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首页> 外文期刊>Journal of Geophysical Research, A. Space Physics: JGR >Plasma particle simulations on stray photoelectron current flows around a spacecraft
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Plasma particle simulations on stray photoelectron current flows around a spacecraft

机译:等离子体粒子模拟的光电子电流在一个宇宙飞船

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In tenuous space plasmas, photoelectron flows produce complex current paths among multiple conducting elements of spacecraft, which may influence the current-voltage characteristics of double-probe electric field sensors. We performed full-particle simulations on this effect by assuming a sensor configuration that is typical of recent designs like those on Cluster, THEMIS, and BepiColombo/MMO; the spherical probe is separated from a conducting boom by biased electrodes known as the 'stub' and the 'guard'. The assumed bias potential scheme corresponds to that planned for BepiColombo/MMO and is different from those used in the other satellites. The analysis focuses on stray photoelectron currents flowing from these electrodes and a spacecraft body. Photoelectrons approaching the probe are commonly repelled by the guard, the potential of which is strongly biased negatively, and are subsequently affected by the probe potential. Consequently, the photoelectron current magnitude increases with increasing probe potential regardless of their origins, when the probe operates between the plasma and floating spacecraft potentials. The result indicates that both photoelectron currents from the spacecraft body and biased electrodes can be minimized by selecting the probe working potential as close as possible to the plasma potential. We also examine the photoelectron current dependence on the presence or absence of the guard electrode operation and confirm a positive effect of reducing the photoelectron current from the spacecraft. However, negative side effects of the guard operation enhance the photoelectron currents from the stub and guard, when the probe operates nearly at the plasma potential.
机译:在脆弱的空间等离子体,光电子流动在多个产生复杂的电流路径进行航天器的元素,影响的电流电压特性双探针电场传感器。full-particle模拟效果假设一个传感器典型的配置最近的设计就像是在集群,忒弥斯,和探测/ MMO;分开进行的繁荣有偏见电极被称为“存根”和“保护”。假定的偏见可能计划对应计划在水星探测器/ MMO,是不同的从这些用于其他卫星。分析关注流浪光电子电流从这些电极和宇宙飞船的身体。通常被警卫的潜力强烈偏向负面,是谁随后调查潜在的影响。因此,当前级光电子增加而增加探测器的潜力不管他们的起源,当调查等离子体和浮动之间的运作宇宙飞船的潜力。从宇宙飞船都光电子电流身体和偏置电极可以最小化尽可能选择探头的工作潜力等离子体势。当前依赖光电子存在与否的电极操作和确认的积极影响减少当前的光电子宇宙飞船。警卫队操作提高光电子电流从存根和警卫,当调查运营着近在等离子体的潜力。

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