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High-power single-frequency continuous-wave 355 nm UV laser via a frequency-correlated dual-wavelength laser.

作者信息

Wei Jiao, Wang Yongdong, Yin Ruixi, Su Jing, Lu Huadong

出版信息

Opt Lett. 2024 Jul 15;49(14):4014-4017. doi: 10.1364/OL.529817.

DOI:10.1364/OL.529817
PMID:39008765
Abstract

An all-solid-state single-frequency continuous-wave (CW) 355 nm ultraviolet (UV) laser based on a dispersion-compensated doubly resonant resonator is presented in this Letter that is achieved by employing homemade high-stability all-solid-state frequency-correlated dual-wavelength lasers at 1064 and 532 nm and a temperature-controlled type-I critical-phase-matching LiBO (LBO) to act as the fundamental laser source and the nonlinear medium, respectively. The frequency-correlated dual-wavelength single-frequency CW laser supplies the fundamental frequency 1064 and 532 nm lasers with good frequency synchronization. And the temperature-controlled LBO acts as the dispersion-compensation element to realize double resonance of the 1064 and 532 nm laser. Finally, a 4.2 W high-stability 355 nm UV laser is experimentally obtained, and the corresponding total conversion efficiency is up to 20.5%. To the best of our knowledge, this is the highest power reported about single-frequency CW 355 nm UV laser. The presented method can pave a way to develop a compact single-frequency 355 nm UV laser with high output power.

摘要

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