Method of solid dielectrics acoustic probing and its capabilities

S. Boev, K. Mikheev
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Abstract

The nondestructive method of electric field probing and polarization in solid dielectrics with acoustic pressure pulses has great possibilities and prospects in investigating the processes and mechanisms of charge transport and slow component of relaxation polarization, which is not displayed by measuring relative dielectric constant at alternating voltage. The experimental procedure and methods of processing the experimental results are being constantly improved. In this case the main problem is the separation of contributions made to the measured signal by space charge and polarization. The most informative way to realize this method is based on the reverse piezoelectric effect, which allows to register fast-running processes of changing the space charge and polarization with a resolution of tens of micrometers. The criteria elaborated allow to estimate the contribution of charge and polarization to the measured signal when probing polar and non-polar dielectrics. The results of the analysis have shown that probing the space charge allows to estimate the value of effective mobility for electrons and holes, and their field dependence, to determine the real value of specific volume electrical conductivity, to determine the contribution of excess and normal charge carriers to the processes of electric transport, and to test the condition of the electrode-sample contact of a dielectric.
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固体介质声探测方法及其性能
利用声压脉冲对固体介质进行电场探测和极化的无损方法,在研究交流电压下相对介电常数所不能显示的电荷输运过程和机制以及弛豫极化的慢分量方面,具有很大的可能性和前景。实验程序和处理实验结果的方法也在不断改进。在这种情况下,主要问题是空间电荷和极化对测量信号的贡献的分离。实现这种方法的最有效的方法是基于反向压电效应,它允许以几十微米的分辨率记录空间电荷和极化变化的快速运行过程。所阐述的准则允许在探测极性和非极性电介质时估计电荷和极化对测量信号的贡献。分析结果表明,探测空间电荷可以估计电子和空穴的有效迁移率值及其场依赖关系,确定比容电导率的实际值,确定多余和正常载流子对电输运过程的贡献,并测试电介质的电极-样品接触状况。
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