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The collective motion of rounded squares with different corner-roundnessζ is studied by molecular dynamics (MD) simulation in this work. Three types of translational collective motion pattern are observed, including gliding, hopping and a mixture of gliding and hopping. Quantitatively, the dynamics of each observed ordered phase is characterized by both mean square displacement and van Hove functions for both translation and rotation. The effect of corner-roundness on the dynamics is further studied by comparing the dynamics of the rhombic crystal phases formed by different corner-rounded particles at a same surface fraction. The results show that asζ increases from 0.286 to 0.667, the translational collective motion of particles changes from a gliding-dominant pattern to a hopping-dominant pattern, whereas the rotational motion pattern is hopping-like and does not change in its type, but the rotational hopping becomes much more frequent as ζincreases (i.e., as particles become more rounded). A simple geometrical model is proposed to explain the trend of gliding motion observed in MD simulations.
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篇名 Molecular dynamics simulations on the dynamics of two-dimensional rounded squares
来源期刊 中国物理B(英文版) 学科
关键词 molecular dynamics simulation rounded square hopping gliding collective motion
年,卷(期) 2018,(8) 所属期刊栏目
研究方向 页码范围 622-628
页数 7页 分类号
字数 语种 英文
DOI 10.1088/1674-1056/27/8/088203
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molecular dynamics simulation
rounded square
hopping
gliding
collective motion
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中国物理B(英文版)
月刊
1674-1056
11-5639/O4
北京市中关村中国科学院物理研究所内
eng
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17050
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27962
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