首页> 美国卫生研究院文献>IUCrJ >Rare earth-based quaternary Heusler compounds MCoVZ (M = Lu Y; Z = Si Ge) with tunable band characteristics for potential spintronic applications
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Rare earth-based quaternary Heusler compounds MCoVZ (M = Lu Y; Z = Si Ge) with tunable band characteristics for potential spintronic applications

机译:具有可调带特性的稀土基四元Heusler化合物MCoVZ(M = LuY; Z = SiGe)适用于潜在的自旋电子学应用

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摘要

Magnetic Heusler compounds (MHCs) have recently attracted great attention since these types of material provide novel functionalities in spintronic and magneto-electronic devices. Among the MHCs, some compounds have been predicted to be spin-filter semiconductors [also called magnetic semiconductors (MSs)], spin-gapless semiconductors (SGSs) or half-metals (HMs). In this work, by means of first-principles calculations, it is demonstrated that rare earth-based equiatomic quaternary Heusler (EQH) compounds with the formula MCoVZ (M = Lu, Y; Z = Si, Ge) are new spin-filter semiconductors with total magnetic moments of 3 µB. Furthermore, under uniform strain, there are physical transitions from spin-filter semiconductor (MS) → SGS → HM for EQH compounds with the formula LuCoVZ, and from HM → SGS → MS → SGS → HM for EQH compounds with the formula YCoVZ. Remarkably, for YCoVZ EQH compounds there are not only diverse physical transitions, but also different types of spin-gapless feature that can be observed with changing lattice constants. The structural stability of these four EQH compounds is also examined from the points of view of formation energy, cohesive energy and mechanical behaviour. This work is likely to inspire consideration of rare earth-based EQH compounds for application in future spintronic and magneto-electronic devices.
机译:磁性Heusler化合物(MHC)最近引起了极大的关注,因为这些类型的材料在自旋电子和磁电子设备中提供了新颖的功能。在MHC中,某些化合物已被预测为自旋过滤器半导体[也称为磁性半导体(MS)],无自旋间隙半导体(SGS)或半金属(HM)。在这项工作中,通过第一性原理计算,证明了具有分子式MCoVZ(M = Lu,Y; Z = Si,Ge)的稀土基等原子四元Heusler(EQH)化合物是新的自旋滤波器半导体总磁矩为3 µB。此外,在均匀应变下,自旋滤波器半导体(MS)→SGS→HM对于化学式为LuCoVZ的EQH化合物,从HM→SGS→MS→SGS→HM对于EQH化合物为式YCoVZ。值得注意的是,对于YCoVZ EQH化合物,不仅存在各种物理转变,而且在改变晶格常数时可以观察到不同类型的自旋无隙特征。还从形成能,内聚能和机械性能的角度检查了这四种EQH化合物的结构稳定性。这项工作很可能会激发人们考虑将稀土基EQH化合物用于未来的自旋电子和磁电子设备。

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