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The influence of the secondary electrons induced by energetic electrons impacting the Cassini Langmuir probe at Saturn

机译:高能电子诱发的二次电子对土星卡西尼朗缪尔探测的影响

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摘要

The Cassini Langmuir Probe (LP) onboard the Radio and Plasma Wave Science experiment has provided much information about the Saturnian cold plasma environment since the Saturn Orbit Insertion in 2004. A recent analysis revealed that the LP is also sensitive to the energetic electrons (250–450 eV) for negative potentials. These electrons impact the surface of the probe and generate a current of secondary electrons, inducing an energetic contribution to the DC level of the current-voltage (I-V) curve measured by the LP. In this paper, we further investigated this influence of the energetic electrons and (1) showed how the secondary electrons impact not only the DC level but also the slope of the (I-V) curve with unexpected positive values of the slope, (2) explained how the slope of the (I-V) curve can be used to identify where the influence of the energetic electrons is strong, (3) showed that this influence may be interpreted in terms of the critical and anticritical temperatures concept detailed by Lai and Tautz (2008), thus providing the first observational evidence for the existence of the anticritical temperature, (4) derived estimations of the maximum secondary yield value for the LP surface without using laboratory measurements, and (5) showed how to model the energetic contributions to the DC level and slope of the (I-V) curve via several methods (empirically and theoretically). This work will allow, for the whole Cassini mission, to clean the measurements influenced by such electrons. Furthermore, the understanding of this influence may be used for other missions using Langmuir probes, such as the future missions Jupiter Icy Moons Explorer at Jupiter, BepiColombo at Mercury, Rosetta at the comet Churyumov-Gerasimenko, and even the probes onboard spacecrafts in the Earth magnetosphere.
机译:自2004年土星轨道插入以来,无线电和等离子波科学实验中的卡西尼Langmuir探针(LP)提供了有关土星冷等离子体环境的许多信息。最近的分析表明,该LP对高能电子也很敏感(250– 450 eV)。这些电子撞击探针的表面并产生二次电子电流,从而对LP测量的电流-电压(I-V)曲线的DC电平产生高能贡献。在本文中,我们进一步研究了高能电子的这种影响,(1)显示了二次电子如何不仅影响直流电,而且还影响(IV)曲线的斜率以及意外的正斜率,(2)解释(IV)曲线的斜率如何用于确定高能电子的影响在哪里很强,(3)表明可以用Lai和Tautz(2008)详细描述的临界和反临界温度概念来解释这种影响。 ),从而提供了有关抗临界温度存在的第一个观察证据;(4)在不使用实验室测量值的情况下,得出了LP表面的最大二次屈服值的估算值;(5)显示了如何对DC的能量贡献进行建模(IV)曲线的水平和斜率通过几种方法(经验和理论上)。对于整个卡西尼号任务,这项工作将允许清洗受此类电子影响的测量结果。此外,对这种影响的理解可能会用于其他使用Langmuir探测器的任务,例如未来木星的Jupiter Icy Moons Explorer,Mercury的BepiColombo,Churyumov-Gerasimenko彗星的Rosetta,甚至是地球上航天器的探测器磁层。

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