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由界面处积累的电荷驱动的薄膜铁电性。

Ferroelectricity in thin films driven by charges accumulated at interfaces.

作者信息

Teodorescu Cristian M

机构信息

National Institute of Materials Physics, Atomiştilor 405A, 07715 Măgurele - Ilfov, Romania.

出版信息

Phys Chem Chem Phys. 2021 Feb 21;23(7):4085-4093. doi: 10.1039/d0cp05617k. Epub 2021 Jan 18.

Abstract

A simple view of ferroelectricity is proposed for a thin film with uniform polarization oriented perpendicular to its surface, starting from the assumption that this situation is always accompanied by charge accumulation in the outer metal electrodes, in the contamination layers or near the surface, in the ferroelectric film itself. Starting with the formula derived for an "elemental" dipole moment in the film, simple statistical mechanics allows one to derive hysteresis cycles, and their dependence on temperature starting with only two parameters: the dielectric constant of the material and the maximum value of the dipole moment of a unit cell. Values obtained for Curie temperatures and coercive fields agree well with experiments. "Exact" energy dependencies on the asymmetry parameter are derived, and their connection with the Landau-Ginsburg-Devonshire is proven. By considering also the dipolar interaction in a continuous model, in addition to the ordering energy in the presence of surface charge accumulation, one may estimate the distribution of the polarization inside the film and the validity of the hypothesis of uniform polarization.

摘要

从这样一个假设出发,即对于一个极化均匀且垂直于其表面的铁电薄膜,这种情况总是伴随着外部金属电极、污染层或表面附近以及铁电薄膜本身中的电荷积累,我们提出了一种关于铁电体的简单观点。从薄膜中“基本”偶极矩的推导公式开始,简单的统计力学允许人们仅从两个参数:材料的介电常数和单位晶胞偶极矩的最大值出发,推导出磁滞回线及其对温度的依赖性。所得到的居里温度和矫顽场的值与实验结果吻合得很好。推导了“精确”的能量与不对称参数的依赖关系,并证明了它们与朗道 - 金兹堡 - 德文希尔理论的联系。通过在连续模型中考虑偶极相互作用,除了存在表面电荷积累时的有序能之外,还可以估计薄膜内部极化的分布以及均匀极化假设的有效性。

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