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首页> 外文期刊>Chinese Journal of Physics >Investigation of structural, half-metallic and elastic properties of a new full-Heusler compound–Ir 2MnSi
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Investigation of structural, half-metallic and elastic properties of a new full-Heusler compound–Ir 2MnSi

机译:一种新的全新空间器复合IR 2 MNSI的结构,半金属和弹性性质的调查

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摘要

The electronic structure, magnetic and elastic properties of Ir2MnSi full-Heusler compound is studied within the framework of Density Functional Theory (DFT). The ferromagnetic (FM) and non-magnetic (NM) states are compared in Cu2MnAl and Hg2CuTi prototype structures. The ferromagnetic state in Cu2MnAl structure has been found energetically more stable than non-magnetic state in these two types of structures. Due to this stability, all calculations are carried out for FM-state. The spin-polarized calculations show that the spin-up electrons of Ir2MnSi compound have metallic nature, but the spin-down electrons have semiconducting behavior with 0.55?eV energy gap around the Fermi level. The calculated Cauchy pressure and Poisson's ratio indicated that Ir2MnSi compound is a ductile material. Ir2MnSi compound is a half-metallic ferromagnet (HMF) and it has 5μBmagnetic moment. This study will theoretically lead to experimental works in the spintronic field and its applications.
机译:在密度泛函理论(DFT)的框架内研究了IR2MNSI全空间器化合物的电子结构,磁性和弹性性能。 在Cu2MNAL和HG2Cuti原型结构中比较铁磁性(FM)和非磁性(NM)状态。 Cu2mnal结构中的铁磁状态已经在这两种结构中的非磁状态方面具有更高的稳定性。 由于这种稳定性,所有计算都是针对FM状态进行的。 旋转偏振的计算表明,IR2MNSI化合物的旋转电子具有金属性质,但拆卸电子具有0.55Ω的半导体行为,围绕费米水平差距。 计算的Cauchy压力和泊松比表明IR2MNSI化合物是延性材料。 IR2MNSI化合物是半金属铁磁性(HMF),它具有5μBmmmic矩。 本研究理论上将导致旋转型领域及其应用中的实验工作。

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