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Small Ion Driven VUV/UV Light Sources for Laboratory Applications

机译:实验室应用的小离子驱动VUV / UV光源

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摘要

Inertial electrostatic confinement (IEC) devices offer a unique method to generate energetic ions for excitation of rare gas and rare gas halide excimers. A unique feature for this approach is that it allows small sized units with the ion source and excimer medium contained in vessels of order 30-cm radius. The IEC operates by applying a high negative voltage (up to -100 kV) on a spherical mesh grid (cathode) located in the center of a grounded grid (anode), all within a spherical vacuum vessel. A plasma discharge is created between the grids. The cathode extracts ions from the discharge and accelerates them towards the center of the device. Large ion background gas collision densities are created in the center region and along the ion beam paths, creating intense light emission. An alternate approach discussed here allow lower operating pressures and reduced ion thermalization, giving improved emission efficiencies, uses an external RF ion generator to separate the injected species from the mixture. The injector increases the device size, but a compact RF source has been developed which involves injector diameters of only ~6 cm by 30- cm length. Designs for such devices and their operation will be described.
机译:惯性静电限制(IEC)器件提供了一种独特的方法,用于产生稀有气体和稀有气体卤化物准分机的激发能量离子。这种方法的独特特征是它允许具有在30厘米半径的血管中具有离子源和准分子介质的小尺寸单元。 IEC通过在位于接地网格(阳极)中心的球形网格(阴极)上施加高负电压(高达-100kV),全部在球形真空容器内。在网格之间产生等离子体放电。阴极从放电中提取离子,并将它们朝向器件的中心加速。在中心区域和沿离子束路径中产生大离子背景气体碰撞密度,产生强烈的发光。这里讨论的替代方法允许降低的操作压力和降低的离子热化,产生改善的发射效率,使用外部RF离子发生器将注射物种与混合物分离。喷射器增加了装置尺寸,但是已经开发了紧凑的RF源,其涉及仅〜6cm的喷射器直径30厘米长度。将描述这种设备的设计及其操作。

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