气流型DPAL的实验研究

Taro Yamamoto, F. Yamamoto, M. Endo, F. Wani
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引用次数: 7

摘要

研制了一种带有闭环气体循环装置的小型二极管抽运碱激光器,并研究了气体循环对激光器输出功率的影响。增益单元的有效长度为5厘米,配有抗反射窗,并在其内部安装了一个横流风扇。活性介质由铯、碳氢化合物和总压力约为2个大气压的缓冲气体组成。测量了不同缓冲气体下激光输出功率与气体流速的关系。在氩的情况下,激光功率强烈地依赖于气体流动速度,而在氦的情况下,它几乎与气体流动无关。当气体流速超过6 m/s时,氩气缓冲器的最大输出功率接近氦气缓冲器的输出功率。实验结果与数值模拟结果吻合较好。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Experimental investigation of gas flow type DPAL
We have developed a small-scale, diode-pumped alkali laser with a closed-loop gas circulation device and investigated the effect of gas circulation on the laser output power. The gain cell, with a 5 cm active length, is fitted with antireflection windows, and a cross-flow fan is incorporated inside it. The active medium is composed of cesium, hydrocarbon, and a buffer gas whose total pressure is approximately 2 atmospheres. The laser output power was measured as a function of the gas flow velocity for different buffer gases. In the case of argon, the laser power was strongly dependent on the gas flow velocity, whereas it was almost independent of the gas flow in the case of helium. The maximum output power of the argon buffer was close to that of the helium buffer when the gas velocity exceeded 6 m/s. The experimental results were in good agreement with the numerical simulations.
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