首页> 外文期刊>The journal of physical chemistry, C. Nanomaterials and interfaces >Dependence of Plasmon Energies on the Acoustic Normal Modes of Ag-n (n=20, 84, and 120) Clusters
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Dependence of Plasmon Energies on the Acoustic Normal Modes of Ag-n (n=20, 84, and 120) Clusters

机译:等离子体能量对Ag-n(n = 20、84和120)团簇的声态正常模态的依赖性

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摘要

The vibrational and optical properties of Ag-20, Ag-84, and Ag-120 closed-shell clusters are investigated through a combination of continuum mechanics and density functional theory approaches. The acoustic vibrational frequencies associated with these tetrahedral silver clusters are found to be in close correspondence for the two theories, demonstrating the ability of finite element calculations to reproduce first-principles computational results, even down to few-atom structures. TDDFT calculations of the absorption spectra of these clusters indicate a strong plasmon-like mode both for equilibrium structures of the clusters and for structures where the acoustic breathing mode is excited by amounts that are accessible to ultrafast experiments. The plasmon-like mode energy is found to vary linearly with the acoustic mode displacement (for small displacements), with a slope that increases with increasing cluster size. For larger clusters, the TDDFT slope is larger than the FDTD, slope, which indicates that there are systematic errors in the continuum theory result for small particles. We also examine the ground and plasmon excited potential energy curves and show that the displacement in equilibrium geometry between these curves is too small to give breathing mode excitation that is consistent with observations based on vertical excitation alone. This suggests that breathing mode excitation arises during internal conversion after the initial photoexcitation.
机译:通过结合连续力学和密度泛函理论方法研究了Ag-20,Ag-84和Ag-120闭壳团簇的振动和光学性质。对于这两种理论,发现与这些四面体银团簇相关的声振动频率非常接近,这表明有限元计算具有再现第一性原理计算结果的能力,甚至低至几个原子的结构。这些簇的吸收光谱的TDDFT计算表明,对于簇的平衡结构以及对于声学呼吸模式被超快实验可访问的量激发的结构而言,它们都具有很强的等离子体激元模态。发现等离子激元模态能量随声模位移(对于小位移)线性变化,其斜率随簇尺寸的增加而增加。对于较大的簇,TDDFT斜率大于FDTD斜率,这表明小颗粒的连续理论结果中存在系统误差。我们还检查了地面和等离激元激发的势能曲线,结果表明,这些曲线之间平衡几何的位移太小,无法给出与仅基于垂直激发的观测结果一致的呼吸模式激发。这表明在初始光激发后的内部转换过程中会出现呼吸模式激发。

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