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Potential energy as a plucking criterion for liquid cluster simulations

机译:势能作为液体团簇模拟的采摘标准

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We have investigated the liquid state of atomic clusters interacting through a classical pair-wise Lennard-Jones 6-12 potential, using constant energy molecular dynamics simulations. For larger clusters (N greater than or similar to 500-600 atoms) desorption events are frequent and a cluster in the liquid state eventually always converts to a solid state. To study the cluster as it cools, one must isolate the central cluster from the desorbed atoms. In this paper, we investigate using the atomic potential energy as a very simple criterion for removing desorbed atoms from the simulation, and examine the spatial profile of atomic potential energy in various size liquid and solid clusters.
机译:我们使用恒定能量分子动力学模拟研究了通过经典的成对的Lennard-Jones 6-12势相互作用的原子团簇的液态。对于较大的团簇(N大于或等于500-600个原子),解吸事件频繁发生,液态团簇最终总是转变为固态。要研究冷却时的团簇,必须将中心团簇与解吸的原子隔离开。在本文中,我们研究了使用原子势能作为从模拟中去除解吸原子的非常简单的标准,并研究了各种大小的液体和固体簇中原子势能的空间分布。

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