Multiscale modeling of crowdion and vacancy defects in body-centered-cubic transition metals

被引:401
作者
Derlet, P. M. [2 ]
Nguyen-Manh, D.
Dudarev, S. L.
机构
[1] UKAEA Euratom Fus Assoc, Culham Sci ctr, Abingdon OX14 3DB, Oxon, England
[2] Paul Scherrer Inst, CH-5232 Villigen, Switzerland
[3] Univ London Imperial Coll Sci Technol & Med, Dept Phys, London SW7 2AZ, England
基金
英国工程与自然科学研究理事会;
关键词
D O I
10.1103/PhysRevB.76.054107
中图分类号
T [工业技术];
学科分类号
08 ;
摘要
We investigate the structure and mobility of single self-interstitial atom and vacancy defects in body-centered-cubic transition metals forming groups 5B (vanadium, niobium, and tantalum) and 6B (chromium, molybdenum, and tungsten) of the Periodic Table. Density-functional calculations show that in all these metals the axially symmetric < 111 > self-interstitial atom configuration has the lowest formation energy. In chromium, the difference between the energies of the < 111 > and the < 110 > self-interstitial configurations is very small, making the two structures almost degenerate. Local densities of states for the atoms forming the core of crowdion configurations exhibit systematic widening of the "local" d band and an upward shift of the antibonding peak. Using the information provided by electronic structure calculations, we derive a family of Finnis-Sinclair-type interatomic potentials for vanadium, niobium, tantalum, molybdenum, and tungsten. Using these potentials, we investigate the thermally activated migration of self-interstitial atom defects in tungsten. We rationalize the results of simulations using analytical solutions of the multistring Frenkel-Kontorova model describing nonlinear elastic interactions between a defect and phonon excitations. We find that the discreteness of the crystal lattice plays a dominant part in the picture of mobility of defects. We are also able to explain the origin of the non-Arrhenius diffusion of crowdions and to show that at elevated temperatures the diffusion coefficient varies linearly as a function of absolute temperature.
引用
收藏
页数:22
相关论文
共 105 条
[1]   AN IMPROVED N-BODY SEMIEMPIRICAL MODEL FOR BODY-CENTERED CUBIC TRANSITION-METALS [J].
ACKLAND, GJ ;
THETFORD, R .
PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1987, 56 (01) :15-30
[2]   VALIDITY OF THE 2ND MOMENT TIGHT-BINDING MODEL [J].
ACKLAND, GJ ;
FINNIS, MW ;
VITEK, V .
JOURNAL OF PHYSICS F-METAL PHYSICS, 1988, 18 (08) :L153-L157
[3]  
[Anonymous], 2002, BROWNIAN MOTION FLUC
[4]   Changes in the burgers vector of perfect dislocation loops without contact with the external dislocations [J].
Arakawa, K ;
Hatanaka, M ;
Kuramoto, E ;
Ono, K ;
Mori, H .
PHYSICAL REVIEW LETTERS, 2006, 96 (12) :1-4
[5]   VACANCY ANNEALING IN HE AND H2 IRRADIATED MO OBSERVED BY THERMAL HELIUM DESORPTION SPECTROMETRY [J].
ARMSTRONG, TR ;
FILIUS, HA ;
VANVEEN, A ;
HERINGA, JR .
JOURNAL OF NUCLEAR MATERIALS, 1993, 203 (03) :189-195
[6]  
ASHCROFT NW, 1988, SOLID STATE PHYS, pCH25
[7]   Mechanism of one-dimensional glide of self-interstitial atom clusters in α-iron [J].
Barashev, AV ;
Osetsky, YN ;
Bacon, DJ .
PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 2000, 80 (11) :2709-2720
[8]   Atomistic study of drag, surface and inertial effects on edge dislocations in face-centered cubic metals [J].
Bitzek, E ;
Gumbsch, P .
MATERIALS SCIENCE AND ENGINEERING A-STRUCTURAL MATERIALS PROPERTIES MICROSTRUCTURE AND PROCESSING, 2004, 387 :11-15
[9]   LOW-TEMPERATURE REACTOR IRRADIATION EFFECTS IN METALS [J].
BLEWITT, TH ;
COLTMAN, RR ;
KLABUNDE, CE ;
NOGGLE, TS .
JOURNAL OF APPLIED PHYSICS, 1957, 28 (06) :639-644
[10]   Nonlinear dynamics of the Frenkel-Kontorova model [J].
Braun, OM ;
Kivshar, YS .
PHYSICS REPORTS-REVIEW SECTION OF PHYSICS LETTERS, 1998, 306 (1-2) :1-108