4.3 Article

522 nm single-longitudinal-mode high-frequency Pr3+:YLF laser based on pre-lase Q-switching technology

Journal

LASER PHYSICS
Volume 32, Issue 7, Pages -

Publisher

IOP Publishing Ltd
DOI: 10.1088/1555-6611/ac69f0

Keywords

pre-lase Q-swiching technology; single-longitudinal-mode (SLM); 522 nm

Funding

  1. National Natural Fund Project of China [61505012]

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In this study, a single-longitudinal-mode pulsed laser that can emit directly into the green spectral region at 522 nm is demonstrated for the first time using pre-lase Q-switching technology. The output characteristics of the laser are obtained through simulation, showing a peak power of 37.9 W under an incident pump power of 12 W at 444 nm. At a repetition frequency of 20 kHz, the laser pulse energy and pulse width were measured to be 3.05 mu J and 80.5 ns, respectively, with a spectral linewidth of approximately 22 MHz.
In this work, based on the pre-lase Q-swiching technology, a single-longitudinal-mode (SLM) pulsed laser that can be emitted directly into the green spectral region at 522 nm is demonstrated for the first time. The rate equation of 522 nm Pr3+:YLF SLM Q-switched laser is established, and the output characteristics of the laser are obtained by simulation. The peak power of 37.9 W was obtained under an incident pump power of 12 W at 444 nm. At a repetition frequency of 20 kHz, the laser pulse energy and the pulse width were measured to be 3.05 mu J and 80.5 ns, respectively. The corresponding spectral linewidth is approximately 22 MHz.

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