Migration and directional change of interstitial clusters in α-Fe:: searching for transition states by the dimer method

被引:13
作者
Gao, F [1 ]
Heinisch, H
Kurtzt, RJ
Osetsky, YN
Hoagland, RG
机构
[1] Pacific NW Natl Lab, Richland, WA 99352 USA
[2] Univ Liverpool, Dept Engn, Liverpool L69 3GH, Merseyside, England
关键词
D O I
10.1080/02678370412331320062
中图分类号
T [工业技术];
学科分类号
08 [工学];
摘要
The interstitial clusters produced by cascades in metals have very high mobility and exhibit thermally activated, one-dimensional glide along (111) directions. Only small interstitial Clusters (<4) are observed to change their glide direction during the period of molecular dynamics (MD) Simulations (similar to10ns), but the directional change for larger Clusters is inaccessible to MD due to the limited time-scale. In order to overcome the 'time barrier' in MD simulations, the dimer method is employed to search for possible transition states of interstitials and small interstitial clusters in alpha-Fe. The method uses only the first derivatives of the potential energy to find saddle points without knowledge of the filial state of the transition. The possible transition states are Studied as a function of interstitial cluster size, and the lowest energy barriers correspond to defect migration along (111) directions, as seen in MD simulations. Small clusters change their direction by a (110) fragment mechanism involving rotation of each crowdion into and out of the (110) dumbbell configuration, whereas the directional change for larger clusters is a two-step process consisting of translation along a (100) direction and rotation into an equivalent (111) direction. The mechanism of changing direction for a tri-interstitial cluster is also investigated using MD simulations.
引用
收藏
页码:619 / 627
页数:9
相关论文
共 11 条
[1]
Computer simulation of point defect properties in dilute Fe-Cu alloy using a many-body interatomic potential [J].
Ackland, GJ ;
Bacon, DJ ;
Calder, AF ;
Harry, T .
PHILOSOPHICAL MAGAZINE A-PHYSICS OF CONDENSED MATTER STRUCTURE DEFECTS AND MECHANICAL PROPERTIES, 1997, 75 (03) :713-732
[2]
Atomic-scale computer simulation of primary irradiation damage effects in metals [J].
Bacon, DJ ;
Gao, F ;
Osetsky, YN .
JOURNAL OF COMPUTER-AIDED MATERIALS DESIGN, 1999, 6 (2-3) :225-237
[3]
COMPUTER-SIMULATION OF DEFECT PRODUCTION BY DISPLACEMENT CASCADES IN METALS [J].
BACON, DJ ;
CALDER, AF ;
GAO, F ;
KAPINOS, VG ;
WOODING, SJ .
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH SECTION B-BEAM INTERACTIONS WITH MATERIALS AND ATOMS, 1995, 102 (1-4) :37-46
[4]
Becquart CS, 2002, PHYS REV B, V66, DOI 10.1103/PhysRevB.66.134104
[5]
Gao F, 1999, MATER RES SOC SYMP P, V540, P703
[6]
A dimer method for finding saddle points on high dimensional potential surfaces using only first derivatives [J].
Henkelman, G ;
Jónsson, H .
JOURNAL OF CHEMICAL PHYSICS, 1999, 111 (15) :7010-7022
[7]
Stability and mobility of defect clusters and dislocation loops in metals [J].
Osetsky, YN ;
Bacon, DJ ;
Serra, A ;
Singh, BN ;
Golubov, SI .
JOURNAL OF NUCLEAR MATERIALS, 2000, 276 (01) :65-77
[8]
Soneda N, 1998, PHILOS MAG A, V78, P995, DOI 10.1080/01418619808239970
[9]
Thermal diffusion processes in metal-tip-surface interactions: Contact formation and adatom mobility [J].
Sorensen, MR ;
Jacobsen, KW ;
Jonsson, H .
PHYSICAL REVIEW LETTERS, 1996, 77 (25) :5067-5070
[10]
Extending the time scale in atomistic simulation of materials [J].
Voter, AF ;
Montalenti, F ;
Germann, TC .
ANNUAL REVIEW OF MATERIALS RESEARCH, 2002, 32 :321-346