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High Spin Polarization And Spin Splitting In Equiatomic Quaternary Cofecral Heusler Alloy

机译:等原子四元子宫颈Heusler合金的高自旋极化和自旋分裂

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摘要

In this paper, we investigate CoFeCrAl alloy by means of ab-initio electronic structure calculations and various experimental techniques. The alloy is found to exist in the B2-type cubic Heusler structure, which is very similar to Y-type (or LiMgPdSn prototype) structure with space group F-43m (#216). Saturation magnetization (M-S) of about 2 mu(B)/f.u. is observed at 8 K under ambient pressure, which is in good agreement with the Slater-Pauling rule. M-S values are found to be independent of pressure, which is a prerequisite for half-metals. The ab-initio electronic structure calculations predict half-metallicity for the alloy with a spin slitting energy of 0.31 eV. Importantly, this system shows a high current spin polarization value of 0.67 +/- 0.02, as deduced from the point contact Andreev reflection measurements. Linear dependence of electrical resistivity with temperature indicates the possibility of reasonably high spin polarization at elevated temperatures (similar to 150 K) as well. All these suggest that CoFeCrAl is a promising material for the spintronic devices. (C) 2015 Elsevier B.V. All rights reserved.
机译:在本文中,我们通过从头算电子结构计算和各种实验技术来研究CoFeCrAl合金。发现该合金存在于B2型立方Heusler结构中,该结构与空间群为F-43m的Y型(或LiMgPdSn原型)结构非常相似(#216)。饱和磁化强度(M-S)约为2μ(B)/f.u。在环境压力下于8 K观察到的,这与Slater-Pauling规则非常吻合。发现M-S值与压力无关,这是半金属的先决条件。从头算电子结构的计算预测了自旋裂隙能为0.31 eV的合金的半金属性。重要的是,该系统显示出高电流自旋极化值,为0.67 +/- 0.02,这是从点接触安德列夫反射测量得出的。电阻率与温度的线性关系表明在升高的温度(类似于150 K)下也可能发生较高的自旋极化。所有这些表明,CoFeCrAl是自旋电子器件的有前途的材料。 (C)2015 Elsevier B.V.保留所有权利。

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