Key Laboratory of Advanced Microstructured Materials, MOE, Department of Physics, Tongji University, 1239 Siping Road, Shanghai 200092, People's Republic of China.
J Chem Phys. 2012 Aug 7;137(5):054101. doi: 10.1063/1.4739952.
The collective electronic excitation in planar sodium clusters is studied by time-dependent density functional theory calculations. The formation and development of the resonances in photoabsorption spectra are investigated in terms of the shape and size of the two-dimensional (2D) systems. The nature of these resonances is revealed by the frequency-resolved induced charge densities present on a real-space grid. For long double chains, the excitation is similar to that in long single atomic chains, showing longitudinal modes, end and central transverse modes. However, for 2D planes consisting of (n × n) atoms with n being up to 16, new 2D characteristic modes emerge regardless of the symmetries considered. For in-plane excitations, besides the equivalent end mode, mixed modes with contrary polarity occur. The relation between the frequency of the primary modes and the system size is similar to the case of a 2D electron gas but with a correction due to the realistic atomic structure. For excitations perpendicular to the plane there are corner, side center, bulk center, and circuit modes. Our calculation reveals the importance of dimensionality for plasmon excitation and how it evolves from 1D to 2D.
通过时间相关密度泛函理论计算研究了平面钠团簇中的集体电子激发。根据二维(2D)系统的形状和大小,研究了光吸收光谱中共振的形成和发展。通过在实空间网格上存在的频率分辨感应电荷密度揭示了这些共振的性质。对于长双链,激发类似于长单原子链中的激发,表现出纵向模式、端和中心横向模式。然而,对于由(n×n)个原子组成的 2D 平面,无论考虑的对称性如何,都会出现新的 2D 特征模式。对于面内激发,除了等效端模式外,还会出现极性相反的混合模式。主要模式的频率与系统尺寸之间的关系类似于二维电子气的情况,但由于实际原子结构而存在修正。对于垂直于平面的激发,存在角、边中心、体中心和回路模式。我们的计算揭示了维度对于等离激元激发的重要性以及它如何从 1D 演变为 2D。