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Terahertz plasmon and surface-plasmon modes in hollow nanospheres

机译:空心纳米球的太赫兹等离激元和表面等离振子模式

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摘要

We present a theoretical study of the electronic subband structure and collective electronic excitation associated with plasmon and surface plasmon modes in metal-based hollow nanosphere. The dependence of the electronic subband energy on the sample parameters of the hollow nanosphere is examined. We find that the subband states with different quantum numbers l degenerate roughly when the outer radius of the sphere is r2 ≥ 100 nm. In this case, the energy spectrum of a sphere is mainly determined by quantum number n. Moreover, the plasmon and surface plasmon excitations can be achieved mainly via inter-subband transitions from occupied subbands to unoccupied subbands. We examine the dependence of the plasmon and surface-plasmon frequencies on the shell thickness d and the outer radius r2 of the sphere using the standard random-phase approximation. We find that when a four-state model is employed for calculations, four branches of the plasmon and surface plasmon oscillations with terahertz frequencies can be observed, respectively.
机译:我们目前对金属基空心纳米球中的等离激元和表面等离激元模式的电子子带结构和集体电子激发进行理论研究。检查了电子子带能量对中空纳米球样品参数的依赖性。我们发现,当球的外半径为r2≥100 nm时,具有不同量子数l的子带状态会大致退化。在这种情况下,球的能谱主要由量子数n决定。而且,等离激元和表面等离激元激发可以主要通过从占用子带到未占用子带的子带间过渡来实现。我们使用标准的随机相位近似法来检查等离激元和表面等离激元频率对壳厚度d和球体外半径r2的依赖性。我们发现,当采用四态模型进行计算时,可以分别观察到具有太赫兹频率的等离子体激元和表面等离子体激元振荡的四个分支。

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