Article ID | Journal | Published Year | Pages | File Type |
---|---|---|---|---|
6928813 | Journal of Computational Physics | 2018 | 18 Pages |
Abstract
In this paper, we develop a reduced order modeling framework that is capable of real-time accurate electromagnetic responses of plasmonic nanogap structures for a wide range of geometry and material parameters. The main ingredients of the proposed method are: (i) the hybridizable discontinuous Galerkin method to numerically solve the equations governing electromagnetic wave propagation in dielectric and metallic media, (ii) a reference domain formulation of the time-harmonic Maxwell's equations to account for arbitrary geometry variations; and (iii) proper orthogonal decomposition and empirical interpolation techniques to construct an efficient reduced model. To demonstrate effectiveness of the models developed, we analyze geometry sensitivities and explore optimal designs of a 3D periodic coaxial nanogap structure.
Related Topics
Physical Sciences and Engineering
Computer Science
Computer Science Applications
Authors
F. Vidal-Codina, N.C. Nguyen, J. Peraire,