论文标题

Lacunar尖晶石化合物GAV $ _ {4} $ s $ _ {8} $和GAMO $ _ {4} $ s $ _ {8} $:比较理论研究

Skyrmionic order and magnetically induced polarization change in lacunar spinel compounds GaV$_{4}$S$_{8}$ and GaMo$_{4}$S$_{8}$: comparative theoretical study

论文作者

Nikolaev, S. A., Solovyev, I. V.

论文摘要

我们展示了从第一原理电子结构计算得出的低能电子模型如何有助于合理化带有光(M = V)和重(M = MO)过渡金属元素的两种lacunar尖晶石化合物GAM4S8的磁性,这些元件负责不同的旋转型相互作用强度。在模型中,每个磁性晶格点与M4S4分子相关,并且该模型本身是根据针对三个磁T2频段构建的分子Wannier函数制定的。详细讨论了菱形扭曲失真,自旋轨道相互作用,带填充和筛查T2带中库仑相互作用的影响。在超换近似值中进一步处理了电子模型,这使我们能够根据债券中旋转的相对方向来得出有效的能量和电动极化($ p $)的自旋模型,并通过经典蒙特卡洛模拟的手段来研究该模型的性质,并强调了天空水平的可能形成。虽然各向同性交换相互作用在GAV4S8中显然占主导地位,但在Gamo4S8的情况下,所有类型的相互作用(各种相互作用(各向同性,反对称和对称各向异性)都是可比性的。特别是,大型的单轴交换各向异性对Gamo4S8的特性具有深远的影响。一方面,它通过在镁激发频谱中打开差距来提高居里温度。另一方面,它通过扮演分子场的作用来强烈影响天空阶段,从而促进了天空的形成,但使它们对相图的大部分图中的外部磁场相对不敏感。我们预测,在菱形扭曲方向逆转引起的gamo4s8的情况下,$ p $的磁依赖性逆转。

We show how low-energy electronic models derived from the first-principles electronic structure calculations can help to rationalize the magnetic properties of two lacunar spinel compounds GaM4S8 with light (M=V) and heavy (M=Mo) transition-metal elements, which are responsible for different spin-orbit interaction strength. In the model, each magnetic lattice point was associated with the M4S4 molecule, and the model itself was formulated in the basis of molecular Wannier functions constructed for three magnetic t2 bands. The effects of rhombohedral distortion, spin-orbit interaction, band filling, and the screening of Coulomb interactions in the t2 bands are discussed in details. The electronic model is further treated in the superexchange approximation, which allows us to derive an effective spin model for the energy and electric polarization ($P$) depending on the relative orientation of spins in the bonds, and study the properties of this model by means of classical Monte Carlo simulations with the emphasis on the possible formation of the skyrmionic phase. While isotropic exchange interactions clearly dominate in GaV4S8, all types of interactions -- isotropic, antisymmetric, and symmetric anisotropic -- are comparable in the case of GaMo4S8. Particularly, large uniaxial exchange anisotropy has a profound effect on the properties of GaMo4S8. On the one hand, it raises the Curie temperature by opening a gap in the spectrum of magnon excitations. On the other hand, it strongly affects the skyrmionic phase by playing the role of a molecular field, which facilitates the formation of skyrmions, but makes them relatively insensitive to the external magnetic field in the large part of the phase diagram. We predict reversal of the magnetic dependence of $P$ in the case of GaMo4S8 caused by the reversal of direction of the rhombohedral distortion.

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