Investigation of the Convergence Behavior with Fluctuation Features in the Fourier Modal Analysis of a Metallic Grating

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초록

We observe that the transmission and reflection efficiencies of a one-dimensional metallic grating under transverse-magnetic illumination calculated using the Fourier modal method (FMM) with the Fourier factorization rules have peculiar fluctuations, albeit small in magnitude, as the number of field harmonics increases. It is shown that when the number of Fourier terms for the electromagnetic field is increased from that in the conventional FMM, the fluctuations due to non-convergent highly evanescent eigenmodes can be eliminated. Our examination reveals that the fluctuations originate from the Gibbs phenomenon inherent in the Fourier-series representation of a permittivity function with discontinuities, and from non-convergence of highly evanescent internal Bloch eigenmodes.

키워드

Fourier modal methodRigorous coupled wave analysisSurface plasmonsGratingsSCATTERING-MATRIX METHODCOUPLED-WAVE METHODIMPLEMENTATION
제목
Investigation of the Convergence Behavior with Fluctuation Features in the Fourier Modal Analysis of a Metallic Grating
저자
Kim, HwiPark, GwanwooKim, Changsoon
DOI
10.3807/JOSK.2012.16.3.196
발행일
2012-09
유형
Article
저널명
Journal of the Optical Society of Korea
16
3
페이지
196 ~ 202