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A Method to Study Ageing of Polydomain Ferroelectrics using Measurements of Nonlinear Permittivity

机译:一种利用非线性介电常数测量研究多畴铁电体老化的方法

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摘要

It is known that the permittivity of the ferroelectric films is affected by several phenomena, which deteriorate the material quality (e.g. the redistribution of the crystal lattice defects, appearance of the electrode-adjacent non-ferroelectric layers or the spontaneous polarization screening due to a free charge injection across the electrode-adjacent layer, etc.). It is also known that the permittivity of ferroelectric polydomain films is controlled by the sum of two contributions: the crystal lattice (intrinsic) contribution and the domain wall movement (extrinsic) contribution. It is the latter one, which is very sensitive to the aforementioned phenomena and which plays a key role in the deterioration of the dielectric response of the ferroelectric polydomain films. In this Article, there is presented a method for the identification of the process, which is responsible for the ferroelectric ageing. The method is based on the analysis of the evolution of both the linear and nonlinear permittivity during ageing. Applicability of the method is theoretically demonstrated on four ageing scenarios in two qualitatively different systems where the evolution of the nonlinear permittivity is controlled, first, by a redistribution of the pinning centers on the domain wall and, second, by microstructural changes at the interface between the ferroelectric layer and the electrode. It is shown that each ageing scenario is characterized by unique trend in the evolution between the linear and nonlinear part of the permittivity, which can be verified experimentally.
机译:众所周知,铁电薄膜的介电常数会受到几种现象的影响,这些现象会降低材料质量(例如,晶格缺陷的重新分布,与电极相邻的非铁电层的出现或由于自由产生的自发极化屏蔽)跨电极相邻层注入电荷等)。还已知铁电多畴膜的介电常数由两个贡献的和控制:晶格(本征)贡献和畴壁运动(本征)贡献。它是后一种,它对上述现象非常敏感,并且在铁电多畴膜的介电响应的恶化中起关键作用。在本文中,提出了一种识别过程的方法,该方法负责铁电时效。该方法基于老化过程中线性和非线性介电常数的演变分析。该方法的适用性从理论上论证了在两个性质不同的系统中的四种老化情况下,其中非线性介电常数的变化是受控的,首先是通过钉扎中心在畴壁上的重新分布,其次是通过在界面之间的微结构变化铁电层和电极。结果表明,每种老化情况的特征在于介电常数的线性部分和非线性部分之间的演化具有独特的趋势,可以通过实验进行验证。

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