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Half-metallic antiferromagnetism in the ordered Cr_(1 - X)Ca _xSb alloy from first-principles calculations

机译:根据第一性原理计算的有序Cr_(1-X)Ca _xSb合金中的半金属反铁磁性

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Compared to half-metallic ferromagnets, half-metallic antiferromagnets (precisely called half-metallic fully compensated ferrimagnets) are more promising candidates for spintronic applications since their zero magnetization leads to lower stray fields and thus tiny energy losses. Using the first-principles calculations, we have systematically investigated the electronic and magnetic properties of the ordered Cr_(1 - x)Ca _xSb alloy. It is found that Cr_(1 - x)Ca_xSb with x=0.125, 0.25, 0.5 and 0.75 all are half-metals like zinc-blende CrSb and CaSb. Interestingly, Cr_(0.25)Ca_(0.75)Sb is a half-metallic antiferromagnet with complete spin polarization, and the half-metallic antiferromagnetism is robust against the lattice compression and expansion and the choice of electronic exchange and correlation functional.
机译:与半金属铁磁体相比,半金属反铁磁体(精确地称为半金属完全补偿铁氧体)是自旋电子应用的更有希望的候选者,因为它们的零磁化导致较低的杂散磁场,因此能量损耗很小。使用第一性原理计算,我们系统地研究了有序Cr_(1-x)Ca _xSb合金的电子和磁性。发现x = 0.125、0.25、0.5和0.75的Cr_(1-x)Ca_xSb都是半金属,如闪锌矿CrSb和CaSb。有趣的是,Cr_(0.25)Ca_(0.75)Sb是具有完全自旋极化的半金属反铁磁体,并且该半金属反铁磁体对晶格压缩和膨胀以及电子交换和相关功能的选择具有鲁棒性。

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