在自由运行和调q模式下,1.06和135 μm的闪光灯泵浦Nd:KGW激光器。结果在MOPA配置。

O. Musset, J. Boquillon
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引用次数: 0

摘要

掺钕钨酸钾钆晶体KGd(W04)2或Nd:KGW是一种结构允许高Nd掺杂(3 ~ 8%)而不发生有害浓度猝灭的晶体。通过这种方式,它可以在光学增益方面与Nd:YAG竞争,尽管导热性较差。我们在这里给出了在高达60赫兹的重复频率下获得的结果。我们测试了来自两家不同供应商的几种Nd:KGW棒,具有相同的尺寸(6.35 x 76 mm)和不同的Nd掺杂水平(从2.8到8 at.%)。在1.06 μm发射时,端面为平/平、平行并在1.06 μm处进行ar涂层;在1.35 μm发射时,端面倾斜(1°)并在1.06和1.35 μm处进行ar涂层。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Flashlamp-pumped Nd:KGW Laser at 1.06 and 135 μm in free-running and Q-switched mode. Results in MOPA configuration.
Neodimium-doped Potassium-Gadolinium Tungstate crystal KGd(W04)2 or Nd:KGW is a crystal whose structure allows high Nd doping (3 to 8%) without detrimental concentration quenching. In this way it can compete with Nd:YAG in terms of optical gain, despite a poorer thermal conductivity. We present here the results obtained at repetition rates up to 60 Hz. We tested several Nd:KGW rods from two different furnishers, with the same dimensions ( 6.35 x 76 mm) and different Nd dopant levels (from 2.8 to 8 at.%). The end faces were either flat/flat, parallel and AR-coated at 1.06 μm for the 1.06 μm emission or tilted (1°) and AR-coated for 1.06 and 1.35 μm for the 1.35 μm emission?
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