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Measurement of conductivity and charge storage in insulators related to spacecraft charging

机译:测量与航天器充电有关的绝缘子中的电导率和电荷

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摘要

Improved experimental methods are discussed for laboratory measurement of conductivity and electric field in insulating spacecraft material intended for space radiation and plasma environments. These measurement techniques investigate the following features: 1) measurements of conductivity are up to four orders of magnitude smaller than those determined by existing standard methods. 2) Conductivity is altered as radiation accumulates and trapping states fill with electrons. 3) With intense kiloelectronvolt electron irradiation, electrons are continually emitted for hours from the irradiated surface after the irradiation ceases. 4) Charging induced by electron irradiation is strongly modified by the electron-hole pairs that the irradiation generates in the insulator. 5) High field effects at 10/sup 6/ V/cm act strongly on the electron-hole pairs and on electrons in shallow traps to provide extended conductivity. 6) The capacitance of the sample can be measured in the same apparatus along with the other testing. 7) Visible light can be used to investigate conduction by electrons (or holes) emitted from shallow trapping levels. The qualitative physics of such processes in solid dielectrics has long been known, and instrumentation is developed here for measuring the effects in practical spacecraft charging applications.
机译:讨论了用于实验室测量绝缘航天器材料的电导率和电场的改进实验方法,该材料用于空间辐射和等离子体环境。这些测量技术研究了以下特征:1)电导率的测量值比现有标准方法确定的测量值小四个数量级。 2)电导率随着辐射的累积而改变,并且俘获态充满电子。 3)在强烈的千伏电子辐照下,停止辐照后,电子从被辐照的表面连续发射数小时。 4)电子辐射引起的电荷被绝缘体中产生的电子-空穴对强烈改变。 5)10 / sup 6 / V / cm处的高场效应强烈作用于电子-空穴对和浅陷阱中的电子,以提供扩展的电导率。 6)可以在同一设备中与其他测试一起测量样品的电容。 7)可见光可用于调查浅陷阱能级发出的电子(或空穴)的传导。固体电介质中此类过程的定性物理学早已为人所知,这里开发了用于测量实际航天器充电应用中的影响的仪器。

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