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The optimization of the multi-atmospheric Ar-Xe laser

机译:多气氛Ar-Xe激光器的优化

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The quasi-steady-state conditions of the multi-atmospheric e-beam sustained Ar-Xe laser are investigated. It is observed that the duration of the stationary period depends on the e-beam current, discharge power deposition, and gas pressure. The laser efficiency can be as high as 8%. Beyond the stationary period the efficiency drops. The pulse energy with optimum efficiency depends strongly on the gas pressure. The maximum discharge efficiency of 5%-6% is at high pressure not sensitive to the input power. The best results are obtained for 4 bar with a discharge input power of 8 MW/l. The pulse duration with corresponding output energies is 12 /spl mu/s with 10 J/l and 16 /spl mu/s with 16 J/l for e-beam currents of 0.4 and 0.9 A/cm/sup 2/, respectively. An analysis of the quasi-steady-state conditions that include the effects of electron collision mixing and atomic quenching is presented. The effects of output power saturation by the fractional ionization and atomic collisions are in agreement with the observations. The analysis clarifies the optimum performance conditions.
机译:研究了多大气电子束持续Ar-Xe激光器的准稳态条件。可以看出,静止期的持续时间取决于电子束电流,放电功率沉积和气压。激光效率可高达8%。超过静止期,效率下降。具有最佳效率的脉冲能量在很大程度上取决于气压。 5%-6%的最大放电效率是在高压下对输入功率不敏感的。对于4 bar的放电输入功率为8 MW / l,可获得最佳结果。当电子束电流分别为0.4和0.9 A / cm / sup 2 /时,具有相应输出能量的脉冲持续时间分别为10 J / l为12 / spl mu / s和16 J / l为16 / spl mu / s。提出了一种准稳态条件的分析,其中包括电子碰撞混合和原子猝灭的影响。分数电离和原子碰撞对输出功率饱和的影响与观察结果一致。分析阐明了最佳性能条件。

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