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First order ferroelectric-paraelectric phase transition in thin films: Imperfection influence

机译:薄膜中的一级铁电 - 琼脂相转变:缺乏影响

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A general numerical scheme based on Landau-Devonshire free energy is applied for ferroelectric thin films undergoing a first order phase transition to describe the influence of imperfect surface layers and depolarization field on profile of polarization P(z) and phase transition temperature. It is known that the physical properties of thin films are significantly different from those of bulk ferroelectrics. The surface effect is one of this important proprieties observed in ferroelectric thin films; at the surface of the film the coordination of atoms is different from that inside the film. As a consequence, surface atoms would have an equilibrium interatomic spacing dissimilar from that of the interior atoms if the film were free standing. In this work, ferroelectric-paraelectric phase transition is discussed from the LD phenomenological theory, the profile distribution P(z) of the order parameter is described by an Euler-Lagrange equation with apply a corresponding boundary condition on P.
机译:基于Landau-Devonshire自由能量的一般数值方案应用于经历第一阶相转变的铁电薄膜,以描述缺乏表面层和去极化场对偏振P(Z)和相变温度曲线的影响。众所周知,薄膜的物理性质与散装铁电器的物理性质显着不同。表面效果是在铁电薄膜中观察到的这个重要的文章之一;在薄膜的表面,原子的配位与薄膜内部的不同。结果,如果薄膜是自由静态,则表面原子将具有与内部原子的平衡外部间隔不相似。在这项工作中,从LD现象理论中讨论了铁电 - 释电相转变,顺序参数的轮廓分布P(Z)由欧拉拉格朗法兰方程描述,在P.上应用相应的边界条件。

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