首页> 外文期刊>The journal of physical chemistry, A. Molecules, spectroscopy, kinetics, environment, & general theory >Semiempirical Modeling of Ag Nanoclusters: New Parameters for Optical Property Studies Enable Determination of Double Excitation Contributions to Plasmonic Excitation
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Semiempirical Modeling of Ag Nanoclusters: New Parameters for Optical Property Studies Enable Determination of Double Excitation Contributions to Plasmonic Excitation

机译:Ag纳米团簇的半经验建模:光学性质研究的新参数可以确定对等离子激发的双重激发贡献

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Quantum mechanical studies of Ag nanoclusters have shown that plasmonic behavior can be modeled in terms of excited states where collectivity among single excitations leads to strong absorption. However, new computational approaches are needed to provide understanding of plasmonic excitations beyond the single excitation level. We show that semiempirical INDO/CI approaches with appropriately selected parameters reproduce the TD-DFT optical spectra of various closed-shell Ag clusters. The plasmon-like states with strong optical absorption comprise linear combinations of many singly excited configurations that contribute additively to the transition dipole moment, whereas all other excited states show significant cancellation among the contributions to the transition dipole moment. The computational efficiency of this approach allows us to investigate the role of double excitations at the INDO/SDCI level. The Ag cluster ground states are stabilized by slight mixing with doubly excited configurations, but the plasmonic states generally retain largely singly excited character. The consideration of double excitations in all cases improves the agreement of the INDO/CI absorption spectra with TD-DFT, suggesting that the SDCI calculation effectively captures some of the ground-state correlation implicit in DFT. These results provide the first evidence to support the commonly used assumption that single excitations are in many cases sufficient to describe the optical spectra of plasmonic excitations quantum mechanically.
机译:Ag纳米团簇的量子力学研究表明,可以根据激发态对等离激元行为进行建模,在这些激发态中,单个激发之间的集体性会导致强吸收。但是,需要新的计算方法来提供对超越单个激发能级的等离子体激发的理解。我们表明,半经验INDO / CI接近具有适当选择的参数再现各种闭壳的Ag团簇的TD-DFT光谱。具有强光吸收的类等离子体激元态包括许多单激发构型的线性组合,这些构型对跃迁偶极矩有贡献,而所有其他激发态在跃迁偶极矩的贡献中显示出明显的抵消。这种方法的计算效率使我们能够在INDO / SDCI级别研究双重激励的作用。 Ag团簇基态通过与双激发构型的轻微混合而得以稳定,但是等离子态通常保留大部分单激发特性。在所有情况下都考虑双激发,可以改善INDO / CI吸收光谱与TD-DFT的一致性,这表明SDCI计算有效地捕获了DFT中隐含的一些基态相关性。这些结果提供了第一个证据来支持普遍使用的假设,即在许多情况下单次激发足以以机械方式描述等离激元激发的光谱。

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