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Phenomenological model for pyroelectric effects of nano graded ferroelectric films

机译:纳米分级铁电薄膜热电效应的现象学模型

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In order to improve the pyroelectric properties of nano graded ferroelectric films (NGFF), and provide a theoretical reference for practical applications, the generalized Ginzburg-Landau-Denvonshire(GLD) theory is adopted to investigate the pyroelectric properties of the NGFF. A function is introduced to characterize the local structure in nano graded films. Influence of the local structure, film thickness and external electric field on the polarization distribution and pyroelectric properties are mainly discussed. The numerical results show that parameter a and film thickness are two very important factors that influence the film properties, larger a values lead to smaller spontaneous polarization and lower pyroelectric peak. Different directions of the external electric field can lead to greatly different effects on pyroelectric behaviors, whose effects is to expand the working temperature region, or else, change the order of phase transition.
机译:为了提高纳米渐变铁电薄膜(NGFF)的热电性能,并为实际应用提供理论参考,采用广义的金茨堡 - Landau-Denvonshire(GLD)理论来研究NGFF的热电学性质。引入功能以表征纳米分级膜中的局部结构。主要讨论了局部结构,膜厚度和外部电场对偏振分布和热电特性的影响。数值结果表明,参数A和膜厚度是影响膜特性的两个非常重要的因素,较大的值导致较小的自发极化和较低的热电峰值。外部电场的不同方向可能导致对热电行为的大大不同影响,其效果是扩展工作温度区域,或者改变相变的顺序。

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