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Influence of discharge circuit parameters on the repetition rate-energy output characteristics of a laser on self-terminating transitions of atomic copper

机译:放电电路参数对激光重复频率-能量输出特性对原子铜自终止跃迁的影响

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摘要

The excitation circuits of a copper vapour laser (CVL) with a partial or total discharge of the storage capacitor were analysed. Based on this analysis, the effect of prepulse electron density on the repetition rate-energy characteristics of a CVL was shown to be minimal when the following conditions are fulfilled: R > 2(L/C)~(1/2) and L/R < τ_c (for partial-discharge pump schemes; C is the storage capacitor capacity, L is the discharge circuit inductance, R is the prepulse resistance of the active medium, and τ_c is the switch turn-on time) and for a high frequency of free oscillations in the discharge circuit of a CVL. The conclusion was drawn that traditional pump schemes limit the energy capabilities of a CVL. The repetition rate-energy characteristics of a CVL can be improved by resorting to schemes with a shock or complex excitation circuit or their combination.
机译:分析了存储电容器部分或全部放电的铜蒸气激光器(CVL)的激励电路。基于此分析,当满足以下条件时,预脉冲电子密度对CVL的重复速率-能量特性的影响最小:R> 2(L / C)〜(1/2)和L / R <τ_c(对于部分放电泵方案; C是存储电容器的容量,L是放电电路的电感,R是活性介质的预脉冲电阻,并且τ_c是开关接通时间)并且对于高频CVL放电电路中的自由振荡。得出的结论是,传统的泵方案限制了CVL的能量容量。 CVL的重复率能量特性可以通过采用具有冲击或复杂激励电路的方案或其组合来改善。

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