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Magnetic Insulation for Electrostatic Accelerators

机译:静电促进剂磁绝缘

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The voltage gradient which can be sustained between electrodes without electrical breakdowns is usually one of the most important parameters in determining the performance which can be obtained in an electrostatic accelerator. We have recently proposed a technique which might permit reliable operation of electrostatic accelerators at higher electric field gradients, perhaps also with less time required for the conditioning process in such accelerators. The idea is to run an electric current through each accelerator stage so as to produce a magnetic field which envelopes each electrode and its electrically conducting support structures. Having the magnetic field everywhere parallel to the conducting surfaces in the accelerator should impede the emission of electrons, and inhibit their ability to acquire energy from the electric field, thus reducing the chance that local electron emission will initiate an arc. A relatively simple experiment to assess this technique is being planned. If successful, this technique might eventually find applicability in electrostatic accelerators for fusion and other applications.
机译:可以在没有电击的电极之间持续的电压梯度通常是在确定可以在静电加速器中获得的性能的最重要参数之一。我们最近提出了一种技术,该技术可能允许在较高电场梯度处可靠地操作静电促进剂,也许也可能在这种加速器中的调节过程所需的时间较少。该思想是通过每个加速器台运行电流,以产生磁场,其包围每个电极及其导电支撑结构。具有与加速器中的导电表面平行的磁场应该妨碍电子的发射,并抑制它们从电场获取能量的能力,从而减少了本地电子发射将启动电弧的机会。正在计划评估该技术的一个相对简单的实验。如果成功,这种技术可能最终在静电和其他应用中找到静电加速器的适用性。

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