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Toward Ultimate Nanoplasmonics Modeling

Authors :
Solís, Diego M.
Taboada, José M.
Obelleiro, Fernando
Liz-Marzán, Luis M.
García de Abajo, F. Javier
Source :
ACS Nano; July 2014, Vol. 8 Issue: 8 p7559-7570, 12p
Publication Year :
2014

Abstract

Advances in the field of nanoplasmonics are hindered by the limited capabilities of simulation tools in dealing with realistic systems comprising regions that extend over many light wavelengths. We show that the optical response of unprecedentedly large systems can be accurately calculated by using a combination of surface integral equation (SIE) method of moments (MoM) formulation and an expansion of the electromagnetic fields in a suitable set of spatial wave functions viafast multipole methods. We start with a critical review of volume versussurface integral methods, followed by a short tutorial on the key features that render plasmons useful for sensing (field enhancement and confinement). We then use the SIE-MoM to examine the plasmonic and sensing capabilities of various systems with increasing degrees of complexity, including both individual and interacting gold nanorods and nanostars, as well as large random and periodic arrangements of ∼1000 gold nanorods. We believe that the present results and methodology raise the standard of numerical electromagnetic simulations in the field of nanoplasmonics to a new level, which can be beneficial for the design of advanced nanophotonic devices and optical sensing structures.

Details

Language :
English
ISSN :
19360851 and 1936086X
Volume :
8
Issue :
8
Database :
Supplemental Index
Journal :
ACS Nano
Publication Type :
Periodical
Accession number :
ejs33455422
Full Text :
https://doi.org/10.1021/nn5037703