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首页> 外文期刊>Applied Surface Science >Strain and interlayer coupling tailored magnetic properties and valley splitting in layered ferrovalley 2H-VSe_2
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Strain and interlayer coupling tailored magnetic properties and valley splitting in layered ferrovalley 2H-VSe_2

机译:应变和层间耦合在层状Ferrovalley 2H-VSe_2中量身定制的磁性能和谷裂

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摘要

Geometry structure, band structure, magnetic moment and magnetocrystalline anisotropy energy of layered 2HVSe(2) are investigated by first-principles calculations. It is found that the VSe2 is intrinsic ferromagnetic with an in-plane magnetocrystalline anisotropy no matter how the change of the strain and layer thickness is. Additionally, the valley splitting in monolayer VSe2 can be modulated by strain due to the modulated intrinsic exchange interaction of V 3d electrons. Interestingly, the valley splitting decreases and the V magnetic moment monotonously increases as a strain increases, showing that the valley splitting is related to the magnetic moment. Furthermore, the slight effect of interlayer coupling on V magnetic moment appears. The tunable magnetism and valley splitting may provide novel applications in multifunctional nanoelectronics.
机译:通过第一性原理计算研究了层状2HVSe(2)的几何结构,能带结构,磁矩和磁晶各向异性能。已经发现,无论应变和层厚如何变化,VSe2都是具有平面内磁晶各向异性的本征铁磁。此外,由于V 3d电子的已调本征交换相互作用,单层VSe2中的波谷分裂可通过应变进行调节。有趣的是,随着应变的增加,谷值分裂减少,而V磁矩单调增加,这表明谷值分裂与磁矩有关。此外,出现了层间耦合对V磁矩的轻微影响。可调磁性和波谷分裂可在多功能纳米电子学中提供新颖的应用。

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