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Field strength and electrode sheath voltage of a high-pressure arc discharge in neon

机译:氖高压电弧放电的场强和电极鞘电压

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摘要

Searching for working gases for substituting mercury in metal-halide lamps, the rare gases came into focus. Besides the high vapor pressure, the main property which makes mercury so unique for the filling of high-pressure lamps is its large transport cross section. It allows lamp operation with low current due to the high electric field strength which can be established in mercury discharges. Therefore, as a necessary condition the substitute must allow a high field strength. This is of course not sufficient for defining a substitute: finally the resulting lamp must have a high luminous efficacy. As a first step, however, the field strength is a criterion for the selection of substitute candidates. The discharge voltage alone, taken under otherwise the same conditions, is not convincing enough because it consists of the voltage of the positive column (field strength times column length) and of the electrode sheath voltage (ESV), and the latter does not participate in light production. Therefore, we have determined the electric field strengths in Hg, Ne, Ar, and Xe, and the corresponding ESVs were obtained as a by-product.
机译:在寻找工作气体代替金属卤化物灯中的汞后,稀有气体成为人们关注的焦点。除了高蒸气压外,汞的主要运输特性是使汞在高压灯的填充中如此独特。由于在汞放电中可以建立高电场强度,因此可以使灯以低电流工作。因此,作为必要条件,替代物必须具有较高的场强。当然,这不足以定义替代品:最终,所得到的灯必须具有高发光效率。然而,第一步,场强是选择替代候选物的标准。在其他条件相同的情况下,仅靠放电电压就不能令人信服,因为它由正极柱的电压(场强乘以柱长)和电极护套电压(ESV)组成,后者不参与其中。轻的生产。因此,我们确定了Hg,Ne,Ar和Xe中的电场强度,并获得了相应的ESV作为副产物。

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