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Effect of Gd doping on the magnetism and work function of Fe1-xGdx/Fe(001)
引用本文:汤可嵚,钟克华,程燕铭,黄志高. Effect of Gd doping on the magnetism and work function of Fe1-xGdx/Fe(001)[J]. 中国物理 B, 2014, 0(5): 433-438
作者姓名:汤可嵚  钟克华  程燕铭  黄志高
作者单位:College of Physics and Energy, Fujian Normal University, Fujian Provincial Key Laboratory of Quantum Manipulation and New Energy Materials, Fuzhou 350108, China
基金项目:Project supported by the National Natural Science Foundation of China(Grant No.11004039);the National Basic Research Program of China(Grant No.2011CBA00200)
摘    要:The magnetism and work function Ф of Fe1-xGdx/Fe (001) films have been investigated using first-principles methods based on the density functional theory. The calculated results reveal that Gd doping on the Fe (001) surface would greatly affect the geometrical structure of the system. The restruction of the surface atoms leads to the transition of magnetic coupling between Gd and Fe atoms from ferromagnetic (FM) for 0.5 ≤x ≤ 0.75 to antiferromagnetic (AFM) for x = 1.0. For Fe1-xGdx/Fe (001) (x = 0.25, 0.5, 0.75, 1.0), the charge transfer from Gd to Fe leads to a positive dipole formed on the surface, which is responsible for the decrease of the work function. Moreover, it is found that the magnetic moments of Fe and Gd on the surface layer can be strongly influenced by Gd doping. The changes of the work function and magnetism for Fe1-xGdx/Fe (001) can be explained by the electron transfer, the magnetic coupling interaction between Gd and Fe atoms, and the complex surface restruction. Our work strongly suggests that the doping of the metal with a low work function is a promising way for modulating the work function of the magnetic metal gate.

关 键 词:反铁磁性  Gd掺杂  功函数  磁耦合作用  第一原理方法  密度泛函理论  重构技术  表面层

Effect of Gd doping on the magnetism and work function of Fe_(1-x)Gd_x/Fe(001)
Tang Ke-Qin,Zhong Ke-Hua,Cheng Yan-Ming,Huang Zhi-Gao. Effect of Gd doping on the magnetism and work function of Fe_(1-x)Gd_x/Fe(001)[J]. Chinese Physics B, 2014, 0(5): 433-438
Authors:Tang Ke-Qin  Zhong Ke-Hua  Cheng Yan-Ming  Huang Zhi-Gao
Abstract:first-principles method, doping, magnetism, work function
Keywords:first-principles method  doping  magnetism  work function
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