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Interplay between plasmon and single-particle excitations in a metal nanocluster

机译:金属纳米团簇中等离激元与单粒子激发之间的相互作用

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摘要

Plasmon-generated hot carriers are used in photovoltaic or photochemical applications. However, the interplays between the plasmon and single-particle excitations in nanosystems have not been theoretically addressed using ab initio methods. Here we show such interplays in a Ag55 nanocluster using real-time time-dependent density functional theory simulations. We find that the disappearance of the zero-frequency peak in the Fourier transform of the band-to-band transition coefficient is a hallmark of the plasmon. We show the importance of the d-states for hot-carrier generations. If the single-particle d-to-s excitations are resonant to the plasmon frequency, the majority of the plasmon energy will be converted into hot carriers, and the overall hot-carrier generation is enhanced by the plasmon; if such resonance does not exist, we observe an intriguing Rabi oscillation between the plasmon and hot carriers. Phonons play a minor role in plasmonic dynamics in such small systems. This study provides guidance on improving plasmonic applications.
机译:等离子体产生的热载体用于光伏或光化学应用。但是,理论上尚未使用从头算方法解决等离激元与纳米系统中单粒子激发之间的相互作用。在这里,我们使用实时时间依赖的密度泛函理论模拟显示了在Ag55纳米簇中的这种相互作用。我们发现,在频带间转换系数的傅立叶变换中零频率峰值的消失是等离子体激元的标志。我们显示了d态对于热载流子世代的重要性。如果单粒子d-to-s激发与等离激元频率共振,则大部分等离激元能量将转换为热载流子,而总的热载流子产生将由等离激元增强;反之,如果不存在这种共振,我们将在等离激元和热载流子之间观察到一个有趣的拉比振荡。在这种小型系统中,声子在等离子动力学中仅扮演次要角色。这项研究为改善等离子体应用提供了指导。

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