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Dependence of vacuum electrical breakdown field and field enhancement factor on the number of apertures drilled in small electrodes

机译:真空击穿场和现场增强因子对小电极钻孔数量的依赖性

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Pre-breakdown current based on field-emission current is regarded as one of factors causing the vacuum electrical breakdown (BD) between the multi-aperture acceleration grids in the JT-60 negative ion source. In this paper, we focused on field enhancement factor β which is a key parameter of field-emission on the cathode. Vacuum BD tests for small-size electrodes drilled different number of apertures were carried out to investigate the β and BD field characteristics in the conditioning process of each electrode. Experimental results revealed that the increase of the number of apertures drilled in the electrode causes the increase of β value, and high β value reduces the dielectric strength of these electrodes. This result demonstrates that flowing field-emission current between the multi-aperture electrodes causes vacuum BD event.
机译:基于现场发射电流的预击穿电流被认为是导致JT-60负离子源中的多孔径加速网格之间的真空电击穿(BD)的因素之一。在本文中,我们专注于现场增强因子β,这是阴极上场发射的关键参数。对小尺寸电极的真空BD测试进行了不同数量的孔,以研究每个电极的调节过程中的β和BD场特性。实验结果表明,电极中钻孔的孔数的增加导致β值的增加,并且高β值降低了这些电极的介电强度。该结果表明,多孔电极之间的流场 - 发射电流导致真空BD事件。

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