Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
5360842 | Applied Surface Science | 2009 | 4 Pages |
Abstract
The purpose of this study is to investigate the behavior of copper cluster atoms bombarding a substrate using molecule dynamics based on tight-binding second moment approximation (TB-SMA) potential. The simulated results show that a crater on the substrate surface was created by the impact of the clusters. The variations of kinetic energy of cluster bombardments can be divided into three stages. At the initial impact level, the kinetic energies of the clusters and the substrate were constant. Then, the system went into a sluggish stage of energy variation, in which the kinetic energy of the clusters reduced. In the final stage, the kinetic energy of the system became stable. The high slip vector region around the crater had a disorder damage zone. The symmetry-like cross-slip occurred beneath the top layer of the substrate along the ã1Â 1Â 0ã orientations. The spreading index, temperature, and potential functions that affect the bombardments are also discussed.
Related Topics
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Physical and Theoretical Chemistry
Authors
Te-Hua Fang, Shao-Hui Kang, Jia-Hung Liao,