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A Relativistic Self-Consistent Model for Studying Enhancement of Child-Langmuir Limit due to Counter-Streaming Ions

机译:一个相对论的自洽模型研究反向流离子对儿童朗格缪尔极限的增强

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A maximum electron current transmitted through a planar diode gap is limited by space charge of electrons dwelling across the gap region, the so called Child-Langmuir (CL) law. By introducing a counter-streaming ion flow to neutralize the electron charge density, the CL limit can be dramatically raised, so electron current transmission gets enhanced. In this work, we have developed a relativistic self-consistent model for studying the enhancement of maximum transmission by a counter-streaming ion current. The maximum enhancement is found when the ion effect is saturated, as shown analytically. The solutions in non-relativistic, intermediate, and ultrarelativistic regimes are obtained and verified with 1-D particle-in-cell simulations. This self-consistent model is general and can also serve as a comparison for verification of simulation codes, as well as extension to higher dimensions.
机译:通过平面二极管间隙传输的最大电子电流受到驻留在间隙区域内的电子的空间电荷的限制,这就是所谓的Child-Langmuir(CL)定律。通过引入逆流离子流来中和电子电荷密度,可以显着提高CL极限,从而增强电子电流传输。在这项工作中,我们已经建立了相对论的自洽模型,用于研究通过逆流离子电流提高最大透射率。如分析所示,当离子效应达到饱和时,可以找到最大的增强效果。获得了非相对论,中间和超相对论方案的解决方案,并通过一维粒子模拟在细胞中进行了验证。这个自洽模型是通用的,也可以用作比较以验证模拟代码,以及扩展到更高的尺寸。

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