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TIGHT BINDING MOLECULAR DYNAMICS STUDY OF NI CLUSTERS

机译:NI簇的紧密结合分子动力学研究

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A minimal parameter tight binding molecular dynamics scheme is used to study Ni-n clusters with n less than or equal to 55. We present theoretical results for relaxed configurations of different symmetries, binding energies, and normal vibrational frequencies for these clusters. Our results are in good agreement with experiment and previous theoretical predictions. We also compare relative stabilities of fee structure's with icosahedral structures. In particular find that for clusters whose size allows them to form a close icosahedral geometry (normal or twinned), the closed icosahedral structures yield larger binding energies than fcc structures. The fcc structures, in turn, are found to be more stable than open icosahedral structures for n less than or equal to 55. Additionally, results for normal vibrational frequencies and ionization energies for n less than or equal to 10 are also presented. The present results, along with previous successful applications of the method on semiconductor systems, indicate that tight-binding molecular dynamics scheme can be relied onto provide a useful semiempirical scheme in modeling interactions in both covalent and metallic systems. (C) 1996 American Institute of Physics. [References: 45]
机译:使用最小参数紧密结合分子动力学方案研究n小于或等于55的Ni-n团簇。对于这些团簇,我们给出了不同对称性,结合能和正常振动频率的弛豫构型的理论结果。我们的结果与实验和先前的理论预测非常吻合。我们还比较了费用结构与二十面体结构的相对稳定性。特别是发现,对于尺寸允许它们形成紧密的二十面体几何形状(正态或孪生)的团簇,封闭的二十面体结构比fcc结构具有更大的结合能。反过来,发现fcc结构比n小于或等于55的开放二十面体结构更稳定。此外,还给出了n小于或等于10的正常振动频率和电离能的结果。目前的结果,以及该方法在半导体系统上的先前成功应用,表明紧密结合的分子动力学方案可以用来为共价和金属体系中的相互作用建模提供有用的半经验方案。 (C)1996年美国物理研究所。 [参考:45]

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