论文标题

第一原则的自旋在置互动参数:理论和实施

Spin-lattice interaction parameters from first principles: theory and implementation

论文作者

Mankovsky, Sergiy, Lange, Hannah, Polesya, Svitlana, Ebert, Hubert

论文摘要

提出了一个方案以在第一原理级别进行计算 执行需要的自旋晶格耦合(SLC)参数 联合分子自旋动力学(MSD)模拟。通过处理同一级别上自旋配置和原子位置的变化,可以以连贯的方式得出原子SLC参数的封闭表达式。讨论了SLC参数的特性,并考虑了SLC张量的对称和反对称部分。将使用SLC参数估算的自旋旋转交换耦合(SSC)参数的原子位移引起的变化与针对嵌入式群集计算的SSC参数进行了比较,并且中央原子位移,表明这些结果的一致性很好。此外,这允许研究不同SLC贡献,线性和二次相对于位移的影响,对修饰的SSC参数的性质。此外,我们代表了一种计算晶格失真诱导的局部磁各向异性的位点 - 对抗SLC参数的方法,该晶格失真是基于用于研究Magneto-Crystalline各向异性(MCA)的磁性扭矩的方法,以及用于计算MCA常数。特别是,分析了诱导的磁扭矩对不同类型的原子位移的依赖性。

A scheme is presented to calculate on a first-principles level the spin-lattice coupling (SLC) parameters needed to perform combined molecular-spin dynamics (MSD) simulations. By treating changes to the spin configuration and atomic positions on the same level, closed expressions for the atomic SLC parameters could be derived in a coherent way up to any order. The properties of the SLC parameters are discussed considering separately the symmetric and antisymmetric parts of the SLC tensor. The changes due to atomic displacements of the spin-spin exchange coupling (SSC) parameters estimated using the SLC parameters are compared with the SSC parameters calculated for an embedded cluster with the central atom displaced, demonstrating good agreement of these results. Moreover, this allows to study the impact of different SLC contributions, linear and quadratic with respect to displacements, on the properties of the modified SSC parameters. In addition, we represent an approach to calculate the site-diagonal SLC parameters characterizing local magnetic anisotropy induced by a lattice distortion, which is a counterpart of the approach based on magnetic torque used for the investigations of magneto-crystalline anisotropy (MCA) as well as for calculations of the MCA constants. In particular, the dependence of the induced magnetic torque on different types of atomic displacements is analyzed.

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