期刊文献+

Three-Dimensional Normal Stress for Controlling Electronic Structure and Magnetic Property of Fe2Ge 被引量:2

Three-Dimensional Normal Stress for Controlling Electronic Structure and Magnetic Property of Fe_2Ge
下载PDF
导出
摘要 A system study of the three-dimensional normal stress for regulating electronic structure and magnetic property of Fe_2Ge is studied. The density states of Fe more than 92% contribution come from Fe 3d,the density states of Ge mainly contributed from Ge 4p and Ge 4s,and the Fe 3d spin induces the Ge 4p electron transfer. The inductive effect increases germanium electron energy,weakens the Fe spin density of states,opposes the stability of the ferromagnetic state. The magnetic moment varies from 5 to 3 μB with the stress charges from-30 to 30 GPa. The charge of Fe is negative whereas the Ge atom is positively charged,the Fe atom loses charge,the charge transfers to the Ge atom. The unevenly distributed charge forms the newoccupy state and spin polarization state in the Fe_2Ge electron structure system. The Fe is the electron donor,the total electron is transferred to Ge,but the total numbers of gain electron and total numbers of lost electron are not equal,so the Fe_2Ge electron system may have hybridization between the Fe 3d state and Ge 4p state.The magnetic of Fe_2Ge mainly comes from the unoccupied Fe 3d orbital,the Fe 3d is positive spinpolarization state and the spin-polarization strength is decreased,the Ge 4p is negative spin-polarization state and the spin-polarization strength are increased. M oreover,electrons-spin polarization is relevant to the structure parameters of the Fe_2Ge system,and controls spin-polarized electronic behavior by means of adjusting ferromagnetic. A system study of the three-dimensional normal stress for regulating electronic structure and magnetic property of Fe2Ge is studied. The density states of Fe more than 92% contribution come from Fe 3d, the density states of Ge mainly contributed from Ge 4p and Ge 4s, and the Fe 3d spin induces the Ge 4pelectron transfer. The inductive effect increases germanium electron energy, weakens the Fe spin density ofstates, opposes the stability of the ferromagnetic state. The magnetic moment varies from 5 to 3 μB with thestress charges from -30 to 30 GPa. The charge of Fe is negative whereas the Ge atom is positively charged,the Fe atom loses charge, the charge transfers to the Ge atom. The unevenly distributed charge forms the newoccupy state and spin polarization state in the Fe2Ge electron structure system. The Fe is the electron donor,the total electron is transferred to Ge, but the total numbers of gain electron and total numbers of lost electronare not equal, so the Fe2Ge electron system may have hybridization between the Fe 3d state and Ge 4p state.The magnetic of Fe2Ge mainly comes from the unoccupied Fe 3d orbital, the Fe 3d is positive spin-polarization state and the spin-polarization strength is decreased, the Ge 4p is negative spin-polarization stateand the spin-polarization strength are increased. Moreover, electrons-spin polarization is relevant to thestructure parameters of the Fe2Ge system, and controls spin-polarized electronic behavior by means ofadjusting ferromagnetic.
出处 《Journal of Harbin Institute of Technology(New Series)》 EI CAS 2018年第6期90-96,共7页 哈尔滨工业大学学报(英文版)
基金 Sponsored by the Science and Technology Foundation of Guizhou Province,China(Grant Nos.LH[2016]7077,LH[2015]7218) the Youth Science and Technology Talents Growth Fund Program of GuiZhou Province Education Department,China(Grant No.KY[2016]166) the Innovation Group Major Program of Guizhou Province(Grant Nos.KY[2016]028,KY[2016]029,KY[2016]030)
关键词 Fe2Ge electronic structure magnetic property stress controlling FIRST-PRINCIPLES Fe Ge electronic structure magnetic property stress controlling first-principles
  • 相关文献

同被引文献12

引证文献2

相关作者

内容加载中请稍等...

相关机构

内容加载中请稍等...

相关主题

内容加载中请稍等...

浏览历史

内容加载中请稍等...
;
使用帮助 返回顶部