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Highly excited electronic image states of metallic nanorings

机译:金属纳米环的高激发电子像态

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摘要

We study electronic image states around a metallic nanoring and show that the interplay between the attractive polarization force and a repulsive centrifugal force gives rise to Rydberg-like image states trapped several nanometers away from the surface. The nanoring is modeled as a perfectly conducting isolated torus whose classical electrostatic image potential is derived analytically. The image states are computed via a two-dimensional finite-difference scheme as solutions of the effective Schrödinger equation describing the outer electron subject to this image potential. These findings demonstrate not only the existence of detached image states around nanorings but allow us also to provide general criteria on the ring geometry, i.e., the aspect ratio of the torus, that need to be fulfilled in order to support such states.
机译:我们研究了金属纳米环周围的电子图像状态,结果表明,有吸引力的极化力和排斥离心力之间的相互作用导致了被困在距表面几纳米的里德伯格样图像状态。纳米环被建模为一个完美导电的孤立环面,其经典静电图像电势是通过分析得出的。通过二维有限差分方案计算图像状态,作为有效Schrödinger方程的解,该方程描述了受此图像电势影响的外部电子。这些发现不仅证明了在纳米环周围存在分离的图像状态,而且还使我们能够提供关于环几何形状的一般标准,即环面的纵横比,以支持这种状态。

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