首页> 外文期刊>The Journal of Chemical Physics >FRAGMENT SIZE DISTRIBUTION IN CLUSTER IMPACT - SHATTERING VERSUS EVAPORATION BY A STATISTICAL APPROACH
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FRAGMENT SIZE DISTRIBUTION IN CLUSTER IMPACT - SHATTERING VERSUS EVAPORATION BY A STATISTICAL APPROACH

机译:集群影响中的片段大小分布-统计方法破坏与蒸发的关系。

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The transition from intact clusters to shattered small fragments is discussed for high velocity impact of cold atomic clusters at hard surfaces. The distribution of fragment sizes is computed as one of maximal entropy subject to conservation of matter and energy. The entropy is computed using a graph-theoretical approach for counting the number of possible isomers for a cluster of given size. As the impact velocity is increased, there is an onset of fragmentation into small fragments and the heat capacity is found to be discontinuous at that point. The results are compared with molecular dynamics simulations for rare gas clusters. Throughout the emphasis is on the special conditions that prevail during the ultrafast compression stage of the high energy cluster. (C) 1995 American Institute of Physics. [References: 67]
机译:讨论了从完整的团簇到破碎的小碎片的过渡过程,以了解冷原子团簇在硬表面上的高速撞击。片段大小的分布被计算为受物质和能量守恒的最大熵之一。使用图论方法计算熵,以计算给定大小的簇的可能异构体的数量。随着冲击速度的增加,会开始破碎成小碎片,并且发现此时的热容量不连续。将结果与稀有气体团簇的分子动力学模拟进行了比较。在整个过程中,重点是在高能簇超快压缩阶段普遍存在的特殊条件。 (C)1995年美国物理研究所。 [参考:67]

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