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Investigation of atomic anti-site disorder and ferrimagnetic order in the half-metallic Heusler alloy Mn _2V Ga

机译:半金属Heusler合金Mn _2V Ga的原子反位错和亚铁磁序研究

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The band structure calculation for the compound Mn _2VGa carried out using the plane wave self-consistent field package with generalized gradient approximation shows that the compound is nearly half-metallic at the equilibrium lattice parameter. However, theoretical investigations have shown that a certain percentage of atomic anti-site disorder can destroy the half-metallic nature of the sample. Hence it is important to quantify the site disorder in these systems. We have deduced the percentage of atomic anti-site disorder from the refinement of the higher angle room temperature (300K) neutron diffraction (ND) pattern and it was observed to be roughly 8% in our sample. The field variation of resistance recorded at different temperatures shows a positive slope at low temperatures and a negative slope at higher temperatures, indicating the half-metallic character at low temperatures. The abinitio calculations predict a ferrimagnetic ground state for this system. The analysis of the magnetic structure from ND data measured at 6K yields magnetic moment values of 1.28μ _B and 0.7μ _B for Mn and V, respectively, confirming the ferrimagnetic ordering.
机译:使用具有广义梯度近似的平面波自洽场封装对化合物Mn _2VGa进行能带结构计算,结果表明该化合物在平衡晶格参数下几乎为半金属。但是,理论研究表明,一定比例的原子反位错可以破坏样品的半金属性质。因此,量化这些系统中的位点紊乱很重要。我们已经从较高角度的室温(300K)中子衍射(ND)模式的改进推导了原子反位错的百分比,并且在我们的样本中观察到大约为8%。在不同温度下记录的电阻场变化在低温下显示正斜率,在高温下显示负斜率,表明低温下的半金属特性。从头计算可以预测该系统的亚铁磁基态。根据在6K下测得的ND数据对磁性结构进行分析,得出Mn和V的磁矩分别为1.28μB和0.7μB,这证实了亚铁磁有序性。

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