Efficient integral equation-based analysis of finite periodic structures in the optical frequency range

Ozdemir, Nilufer;Craeye, Christophe
(2013) Optical Society of America. Journal — Vol. 30, n° 12, p. 2510-2518 (2013)

Files

JOSA_Sep13.pdf
  • Restricted Access
  • Adobe PDF
  • 1015.93 KB

Details

Authors
Abstract
The optical response of dense finite arrays of nanoparticles can be efficiently analyzed with the help of macro basis functions obtained by employing the array scanning method. This is demonstrated by analyzing optical collimation in arrays of silver nanorods. The accuracy of the solution obtained with the proposed method has been validated by comparison with solutions obtained employing the Krylov subspace iterative method. The relative error in the electric field distribution on an observation plane above the finite array is of the order of -25  dB, while the number of unknowns is reduced by a factor of 32.
Affiliations

Citations

Ozdemir, N., & Craeye, C. (2013). Efficient integral equation-based analysis of finite periodic structures in the optical frequency range. Optical Society of America. Journal, 30(12), 2510-2518. https://doi.org/10.1364/JOSAA.30.002510 (Original work published 2013)