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Atomistic simulation of helium bubble nucleation in palladium
Authors:Liang Wang  Shifang Xiao
Affiliation:a Department of Applied Physics, Hunan University, Changsha 410082, China
b Department of Maths and Physics, Hunan Institute of Engineering, Xiangtan 411104, China
Abstract:A palladium crystal has been constructed with 11808 atoms. 55 helium atoms occupied the octahedral position of palladium crystal are introduced and retained in a spherical region. Molecular dynamic simulations are performed in a constant temperature and constant volume ensemble (NVT) with temperature controlled by Nose-Hoover thermostat. The interactions between palladium atoms are described with modified analytic embedded atom method (MAEAM), the interactions between palladium atom and helium atom are in the form of Morse potential, and the interactions between helium atoms are in the form of L-J potential function. With the analysis of the radial distribution function (RDF) and microstructure, it reveals that some of helium atoms form a series of clusters with different size, and the nucleation core is random at low temperature, and which is the embryo of helium bubble. Increasing temperature can accelerate the process of bubble nucleation, and the clusters will aggregate and coalesce into a bigger one in which there are no palladium atoms, and it is considered as a helium bubble.
Keywords:67.25.&minus  k   81.10.Aj   34.20.Gj   36.40.&minus  c   31.15.xv
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