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Investigation of half-metallic ferromagnetism in hafnium and tantalum doped NiO for spintronic applications: A DFT study

机译:铪中半金属铁磁性的研究掺杂掺杂NIO的磷纺织应用:DFT研究

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摘要

Full Potential Linearised Augmented Plane Wave (FP-LAPW) method was used to investigate the electronic and magnetic properties of NiO doped with Hf and Ta within the frame work of density functional theory (DFT). NiO is found to be stable in rock salt structure. NiO shows conducing characteristics for the lattice constant of 4.155 angstrom. Doping Hf and Ta in the metallic super cell of NiO separately in the doping concentration of 12.5%, the compounds Hf0.125Ni0.875O and Ta0.125Ni0.875O are formed. These compounds of Hf0.125Ni0.875O and Ta0.125Ni0.875O are predicted to exhibit stability in the ferromagnetic phase. The density of states and band structure plots predict that these compounds exhibit half metallic character with formation of energy gap in one of the spins at the Fermi level. The total spin magnetic moments found in these compounds are 12.00689 mu(B) and 10.97628 mu(B).
机译:使用全潜能的线性增大平面波(FP-LAPW)方法来研究密度函数理论(DFT)框架工作中掺杂HF和TA的NIO的电子和磁性。 发现NIO在岩盐结构中稳定。 NIO显示了4.155埃的晶格常数的调节特征。 在NIO的金属超细胞中分别以12.5%的掺杂浓度掺杂HF和TA,形成化合物HF0.125NI0.875O和TA0.125NI0.875O。 预计这些HF0.125NI0.875O和TA0.125NI0.875O的化合物在铁磁相中表现出稳定性。 状态和带状结构图的密度预测这些化合物表现出半金属特征,其在费米水平的一个旋转中形成能隙。 这些化合物中发现的总旋转磁性矩为12.00689μ(b)和10.97628μm(b)。

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