Properties of 20-Hz eye-safe cascade Raman laser with Ba(NO3)2 crystal

N. Takei, T. Mori, F. Kannari, S. Yamaguchi, H. Hara, S. V. Krayushkin
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Abstract

Recently, lasers operating in the eye-safe wavelength around 1.5 μm have found increasing demand in the laser radar (LIDAR). Raman laser pumped by well established lasers such as Nd:YAG lasers is a favorable candidate with such characteristics at high repetition rate, narrow linewidth, and good beam quality.1 As the Raman conversion medium, a Ba(NO3)2 crystal has attracted much attention because of its high gain and strong mechanical properties.2 Laser output in the eye-safe wavelength region can be obtained with the Ba(NO3)2 crystal either in a first Stokes line pumped by 1.3 μm Nd:YAG laser2, or in a third Stokes line pumped by 1.06 μm Nd:YAG laser3. When the Raman crystal exhibits substantial residual absorption in the pump or Stokes wavelength, these solid-state Raman lasers require some thermal management to scale up to high average power systems such as in LIDAR. Hence, we experimentally studied the thermal characteristics of the Ba(NO3)2 cascade Raman conversion process.
Ba(NO3)2晶体20 hz人眼安全级联拉曼激光器特性
近年来,激光雷达(LIDAR)对工作在人眼安全波长1.5 μm左右的激光器的需求越来越大。由Nd:YAG激光器等成熟激光器泵浦的拉曼激光器具有高重复率、窄线宽和良好的光束质量等特点Ba(NO3)2晶体作为拉曼转换介质,因其具有高增益和强力学性能而备受关注Ba(NO3)2晶体可以在1.3 μm Nd:YAG激光器泵浦的第一Stokes线2和1.06 μm Nd:YAG激光器泵浦的第三Stokes线3中获得人眼安全波长区域的激光输出。当拉曼晶体在泵浦或斯托克斯波长中表现出大量的残余吸收时,这些固态拉曼激光器需要一些热管理来扩展到高平均功率系统,如激光雷达。因此,我们实验研究了Ba(NO3)2级联拉曼转换过程的热特性。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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