首页> 外文期刊>Laser physics letters >Compact 1.64 THz source based on a dual-wavelength diode end-pumped Nd:YLF laser with a nearly semiconfocal cavity
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Compact 1.64 THz source based on a dual-wavelength diode end-pumped Nd:YLF laser with a nearly semiconfocal cavity

机译:基于双波长二极管端泵浦Nd:YLF激光器的紧凑型1.64 THz光源,具有近半共凹腔

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摘要

We describe a compact dual-wavelength (1.047 and 1.053 μm) diode end-pumped Q-switched Nd:YLE laser source which has a number of applications in demand. In order to achieve its dual-wavelength operation it is suggested for the first time to use essentially nonmonotonous dependences of the threshold pump powers at these wavelengths on the cavity length in the region of the cavity semiconfocal configuration under a radius of the pump beam smaller than the radius of the zero Gaussian mode. Here we demonstrate one of the most interesting applications for this laser: difference frequency generation in a GaSe crystal at a frequency of 1.64 THz. A superconducting hot-electron bolometer is used to detect the THz power generated and to measure its pulse characteristics.
机译:我们描述了一种紧凑的双波长(1.047和1.053μm)二极管端泵浦Q开关Nd:YLE激光源,其在许多应用中都有需求。为了实现其双波长操作,第一次建议在这些波长下,在小于泵浦半径的情况下,在这些半波长上的阈值泵浦功率与腔体长度在腔体长度上基本上非单调相关。零高斯模式的半径。在这里,我们展示了此激光器最有趣的应用之一:在1.64 THz频率的GaSe晶体中产生差频。超导热电子辐射热计用于检测产生的太赫兹功率并测量其脉冲特性。

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