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First-principles calculations of exchange interactions, spin waves, and temperature dependence of magnetization in inverse-Heusler-based spin gapless semiconductors

机译:基于逆赫斯勒效应的自旋无间隙半导体中交换相互作用,自旋波和磁化强度的温度依赖性的第一性原理计算

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摘要

Employing first-principles electronic-structure calculations in conjunction with the frozen-magnon method, we calculate exchange interactions, spin-wave dispersion, and spin-wave stiffness constants in inverse-Heusler-based spin gapless semiconductor (SGS) compounds Mn2CoAl, Ti2MnAl, Cr2ZnSi, Ti2CoSi, and Ti2VAs. We find that their magnetic behavior is similar to the half-metallic ferromagnetic full-Heusler alloys, i.e., the intersublattice exchange interactions play an essential role in the formation of the magnetic ground state and in determining the Curie temperature Tc. All compounds, except Ti2CoSi, possess a ferrimagnetic ground state. Due to the finite energy gap in one spin channel, the exchange interactions decay sharply with the distance, and hence magnetism of these SGSs can be described considering only nearest- and next-nearest-neighbor exchange interactions. The calculated spin-wave dispersion curves are typical for ferrimagnets and ferromagnets. The spin-wave stiffness constants turn out to be larger than those of the elementary 3d ferromagnets. Calculated exchange parameters are used as input to determine the temperature dependence of the magnetization and Tc of the SGSs. We find that the Tc of all compounds is much above the room temperature. The calculated magnetization curve for Mn2CoAl as well as the Curie temperature are in very good agreement with available experimental data. This study is expected to pave the way for a deeper understanding of the magnetic properties of the inverse-Heusler-based SGSs and enhance the interest in these materials for application in spintronic and magnetoelectronic devices.
机译:利用第一原理的电子结构计算和冻结-磁振子方法,我们计算了基于逆荷斯勒的自旋无间隙半导体(SGS)化合物Mn2CoAl,Ti2MnAl, Cr2ZnSi,Ti2CoSi和Ti2VAs。我们发现它们的磁行为类似于半金属铁磁全赫斯勒合金,即亚晶间交换相互作用在形成磁性基态和确定居里温度Tc方面起着至关重要的作用。除Ti2CoSi外,所有化合物均具有亚铁磁性基态。由于一个自旋通道中的有限能隙,交换相互作用随距离急剧衰减,因此,仅考虑最近邻和次近邻交换相互作用,就可以描述这些SGS的磁性。计算得出的自旋波频散曲线对于铁质磁铁和铁磁体是典型的。结果证明,自旋波刚度常数大于基本3d铁磁体的常数。计算出的交换参数用作确定SGS磁化强度和Tc的温度依赖性的输入。我们发现所有化合物的Tc都大大高于室温。所计算的Mn2CoAl磁化曲线以及居里温度与可用的实验数据非常吻合。预期该研究将为更深入地了解基于反赫斯勒的SGS的磁路铺平道路,并增强对这些材料在自旋电子和磁电子器件中的应用的兴趣。

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