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首页> 外文期刊>Journal of Physics, D. Applied Physics: A Europhysics Journal >Numerical simulation of an all gas-phase iodine laser based on NCl3 reaction system
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Numerical simulation of an all gas-phase iodine laser based on NCl3 reaction system

机译:基于NCl3反应系统的全气相碘激光器的数值模拟

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A numerical simulation code for an all gas-phase iodine laser based on the NCl3 reaction system is developed. The model is a one-dimensional, multiple-leaky-stream-tubes kinetics code combined with all the known rate equations to date. To confirm the validity of this simulation code, the calculated results are compared with the experimental results obtained in other laboratories. The results of computer calculations utilizing this model are in good agreement with those experimental results. This agreement shows that the code is capable of precisely predicting the small signal gain and laser output for a given set of flow conditions. Using this simulation code, we defined the flow rates and the nozzle configuration that should allow laser oscillation based on NCl3 reaction system to be achieved. The calculations suggest that a laser output power of 410mW can be obtained under optimum conditions with facilities available in our laboratory.
机译:开发了基于NCl3反应系统的全气相碘激光器的数值模拟程序。该模型是一维多泄漏流管动力学代码,结合了迄今为止所有已知的速率方程。为了确认此仿真代码的有效性,将计算结果与其他实验室获得的实验结果进行了比较。利用该模型的计算机计算结果与那些实验结果非常吻合。该协议表明,对于给定的一组流动条件,该代码能够精确预测小信号增益和激光输出。使用此仿真代码,我们定义了应允许基于NCl3反应系统实现激光振荡的流速和喷嘴配置。计算表明,在最佳条件下,利用我们实验室中可用的设备,可以获得410mW的激光输出功率。

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