power, and it is less than unity in the case of high pump power. The practical example of a Pr:YLF laser pumped by 9-W fiber-coupled laser diodes confirms our theoretical analysis. The output power instability was < ± 1 . 625 % (RMS) within 1 h. In addition, by changing the cavity length to 38 mm, the output power of 607 nm is up to 103 mW with an OEF of 0.741.

© 2023 Society of Photo-Optical Instrumentation Engineers (SPIE)
Hongwei Guo, Yu Zhang, Yaoyao Qi, Zhenxu Bai, Jie Ding, Bingzheng Yan, Yulei Wang, and Zhiwei Lu "Optimization of the overlap efficiency factor for power scaling in visible Pr:YLF laser at 607 nm pumped by fiber-coupled GaN laser diodes," Optical Engineering 62(3), 036110 (30 March 2023). https://doi.org/10.1117/1.OE.62.3.036110
Received: 28 July 2022; Accepted: 9 March 2023; Published: 30 March 2023
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KEYWORDS
Crystals

Thermal effects

Laser crystals

Semiconductor lasers

Mirrors

Optical engineering

Optical simulations

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