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Spatio-spectral decomposition of complex eigenmodes in subwavelength nanostructures through transmission matrix analysis

delete2022-01-04
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OA
AI
Y
Youngho Jin
J
Juntaek Oh
W
Wonshik Choi *
M
Myung‐Ki Kim *
DOI:10.1515/nanoph-2021-0653delete
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Abstract

Abstract

En 中文
Exploiting multiple near-field optical eigenmodes is an effective means of designing, engineering, and extending the functionalities of optical devices. However, the near-field optical eigenmodes of subwavelength plasmonic nanostructures are often highly multiplexed in both spectral and spatial distributions, making it extremely difficult to extract individual eigenmodes. We propose a novel mode analysis method that can resolve individual eigenmodes of subwavelength nanostructures, which are superimposed in conventional methods. A transmission matrix is constructed for each excitation wavelength by obtaining the near-field distributions for various incident angles, and through singular value decomposition, near-field profiles and energy spectra of individual eigenmodes are effectively resolved. By applying transmission matrix analysis to conventional electromagnetic simulations, we clearly resolved a set of orthogonal eigenmodes of single- and double-slot nanoantennas with a slot width of 20 nm. In addition, transmission matrix analysis leads to solutions that can selectively excite specific eigenmodes of nanostructures, allowing selective use of individual eigenmodes.
Keywords:
mode analysis
nano optics
plasmonics
SVD
transmission matrix
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Journal

Nanophotonics cover
Nanophotonics
IF:
6.6
Papers:
2.9K
Citations:
1.6W

Organization

I
institute for basic science - korea (ibs)
Scholars:
6.6K
Papers: 5.2K
Citations: 13
K
Korea University
Scholars:
3.6W
Papers: 3.8W
Citations: 4.4W