DocumentCode
799499
Title
A New Closed-Form Solution to Light Scattering by Spherical Nanoshells
Author
Li, Joshua Le-Wei ; Li, Zhong-Cheng ; She, Hao-Yuan ; Zouhdi, Saïd ; Mosig, Juan R. ; Martin, Olivier J F
Author_Institution
Dept. of Electr ical & Comput. Eng., Nat. Univ. of Singapore (NUS), Singapore, Singapore
Volume
8
Issue
5
fYear
2009
Firstpage
617
Lastpage
626
Abstract
Light or electromagnetic wave scattered by a single sphere or a coated sphere has been considered as a classic Mie theory. There have been some further extensions that were made further based on the Mie theory. Recently, a closed-form analytical model of the scattering cross section of a single nanoshell has been considered. The present paper is documented further, based on the work in 2006 by Alam and Massoud, to derive another different closed-form solution to the problem of light scattered by the nanoshells using polynomials of up to order 6. Validation is made by comparing the present closed-form solution to the exact Mie scattering solution and also to the other closed-form solution by Alam and Massoud. This study is found to be, however, more generalized and also more accurate for the coated spheres of either tiny/small or medium sizes than that of Alam and Massoud. Therefore, the derived formulas can be used for accurately characterizing both surface plasmon resonances of nanoparticles (of small sizes) or nanoantenna near-field properties (of medium sizes comparable with half wavelength).
Keywords
Mie scattering; light scattering; nanoparticles; surface plasmon resonance; 6th order polynomials; Mie scattering; classic Mie theory; closed-form analytical model; closed-form solution; electromagnetic wave scattering; light scattering; nanoantenna near-field properties; nanoparticles; scattering cross section; spherical nanoshells; surface plasmon resonances; Closed-form; Mie theory; light scattering; nanoshells;
fLanguage
English
Journal_Title
Nanotechnology, IEEE Transactions on
Publisher
ieee
ISSN
1536-125X
Type
jour
DOI
10.1109/TNANO.2009.2021696
Filename
4907079
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