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Polarization effect of free carriers in ZnO single crystal

机译:ZnO单晶中自由载流子的极化效应

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摘要

Considering the response of free charges to high frequency alternating current (AC) electric field and multi-emission and capture processes of weakly bound charges, dielectric relaxation effect of free carriers are proposed in this paper. According to this model, free charges and bound charges are regarded as the same except for the difference in transport distance, which is defined by the frequency of applied AC electric field. Therefore conduction process of free charges and dielectric relaxation process of weakly bound charges in traditional dielectric theories are believed in this new model to originate from the same micro-mechanism of charge transport. In order to verify the validity of this model, dielectric properties of ZnO single crystal were measured by Novocontrol wide band dielectric spectrometer in temperature range from -120 to 30°C and frequency range from 1 to 10Hz. The relationship between electronic trap relaxation and dielectric relaxation effect of conduction process are discussed in detail. It was found that dielectric abnormity at low frequency and high frequency originates from conduction process of free carriers in grain and electronic trap relaxation at depletion layer respectively, both of which originate from the same micro-mechanism of electronic transport bound by intrinsic point defect. The paper offers a completely new way to understand and investigate dielectric relaxation phenomena.
机译:考虑到自由电荷对高频交流电场的响应以及弱束缚电荷的多次发射和俘获过程,提出了自由载流子的介电弛豫效应。根据该模型,自由电荷和束缚电荷被视为相同,只是传输距离的差异由传输的交流电场的频率定义。因此,在传统的介电理论中,自由电荷的传导过程和弱束缚电荷的介电弛豫过程在该新模型中被认为源自电荷传输的相同微观机制。为了验证该模型的有效性,使用Novocontrol宽带介电谱仪在-120至30°C的温度范围和1至10Hz的频率范围内测量了ZnO单晶的介电性能。详细讨论了电子陷阱弛豫与导电过程的介电弛豫效应之间的关系。发现低频和高频的介电异常分别来自晶粒中自由载流子的传导过程和耗尽层的电子陷阱弛豫,两者均源于由固有点缺陷约束的相同的电子输运微机制。本文提供了一种全新的方式来理解和研究介电弛豫现象。

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