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1-D Physical Model of Charge Distribution and Transport in Dielectric Materials Under Space Radiations

机译:空间辐射下介电材料中电荷分布和传输的一维物理模型

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In this paper, the development of a 1-D physical and numerical model is presented for the description of charge transport and ionization processes of irradiated space used polymers (Teflon FEP and Kapton HN). This model extends the previous circuit model described by Hanna et al. and relies on solid-state physics. This model aims at predicting the charging behavior of space used dielectric materials under space radiation conditions. A physical validation is carried out through crossed comparisons with the experimental data on surface potentials, conductivity and bulk charge distribution. For this physical validation, different irradiation conditions and several materials are presented. The interest of this 1-D model is to obtain a more realistic prediction of dielectric charging behavior as a function of time as well as a better bulk charge description.
机译:在本文中,提出了一维物理和数值模型的发展,用于描述空间辐照过的聚合物(特富龙FEP和Kapton HN)的电荷传输和电离过程。该模型扩展了Hanna等人描述的先前的电路模型。并依赖于固态物理学。该模型旨在预测空间辐射条件下空间使用的介电材料的充电行为。通过与表面电势,电导率和体电荷分布的实验数据进行交叉比较,进行了物理验证。为了进行这种物理验证,提出了不同的照射条件和几种材料。这种一维模型的兴趣在于获得作为时间函数的介电充电行为的更现实的预测,以及更好的整体电荷描述。

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