Kruglyak V V, Gorobets O Yu, Gorobets Yu I, Kuchko A N
School of Physics, University of Exeter, Stocker road, Exeter, EX4 4QL, UK.
J Phys Condens Matter. 2014 Oct 8;26(40):406001. doi: 10.1088/0953-8984/26/40/406001. Epub 2014 Sep 15.
We develop a systematic approach to derive boundary conditions at an interface between two ferromagnetic materials in the continuous medium approximation. The approach treats the interface as a two-sublattice material, although the final equations connect magnetizations outside of the interface and therefore do not explicitly depend on its structure. Instead, the boundary conditions are defined in terms of some average properties of the interface, which may also have a finite thickness. In addition to the interface anisotropy and symmetric exchange coupling, this approach allows us to take into account coupling resulting from inversion symmetry breaking in the vicinity of the interface, such as the Dzyaloshinskii-Moriya antisymmetric exchange interaction. In the case of negligible interface anisotropy and Dzyaloshinskii-Moriya exchange parameters, the derived boundary conditions represent a generalization of those proposed earlier by Barnaś and Mills and are therefore named 'generalized Barnaś-Mills boundary conditions'. We demonstrate how one could use the boundary conditions to extract parameters of the interface via fitting of appropriate experimental data. The developed theory could be applied to modeling of both linear and non-linear spin waves, including exchange, dipole-exchange, magnetostatic, and retarded modes, as well as to calculations of non-uniform equilibrium micromagnetic configurations near the interface, with a direct impact on the research in magnonics and micromagnetism.
我们开发了一种系统方法,以在连续介质近似下推导两种铁磁材料界面处的边界条件。该方法将界面视为一种双亚晶格材料,尽管最终方程连接的是界面外的磁化强度,因此并不明确依赖于其结构。相反,边界条件是根据界面的一些平均性质来定义的,界面也可能具有有限的厚度。除了界面各向异性和对称交换耦合外,这种方法还使我们能够考虑界面附近反演对称性破缺所导致的耦合,例如Dzyaloshinskii-Moriya反对称交换相互作用。在界面各向异性和Dzyaloshinskii-Moriya交换参数可忽略不计的情况下,导出的边界条件是对Barnaś和Mills先前提出的边界条件的推广,因此被称为“广义Barnaś-Mills边界条件”。我们展示了如何通过拟合适当的实验数据,利用这些边界条件来提取界面参数。所发展的理论可应用于线性和非线性自旋波的建模,包括交换、偶极-交换、静磁和延迟模式,以及界面附近非均匀平衡微磁结构的计算,这对磁振子学和微磁学的研究有直接影响。