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Journal article

Adjoint sensitivity analysis of plasmonic structures using the FDTD method.

Abstract

We present an adjoint variable method for estimating the sensitivities of arbitrary responses with respect to the parameters of dispersive discontinuities in nanoplasmonic devices. Our theory is formulated in terms of the electric field components at the vicinity of perturbed discontinuities. The adjoint sensitivities are computed using at most one extra finite-difference time-domain (FDTD) simulation regardless of the number of parameters. Our approach is illustrated through the sensitivity analysis of an add-drop coupler consisting of a square ring resonator between two parallel waveguides. The computed adjoint sensitivities of the scattering parameters are compared with those obtained using the accurate but computationally expensive central finite difference approach.

Authors

Zhang Y; Ahmed OS; Bakr MH

Journal

Optics Letters, Vol. 39, No. 10, pp. 3002–3005

Publisher

Optica Publishing Group

Publication Date

May 15, 2014

DOI

10.1364/ol.39.003002

ISSN

0146-9592

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