Department of Physical and Chemical Sciences, University of L'Aquila, L'Aquila, Italy.
J Phys Condens Matter. 2013 Feb 13;25(6):066001. doi: 10.1088/0953-8984/25/6/066001. Epub 2013 Jan 10.
First-principles density functional theory (DFT) simulations for Fe/BaTiO(3) and Co/BaTiO(3) junctions have been performed with different treatments of the exchange-correlation potential, ranging from standard semilocal density approximations to a Hubbard-like approach and to hybrid functionals. With the aim of elucidating the role of correlations in the microscopic interplay between ferroelectricity and magnetism in the interfacial region, we find that, compared to standard DFT approximations, Hubbard-like approaches and hybrid functionals do not qualitatively modify the physical origin behind magnetoelectric effects driven by interfacial orbital hybridization. Rather, more accurate treatments of correlations for both Fe/BaTiO(3) and Co/BaTiO(3) interfaces predict a stronger change of the interface magnetization upon switching the direction of polarization in the ferroelectric layer.
采用不同的交换关联势处理方法,如标准局域密度近似、Hubbard 型近似和混合泛函等,对 Fe/BaTiO(3)和 Co/BaTiO(3)结进行了第一性原理密度泛函理论(DFT)模拟。为了阐明相关作用在界面区域铁电与磁性微观相互作用中的作用,我们发现与标准 DFT 近似相比,Hubbard 型近似和混合泛函并没有从根本上改变界面轨道杂化驱动的磁电效应的物理起源。相反,对于 Fe/BaTiO(3)和 Co/BaTiO(3)界面,更精确地处理相关作用可以预测铁电层中极化方向改变时界面磁化强度的更强变化。