首页> 外文期刊>IEEE Journal of Quantum Electronics >Comparison of Cu-II 781 nm lasers using high-voltage hollow-cathode and hollow-anode-cathode discharges
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Comparison of Cu-II 781 nm lasers using high-voltage hollow-cathode and hollow-anode-cathode discharges

机译:使用高压空心阴极和空心阳极阴极放电的Cu-II 781 nm激光器的比较

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摘要

Voltage-current characteristics and the Cu-II 780.8 nm laser performances are described for a novel segmented hollow cathode and for three- and four-slot hollow-anode cathode (HAC) tubes. Each of these operate at a higher voltage and with higher slope resistance than a conventional hollow cathode and produce improved laser performance. The best laser performance is obtained with the segmented tube. The application of a longitudinal magnetic field raises the discharge voltage and enhances the laser performance for the segmented tube and raises the voltage for the four-slot HAC tube. The magnetic field lowers the voltage and reduces the laser performance with the three-slot HAC tube. The voltage effects are attributed to the deflection of the fast electrons by the magnetic field and represent experimental evidence for the oscillation of electrons in a hollow-cathode discharge.
机译:描述了新型分段空心阴极以及三槽和四槽空心阳极阴极(HAC)管的电压-电流特性和Cu-II 780.8 nm激光性能。它们中的每一个都比常规空心阴极在更高的电压和更高的斜率电阻下运行,并产生改善的激光性能。使用分段管可获得最佳的激光性能。纵向磁场的施加提高了放电电压,增强了分段管的激光性能,并提高了四槽HAC管的电压。磁场会降低电压并降低三槽HAC管的激光器性能。电压效应归因于磁场使快电子偏转,并代表了中空阴极放电中电子振荡的实验证据。

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