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首页> 外文期刊>Journal of Superconductivity and Novel Magnetism >First-Principles Study of Half-Metallic Ferromagnetism of the Full-Heusler Compounds RbSrX2 (X = C, N, and O)
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First-Principles Study of Half-Metallic Ferromagnetism of the Full-Heusler Compounds RbSrX2 (X = C, N, and O)

机译:全豪斯勒化合物RbSrX2(X = C,N和O)的半金属铁磁性的第一性原理研究

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First-principles calculations based on density functional theory (DFT) for RbSrX2 (X = C, N, and O) Heusler compounds were performed using the self-consistent full-potential linearized augmented plane wave (FPLAPW) method. The results showed that the ground state of all three compounds in ferromagnetic state was the AlCu Mn-2-type structure. The RbSrC (2) in the AlCu Mn-2-type and CuHg Ti-2-type structures was a nonmagnetic metal, while RbSrN (2) and RbSrO (2) compounds in both structures were half-metallic ferromagnets. The calculated majority band gaps for RbSrN (2) and RbSrO (2) compounds in the AlCu Mn-2-type (CuHg Ti-2-type) structure were 5.3 (2.7) and 4.7 (3.4) eV, respectively. The origin of majority band gaps was also studied using the band structure calculations and density of states (DOSs). The total magnetic moment of RbSrN (2) and RbSrO (2) compounds were respectively obtained 3 and 1 mu (B) per formula unit at the equilibrium lattice parameter, which were in agreement with Slater-Pauling rule (M (tot) = 12 - Z (tot)). The RbSrN (2) and RbSrO (2) compounds respectively maintained their half-metallic characteristic at lattice constants ranges of 5.71-8.82 (5.73-8.36 ) and 5.64-8.93 (5.13-8.05 ) for AlCu Mn-2-type (CuHg Ti-2-type) structure, indicating that the lattice distortion did not affect the half-metallic properties of the compounds, which makes them interesting materials in the spintronic field.
机译:RbSrX2(X = C,N和O)Heusler化合物基于密度泛函理论(DFT)的第一性原理计算是使用自洽全势线性化增强平面波(FPLAPW)方法进行的。结果表明,三种化合物在铁磁状态下的基态均为AlCu Mn-2-型结构。 AlCu Mn-2-型和CuHg Ti-2-型结构中的RbSrC(2)是非磁性金属,而两个结构中的RbSrN(2)和RbSrO(2)化合物都是半金属铁磁体。计算得出的AlCu Mn-2-型(CuHg Ti-2-型)结构中的RbSrN(2)和RbSrO(2)化合物的多数带隙分别为5.3(2.7)和4.7(3.4)eV。还使用能带结构计算和状态密度(DOS)研究了大多数能带隙的起源。 RbSrN(2)和RbSrO(2)化合物在平衡晶格参数下每个公式单位分别获得3和1 mu(B)的总磁矩,这与Slater-Pauling规则一致(M(tot)= 12 -Z(点))。对于AlCu Mn-2型(CuHg Ti),RbSrN(2)和RbSrO(2)化合物分别保持其半金属特性在5.71-8.82(5.73-8.36)和5.64-8.93(5.13-8.05)的晶格常数范围内-2-型)结构,表明晶格畸变不影响化合物的半金属性能,这使它们成为自旋电子学中令人感兴趣的材料。

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