高频铜蒸气激光器的建模

O. Zhdaniev
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引用次数: 0

摘要

脉冲激光作用于金属蒸气(LVM)的一个特征是决定其活性的物理过程的大量和本质的非平稳性。产生辐射的次数、核能级的数量、光在谐振器中的通过次数和通过电路电感的累积电容器的放电次数以一个数量级的大小表示。这使实验分析变得极其复杂,使LVM的分析研究几乎不可能。此外,在脉冲周期模式中,有必要考虑等离子体重组的动力学、扩散过程和散热过程,这些过程决定了最佳的脉冲重复激发率。在这种情况下,最有效的理论研究方法是数值实验方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
Modelling of the high-frequency copper vapor laser
A characteristic feature of pulse lasers on vapors of metals (LVM) is a large number and essential nonstationarity of physical processes determining their activity. The times of generation of radiation, population of nuclear levels, passing of light in a resonator and discharge of the accumulative capacitor through inductance of an electrical circuit appear by sizes of one order. This extremely complicates the analysis of experiments and makes practically impossible analytical research of LVM. In an impulse-periodic mode, it is necessary, in addition, to take into account the kinetics of recombining plasma, processes of diffusion and heat rejection, which determine an optimum pulse repetition rate of excitation. In such conditions the most effective in theoretical research LVM appears a method of numerical experiment.
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