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Peculiarities and asymmetry of polarization reversal in Pt/PZT-film/Pt:Ti/SiO₂/Si-substrate structures in pyroelectric response investigations

机译:热电响应研究中Pt / PZT膜/ Pt:Ti / SiO 2 / Si衬底结构中极化反转的特殊性和不对称性

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摘要

By RF magnetron sputtering method the Pt/PZT-film/Pt:Ti-sublayer/SiO₂/Si-substrate structures were prepared and pyroelectric response amplitude and phase behaviour under external voltage application was investigated by photopyroelectric modulation method.udThe results of investigation of pyroelectric response – external voltage loops of polarization reversal, pyroelectric response – voltage poling curves and pyroelectric response – time repolarization curves and also dynamic current-voltage characteristics of Pt/PZT/Pt:Ti/SiO₂/Si-substrate structures are presented.udFrom variation of pyroelectric response in the current and voltage modes the capacity-voltage loops of polarization reversal and poling curves were derived. From asymmetric pyroelectric response – time repolarization curves the voltage behaviour of characteristic times of zero response and saturation was analyzed. Observed transformations of current-voltage characteristics display the considerable voltage and time dependent variation of charge transfer conditions.udThe performed investigation has shown the strong correlation between the poling pyroelectric and so ferroelectric and electrical asymmetries. Presented data on the polar and time asymmetry of the conditions of polarization reversal are discussed in the terms of influence of dynamics of space charge asymmetry on pinning conditions under the different polarity of applied voltage in the course of polarization reversal.
机译:通过射频磁控溅射法制备了Pt / PZT膜/ Pt:Ti-Ti层/ SiO 2 / Si衬底结构,并通过光热电调制方法研究了外加电压下的热电响应幅度和相行为。 ud研究结果热电响应–极化反转的外部电压环路,热电响应–电压极化曲线和热电响应–时间重新极化曲线,以及Pt / PZT / Pt:Ti / SiO 2 / Si衬底结构的动态电流-电压特性。电流和电压模式下热释电响应的变化,推导了极化反转和极化曲线的容量-电压回路。从非对称热释电响应-时间复极化曲线分析了零响应和饱和的特征时间的电压行为。观察到的电流-电压特性的变换显示出电荷转移条件随电压和时间的变化而变化。 ud所进行的研究表明,极化热释电与铁电和电子不对称性之间具有很强的相关性。根据极化反转过程中空间电荷不对称动力学对施加电压不同极性下的钉扎条件的影响,讨论了极化反转条件的极性和时间不对称性的现有数据。

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