铁磁性
磁矩
奥氏体
Atom(片上系统)
材料科学
凝聚态物理
密度泛函理论
费米能级
从头算量子化学方法
磁性形状记忆合金
电子结构
从头算
结晶学
化学
磁化
磁畴
计算化学
物理
微观结构
分子
磁场
量子力学
电子
嵌入式系统
计算机科学
有机化学
作者
Jing Bai,J.M. Raulot,Y. D. Zhang,Claude Esling,Xiang Zhao,Liang Zuo
摘要
The crystallographic, magnetic and electronic structures of the ferromagnetic shape memory alloys Ni2XGa (X=Mn, Fe, and Co), are systematically investigated by means of the first–principles calculations within the framework of density functional theory using the VIENNA AB INITIO SOFTWARE PACKAGE. The lattice parameters of both austenitic and martensitic phases in Ni2MnGa have been calculated. The formation energies of the cubic phase of Ni2XGa are estimated, and show a destabilization tendency if Mn atom is substituted by Fe or Co. From Ni2MnGa to Ni2CoGa, the down spin total density of states (DOS) at Fermi level is gradually increasing, whereas that of the up spin part remains almost unchanged. This is the main origin of the difference of the magnetic moment in these alloys. The partial DOS is dominated by the Ni and Mn 3d states in the bonding region below EF. There are two bond types existing in Ni2XGa: one is between neighboring Ni atoms in Ni2MnGa; the other is between Ni and X atoms in Ni2FeGa and Ni2CoGa alloys.
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