The Electric Susceptibility of Bi-Layers Ferroelectrics

V. Gunawan, N. A. K. Umiati, A. Subagio
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Abstract

In order to enhance insight of layered structure, we perform numerical calculation to obtain the dynamic electric susceptibility in bi-layers ferroelectrics. Since susceptibility is a parameter which gives response to the external field, then determination of this parameter is important. A lattice model is employed to slice bilayer structure into several lattices.  Then, Landau-Khalatnikov equation of motion is used in each lattice to construct a matrix equation of equation of motion.  The solution is obtained by applying entire-cell effective medium.  We find that the homogeneity of dynamic polarization is different from homogeneity of the single individual layer due to the existence of interlayer interaction.  As a result, the electric susceptibility is also altered.  It is also noticed that there is a relation between the homogeneity of dynamic polarization and the value of electric susceptibility near resonant frequency.  The higher the homogeneity, the bigger the values of susceptibility will be. 
双层铁电体的磁化率
为了加深对层状结构的认识,我们对双层铁电体的动态磁化率进行了数值计算。由于磁化率是对外界电场作出响应的一个参数,因此确定这个参数是很重要的。采用点阵模型将双层结构分割成若干个点阵。然后,在每个格子中使用Landau-Khalatnikov运动方程,构造运动方程的矩阵方程。溶液采用全细胞有效介质制备。我们发现由于层间相互作用的存在,动态极化的均匀性不同于单个层的均匀性。因此,电磁化率也发生了变化。动态极化的均匀性与谐振频率附近的电磁化率值之间存在一定的关系。均匀性越高,磁化率越大。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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