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Effective Landau-Devonshire-type theory of phase transitions in ferroelectric thin films based on the Tilley-Zeks model

机译:基于Tilley-Zeks模型的铁电薄膜中有效的Landau-Devonshire型相变理论

摘要

A generalized thermodynamic theory (effective Landau-Devonshire-type theory) for ferroelectric thin films undergoing second order phase transition is developed within the framework of the Landau-Ginzburg theory via the concept of extrapolation length δ in the Tilley-Zeks model. The free energy of the Tilley-Zeks model for ferroelectric thin films is cast into a clearer and simpler form from the usual integral expression form using suitable order parameters. The target coefficients A and B for the second order and fourth order terms, respectively, of the free energy are expressed as a function of temperature, film thickness, extrapolation length and other physical parameters. The intrinsic effects of surface on the order of phase transitions are discussed analytically with an emphasis on asymmetric films.
机译:通过Tilley-Zeks模型中外推长度δ的概念,在Landau-Ginzburg理论的框架内,开发了用于经历二阶相变的铁电薄膜的广义热力学理论(有效的Landau-Devonshire型理论)。铁电薄膜的Tilley-Zeks模型的自由能使用适当的阶次参数从通常的积分表达式形式转换为更清晰,更简单的形式。自由能的二阶和四阶项的目标系数A和B表示为温度,膜厚,外推长度和其他物理参数的函数。分析性地讨论了表面对相变顺序的内在影响,重点是不对称膜。

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