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Half-Metallic Ferrimagnetism in the Mn2NbAl Full-Heusler Compound: a First-Principles Study

机译:Mn2NbAl Full-Heusler化合物中的半金属亚铁磁性:第一性原理研究

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A first-principles study of the electronic structure and magnetic properties of the Heusler compound Mn 2NbAl has been performed. The calculations have been performed by using the self-consistent full-potential linearized augmented plane wave (FPLAPW) method. It is found that the AlCu Mn-2-type structure is preferable energy wise than the CuHg Ti-2-type structure and exhibits half-metallic ferrimagnetism. The calculated total magnetic moment of Mn 2NbAl is 2 mu (B) at the equilibrium lattice constant of 6.005 for the AlCu Mn-2-type structure. The total spin magnetic moment obeys the Slater-Pauling rule and is based on mainly the Mn atoms. The spin-down electrons are metallic, but the spin-up bands are semiconductor with a gap of 0.37 eV, and the spin-flip gap is of 0.09 eV. The AlCu Mn-2-type Mn 2NbAl full-Heusler compound keeps 100 % of spin polarization for lattice constants ranging between 5.93 and 6.20 . The Curie temperature is estimated to be 994 K in the mean field approximation (MFA).
机译:已对Heusler化合物Mn 2NbAl的电子结构和磁性进行了第一性原理研究。通过使用自洽全势线性化增强平面波(FPLAPW)方法进行了计算。发现AlCu Mn-2-型结构在能量方面比CuHg Ti-2-型结构更好,并且表现出半金属亚铁磁性。对于AlCu Mn-2-型结构,在6.005的平衡晶格常数下,计算得出的Mn 2NbAl的总磁矩为2μ(B)。总的自旋磁矩服从Slater-Pauling规则,并且主要基于Mn原子。自旋向下的电子是金属,但自旋向上的带是半导体,其间隙为0.37 eV,自旋翻转间隙为0.09 eV。对于晶格常数介于5.93和6.20之间的AlCu Mn-2-型Mn 2NbAl全霍斯勒化合物,其自旋极化保持100%。以平均场近似(MFA)估算居里温度为994K。

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