A new technique for simultaneous measurements of space charge and TSDC in polymer films

J. Reboul, M. Rouff
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Abstract

Profiles of space charge and spectra of thermo-stimulated discharge currents (TSDC) are valuable pieces of information for the study of injection, transport and trapping of charges and polarization in insulating materials. Space charge measurements are generally realized by non destructive methods, which allow following the evolution of the density of charges but without information on their nature. On the contrary, studies of TSDC generally give information on the nature of the charges, but each run makes them disappear. Coupling the results from the two techniques is of great interest. The present work is concerned with the development of a new technique for simultaneous measurements of space charge profiles and TSDC on polymer films. A controlled thermo-electrical module is used to generate the appropriate thermal stimulations and both measurements can be made without dismantling the measuring cell. The processing of the current response to small alternative temperature variations leads to the space charge profile. The current response to a linear increase of temperature gives directly the TSDC spectrum.
同时测量聚合物薄膜中空间电荷和TSDC的新技术
热激放电电流(TSDC)的空间电荷分布和光谱是研究绝缘材料中电荷的注入、输运和俘获以及极化的重要信息。空间电荷测量通常是通过非破坏性方法实现的,这种方法允许跟踪电荷密度的演变,但没有关于其性质的信息。相反,对TSDC的研究通常提供有关电荷性质的信息,但每次运行都会使它们消失。将这两种技术的结果结合起来非常有趣。本文研究了一种同时测量聚合物薄膜上空间电荷分布和TSDC的新技术。一个受控的热电模块用于产生适当的热刺激,两种测量都可以在不拆卸测量单元的情况下进行。对小的交替温度变化的电流响应的处理导致空间电荷分布。电流对温度线性升高的响应直接给出了TSDC谱。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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