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Raman shifter optimized for lidar at a 1.5 (mu)m wavelength

机译:拉曼位移器针对1.5微米波长的激光雷达进行了优化

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摘要

A Raman shifter is optimized for generating high-energy laser pulses at a 1.54 (mu)m wavelength. A forward-scattering design is described, including details of the multiple pass and nonfocused optical design, Stokes injection seeding, and internal gas recirculation. First-Stokes conversion efficiencies up to 43percent--equivalent to 62percent photon conversion efficiency--were measured. Experimental results show output average power in excess of 17.5 W, pulse energies of 350 mJ at 50 Hz, with good beam quality (M~(2) < 6). Narrow bandwidth and tunable output is produced when pumping with a single longitudinal mode Nd:YAG laser and seeding the process with a Stokes wavelength narrowband laser diode.
机译:拉曼位移器经过优化,可产生波长为1.54μm的高能激光脉冲。描述了一种前向散射设计,包括多程和非聚焦光学设计,斯托克斯注入注晶和内部气体再循环的详细信息。测量的First-Stokes转换效率高达43%(相当于62%的光子转换效率)。实验结果表明,输出平均功率超过17.5 W,在50 Hz下的脉冲能量为350 mJ,光束质量良好(M〜(2)<6)。当使用单个纵向模式Nd:YAG激光器泵浦并使用斯托克斯波长窄带激光二极管播种该过程时,会产生窄带宽和可调输出。

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