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Ab initio molecular dynamics for determination of structures of alkali metal clusters and their temperatures behavior; An example of Li-9(+)

机译:从头算分子动力学来确定碱金属簇的结构及其温度行为; Li-9(+)的一个例子

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It will be shown that an ab initio molecular dynamics procedure based on gradient corrected density functionals for exchange and correlation and using a Gaussian atomic basis (AIMD-GDF) implemented for parallel processing represents a suitable tool for detailed and accurate investigation of structural and dynamical properties of small systems. Gradients of the Born-Oppenheimer ground state energy, obtained by iterative solution of the Kohn-Sham equations, are used to calculate the forces acting on atoms at each instantaneous configuration along trajectories generated by solving classical equations of motion. Dynamics of different isomers of the Li-9(+) cluster have been investigated as a function of excess energy. It is shown that different isomers, even those similar in energy, can exhibit different structural and dynamical behavior. The analysis of the simulations leads to the con elusion that structures with a central atom, in particular the centered antiprism of Li-9(+) exhibit concerted mobility of the peripheral atoms at relatively low excess energy. In contrast, compact tetrahedral type structures show much more rigid behavior at low excess energy. However, the for mer ones need larger excess of internal energy to undergo isomerizations to geometrically different structures than the latter ones. At the time scale of our simulations we found that for the intermediate excess energies it is "easier" to carry the cluster in the basin of the lowest energy isomer than in the reverse direction. It has been found that the liquid-like behavior in small Li clusters becomes apparent at relatively high temperature in spite of large mobility of their atoms. [References: 38]
机译:将显示基于梯度校正的密度泛函进行交换和相关并使用高斯原子基础(AIMD-GDF)进行并行处理的从头算分子动力学程序,它是一种详细而准确地研究结构和动力学性质的合适工具小型系统。通过对Kohn-Sham方程进行迭代求解而获得的Born-Oppenheimer基态能量梯度用于计算沿经典运动方程生成的轨迹在每个瞬时构型上作用在原子上的力。 Li-9(+)团簇的不同异构体的动力学已作为过量能量的函数进行了研究。结果表明,即使是能量相似的异构体,也可能表现出不同的结构和动力学行为。对模拟的分析导致了这样的结论,即具有中心原子的结构,特别是Li-9(+)的中心反棱镜在较低的过剩能量下表现出外围原子的一致迁移率。相比之下,紧凑的四面体型结构在低过剩能量下显示出更加坚固的性能。然而,对于前者,与后者相比,需要更大的内部能量过量以进行异构化成几何上不同的结构。在我们的模拟时间尺度上,我们发现,对于中间的多余能量,将团簇以最低的能量异构体比以相反的方向携带更容易。已经发现,尽管它们的原子具有大的迁移率,但是在相对较高的温度下小Li簇中的液体状行为变得明显。 [参考:38]

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