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Polarization dynamics and non-equilibrium switching processes in ferroelectrics

机译:铁电体中的极化动力学和非平衡切换过程

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摘要

Time- and temperature-dependent effects are critical for the operation of non-volatile memories based on ferroelectrics. In this paper, we assume a domain nucleation process of the polarization reversal and we discuss the polarization dynamics in the framework of a non-equilibrium statistical model. This approach yields analytical expressions which can be used to explain a wide range of time- and temperature-dependent effects in ferroelectrics. Domain wall velocity derived in this work is consistent with a domain wall creep behavior in ferroelectrics. In the limiting case of para-electric equilibrium, the model yields the well-known Curie law. We also present experimental P-E loops data obtained for soft ferroelectrics at various temperatures. The experimental coercive fields at various temperatures are well predicted by the coercive field formula derived in our theory.
机译:时间和温度相关的影响对于基于铁电体的非易失性存储器的操作至关重要。在本文中,我们假设极化反转的区域成核过程,并在非平衡统计模型的框架内讨论极化动力学。这种方法得出的解析表达式可用于解释铁电中各种与时间和温度有关的效应。在这项工作中得出的畴壁速度与铁电体中的畴壁蠕变行为一致。在顺电平衡的极限情况下,该模型得出了众所周知的居里定律。我们还介绍了在不同温度下获得的软铁电材料的实验P-E回路数据。通过我们的理论得出的矫顽场公式可以很好地预测各种温度下的实验矫顽场。

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