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Hydrodynamical model for bulk and surface plasmons in cylindrical wires
In this paper, we study the electrostatic surface and volume modes of a cylindrical wire using the hydrodynamical model of plasmon excitation, which allows an analytical study of dispersion effects. We solve the hydrodynamical equations for a cylindrical wire geometry, obtaining new analytical expre...
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Published in: | Surface science 2009-01, Vol.603 (1), p.1-13 |
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container_title | Surface science |
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creator | Villó-Pérez, Isidro Arista, Néstor R. |
description | In this paper, we study the electrostatic surface and volume modes of a cylindrical wire using the hydrodynamical model of plasmon excitation, which allows an analytical study of dispersion effects. We solve the hydrodynamical equations for a cylindrical wire geometry, obtaining new analytical expressions for the bulk and surface modes. New dispersion relations are obtained for each type of mode and numerical solutions are given. We analyze in detail the characteristics of the solutions and their differences with previous treatments based on non-dispersive models. These differences become important for wires of small radii, particularly in the range of few nanometers. |
doi_str_mv | 10.1016/j.susc.2008.10.021 |
format | article |
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subjects | Condensed matter: electronic structure, electrical, magnetic, and optical properties Condensed matter: structure, mechanical and thermal properties Cross-disciplinary physics: materials science rheology Cylindrical nanostructures Exact sciences and technology Physics Surface and bulk waves (plasmons) |
title | Hydrodynamical model for bulk and surface plasmons in cylindrical wires |
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