Polarizability of nanowires at surfaces: Exact solution for general geometry
Jesper Jung, Thomas G. Pedersen

TL;DR
This paper derives an exact semi-analytical solution for the electrostatic polarizability of arbitrarily buried nanowires with general geometry, providing insights into their optical resonances relevant for plasmonics.
Contribution
It introduces a novel exact solution method for nanowire polarizability in complex geometries, advancing understanding of surface plasmon resonances.
Findings
Exact solutions for various nanowire geometries
Analysis of multiple resonances in polarizability
Physical insights into plasmonic behavior
Abstract
The polarizability of a nanostructure is an important parameter that determines the optical properties. An exact semi-analytical solution of the electrostatic polarizability of a general geometry consisting of two segments forming a cylinder that can be arbitrarily buried in a substrate is derived using bipolar coordinates, cosine-, and sine-transformations. Based on the presented expressions, we analyze the polarizability of several metal nanowire geometries that are important within plasmonics. Our results provide physical insight into the interplay between the multiple resonances found in the polarizability of metal nanowires at surfaces.
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