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The effect of plasma density and emitter geometry on space charge limits for field emitter array electron charge emission into a space plasma

机译:等离子体密度和发射极几何形状对空间阵列电子电荷发射到空间等离子体的空间电荷限制

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摘要

Field Emitter Array Cathodes (FEACs) are a new technology being developed for several potential spacecraft electron emission and charge control applications. Instead of a single hot (i.e., high powered) emitter, or a gas dependant plasma contactor, FEAC systems consist of many (hundreds or thousands) of small (micron level) cathode/gate pairs printed on a semiconductor wafer that effect cold field emission at relatively low voltages. Each individual cathode emits only micro-amp level currents, but a functional array is capable of amp/cm2 current densities. It is hoped that thus FEAC offers the possibility of a relatively low-power, simple to integrate, and inexpensive technique for the high level of current emissions that are required for an electrodynamic tether (EDT) propulsion mission. Space charge limits are a significant concern for the EDT application. Vacuum chamber tests and PIC simulations are being performed at the University of Michigan Plasmadynamics and Electric Propulsion Laboratory and Space Physics Research Laboratory to determine the effect of plasma density and emitter geometry on space charge limitations. The results of this work and conclusions to date of how to best mitigate space charge limits will be presented. © 2001 American Institute of Physics.
机译:现场发射极阵列阴极(FEAC)是一种用于多个潜在航天器电子发射和电荷控制应用的新技术。代替单个热(即,高功率)发射器,或气体依赖等离子体接触器,FEAC系统由打印在效应冷场发射的半导体晶片上的许多(数十万个)的小(微米)阴极/栅极对组成在相对低的电压下。每个单独的阴极仅发出微放大器电平电流,但功能阵列能够提供AMP / CM2电流密度。因此,因此,FEAC提供了相对低功耗,简单地集成的可能性,以及用于电动系绳(EDT)推进任务所需的高电流排放的廉价技术。空间收费限制对于EDT应用是一个重要的问题。在密歇根州的级别血浆和电动推进实验室和空间物理研究实验室大学正在进行真空室测试和PIC模拟,以确定等离子体密度和发射极几何对空间充电限制的影响。将介绍这项工作的结果及结论,将介绍如何最佳减轻空间收费限制。 ©2001美国物理研究所。

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    Dave Morris;

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