Electronic Structure of Edge Dislocation in Iron

被引:0
|
作者
王崇愚
岳勇
曾跃平
刘福绥
机构
[1] Department of Physics Peking University Beijing 100871 PRC
[2] International Centre for Materials Physics Academia Sinica and Central Iron and Steel Research Institute Beijing 100081 PRC
基金
中国国家自然科学基金;
关键词
dislocation core; electronic structure;
D O I
暂无
中图分类号
学科分类号
摘要
Based on the elasticity theory and considering the lattice modification for dislocation core, the primary atomic coordinates of edge dislocation core in iron are given. On the basis of the primary atomic configuration and the self-consistent calculation performed by using the molecular dynamics, the relaxed atomic structure of the dislocation core is set up. From the modified atomic coordinates and by use of the recursion method, the electronic structure of the system is calculated and it is found that the edge dislocation results in the splitting of degenerate states, and the movement of Fermi level. Meanwhile, the change of Fermi level caused by deformation in crystal is also calculated. Based on the expression given by us, the charge redistribution of the dislocation core is obtained and the trapping effect of the dislocation core on impurity predicted.
引用
收藏
页码:1261 / 1272
页数:12
相关论文
共 50 条
  • [31] Structure of a dissociated edge dislocation in copper
    Perondi, LF
    Szelestey, P
    Kaski, K
    MULTISCALE PHENOMENA IN MATERIALS-EXPERIMENTS AND MODELING, 2000, 578 : 223 - 228
  • [32] Structure of the Basal Edge Dislocation in ZnO
    Nakamura, Atsutomo
    Tochigi, Eita
    Nagahara, Ryota
    Furushima, Yuho
    Oshima, Yu
    Ikuhara, Yuichi
    Yokoi, Tatsuya
    Matsunaga, Katsuyuki
    CRYSTALS, 2018, 8 (03):
  • [33] THE CORE STRUCTURE OF AN EDGE DISLOCATION IN NACL
    PULS, MP
    SO, CB
    PHYSICA STATUS SOLIDI B-BASIC RESEARCH, 1980, 98 (01): : 87 - 96
  • [34] Supercomputer modelling of an electronic structure for KCl nanocrystal with edge dislocation with the use of semiempirical and nonempirical models
    Timoshenko, Yu K.
    Shunina, V. A.
    Shashkin, A. I.
    INTERNATIONAL CONFERENCE APPLIED MATHEMATICS, COMPUTATIONAL SCIENCE AND MECHANICS: CURRENT PROBLEMS, 2018, 973
  • [35] Electronic-structure study of an edge dislocation in Aluminum and the role of macroscopic deformations on its energetics
    Iyer, Mrinal
    Radhakrishnan, Balachandran
    Gavini, Vikram
    JOURNAL OF THE MECHANICS AND PHYSICS OF SOLIDS, 2015, 76 : 260 - 275
  • [36] LOCALIZED ELECTRONIC STATES ON AN EDGE DISLOCATION IN A METAL.
    Slyusarev, V.A.
    Chishko, K.A.
    Physics of Metals and Metallography, 1984, 58 (05): : 37 - 44
  • [37] Simulation of the interaction between an edge dislocation and a '100' interstitial dislocation loop in α-iron
    Terentyev, D.
    Grammatikopoulos, P.
    Bacon, D. J.
    Osetsky, Yu. N.
    ACTA MATERIALIA, 2008, 56 (18) : 5034 - 5046
  • [38] Edge dislocation depinning from hydrogen atmosphere in α-iron
    Kapci, Mehmet Fazil
    Yu, Ping
    Marian, Jaime
    Liu, Guisen
    Shen, Yao
    Li, Yang
    Bal, Burak
    SCRIPTA MATERIALIA, 2024, 247
  • [39] Atomic, electron and phonon aspects of the edge dislocation in iron
    Liu, HB
    Ascencio, JA
    DEFECTS AND DIFFUSION IN METALS: AN ANNUAL RETROSPECTIVE VI, 2004, 224-2 : 37 - 44
  • [40] The electronic effect in the ⟨100⟩ edge dislocation core system with a carbon atom in α-iron:: a first-principles study
    Niu, Y
    Wang, SY
    Zhao, DL
    Wang, CY
    JOURNAL OF PHYSICS-CONDENSED MATTER, 2001, 13 (19) : 4267 - 4276