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New candidates for the global minimum of medium-sized silicon cluster: A hybrid DFTB/DFT genetic algorithm applied to Si-n, n =8-80

机译:全球最低型硅簇的新候选者:应用于Si-N的混合DFTB / DFT遗传算法,n = 8-80

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摘要

In this study, we perform a systematic search to find the possible lowest energy structure of silicon nanoclusters Si-n (n = 8-80) by means of an evolutionary algorithm. The fitness function for this search is the total energy of density functional tight binding (DFTB). To be on firm ground, we take several low energy structures of DFTB and perform further geometrical optimization by density functional theory (DFT). Then we choose structures with the lowest DFT total energy and compare them with the reported lowest energy structures in the literature. In our search, we found several lowest energy structures that were previously unreported. We further observe a geometrical transition at n = 27 from elongated to globular structures. In addition, the optical gap of the lowest energy structures is investigated by time-dependent DFTB (TD-DFTB) and time-dependent DFT (TD-DFT). The results show the same trend in TD-DFTB and 1D-DFT for the optical gap. We also find a sudden drop in the optical gap at n = 27, precisely where the geometrical transition occurs. Published by AIP Publishing.
机译:在这项研究中,我们通过进化算法执行系统搜索以找到可能的最低能量结构Si-N(n = 8-80)的最低能量结构。该搜索的健身功能是密度函数紧绑定(DFTB)的总能量。要坚定的地面,我们采取了几种低能量结构的DFTB,并通过密度泛函理论(DFT)进行进一步的几何优化。然后我们选择具有最低DFT总能量的结构,并将它们与文献中报告的最低能量结构进行比较。在我们的搜索中,我们发现了几种最低能量结构,以前未报告。我们进一步观察到N = 27的几何过渡从伸长到球状结构。另外,通过时间依赖的DFTB(TD-DFTB)和时间依赖性DFT(TD-DFT)来研究最低能量结构的光学间隙。结果显示了TD-DFTB和1D-DFT的光间隙相同的趋势。我们还在n = 27处发现光间隙突然下降,精确地发生了几何转换的位置。通过AIP发布发布。

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