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Measurement of optics homogeneity of ZnGeP2 crystal using a 2.02 mu m single-longitudinal-mode Tm:LuAG ring laser

机译:使用2.02μm单纵型TM测量ZnGep2晶体的光学均匀性:Luag环激光

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We demonstrate a single-longitudinal-mode Tm:LuAG unidirectional ring laser based on the Faraday effect and its application in measuring the optical homogeneity of ZnGeP2 (ZGP) crystal. The maximum single-longitudinal-mode power was 511 mW at 2022.4 nm, with a slope efficiency of 9.7%, and the M-2 factors were 1.13 and 1.23 in the x and y directions, respectively. The laser was s polarized with a polarization degree of 30 dB. Also, the optical homogeneity of ZGP crystal was measured by the Mach-Zehnder interference method, which adopts the single-longitudinal-mode laser as the monochrome source. According to the interference fringes, the quantitative calculation or qualitative analysis of the optical homogeneity of ZGP crystal was achieved, which could quickly and conveniently judge the quality of ZGP crystal, and provided high-quality crystals for high-power mid-infrared lasers. To our knowledge, it is the first report of the optical homogeneity measurement of ZGP crystal by a 2 mu m single-longitudinal-mode laser. (C) 2020 Optical Society of America
机译:我们展示了一种单纵型TM:基于法拉第效应的借调单向环激光及其在测量ZnGep2(ZGP)晶体的光学均匀性方面的应用。最大单纵型功率为511mW,为2022.4nm,斜率效率为9.7%,M-2因子分别为1.13和1.23,分别为x和y方向。激光是偏振的偏振度为30dB的偏振。而且,通过Mach-Zehnder干扰法测量ZGP晶体的光学均匀性,其采用单纵模激光作为单色源。根据干涉条纹,实现了ZGP晶体光学均匀性的定量计算或定性分析,可以快速和方便地判断ZGP晶体的质量,并为高功率中红外激光器提供高质量的晶体。据我们所知,通过2μM单纵模激光通过2μm单纵模激光的ZGP晶体光学均匀测量的第一报告。 (c)2020美国光学学会

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    《Applied optics》 |2020年第19期|共6页
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