Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm
Within the framework of a method-of-moments algorithm, the natural frequencies and natural modes of a scatterer/antenna can be found by looking for the complex frequencies where the determinant of the impedance matrix becomes zero. However, for nanotopologies, the value of this determinant can easil...
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doaj-07efeb3c66cd487ba88993db47c285182021-03-29T17:19:17ZengIEEEIEEE Photonics Journal1943-06552014-01-016411310.1109/JPHOT.2014.23312366838978Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) AlgorithmXuezhi Zheng0Ventsislav K. Valev1Niels Verellen2Vladimir Volskiy3Lars O. Herrmann4Pol Van Dorpe5Jeremy J. Baumberg6Guy A. E. Vandenbosch7V. V. Moschchalkov8Dept. of Electr. Eng. (ESAT-TELEMIC), KU Leuven, Leuven, BelgiumDept. of Phys., Univ. of Cambridge, Cambridge, UKInst. for Nanoscale Phys. & Chem. (INPAC), Katholieke Univ. Leuven (KUL), Leuven, BelgiumDept. of Electr. Eng. (ESAT-TELEMIC), KU Leuven, Leuven, BelgiumDept. of Phys., Univ. of Cambridge, Cambridge, UKIMEC, Leuven, BelgiumDept. of Phys., Univ. of Cambridge, Cambridge, UKDept. of Electr. Eng. (ESAT-TELEMIC), KU Leuven, Leuven, BelgiumInst. for Nanoscale Phys. & Chem. (INPAC), Katholieke Univ. Leuven (KUL), Leuven, BelgiumWithin the framework of a method-of-moments algorithm, the natural frequencies and natural modes of a scatterer/antenna can be found by looking for the complex frequencies where the determinant of the impedance matrix becomes zero. However, for nanotopologies, the value of this determinant can easily go beyond the resolution or representation limits available on present-day computers. In this work, we propose a substitute for the matrix determinant that avoids this problem altogether: the characteristic term. A robust numerical procedure for locating natural frequencies using this new target function is outlined. Then, the natural frequencies of three different nanostructures, namely, a gold and nickel nanopatch and a gold nanodimer, are calculated and validated by numerically and experimentally obtained scattering/extinction spectra.https://ieeexplore.ieee.org/document/6838978/ |
collection |
DOAJ |
language |
English |
format |
Article |
sources |
DOAJ |
author |
Xuezhi Zheng Ventsislav K. Valev Niels Verellen Vladimir Volskiy Lars O. Herrmann Pol Van Dorpe Jeremy J. Baumberg Guy A. E. Vandenbosch V. V. Moschchalkov |
spellingShingle |
Xuezhi Zheng Ventsislav K. Valev Niels Verellen Vladimir Volskiy Lars O. Herrmann Pol Van Dorpe Jeremy J. Baumberg Guy A. E. Vandenbosch V. V. Moschchalkov Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm IEEE Photonics Journal |
author_facet |
Xuezhi Zheng Ventsislav K. Valev Niels Verellen Vladimir Volskiy Lars O. Herrmann Pol Van Dorpe Jeremy J. Baumberg Guy A. E. Vandenbosch V. V. Moschchalkov |
author_sort |
Xuezhi Zheng |
title |
Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm |
title_short |
Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm |
title_full |
Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm |
title_fullStr |
Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm |
title_full_unstemmed |
Implementation of the Natural Mode Analysis for Nanotopologies Using a Volumetric Method of Moments (V-MoM) Algorithm |
title_sort |
implementation of the natural mode analysis for nanotopologies using a volumetric method of moments (v-mom) algorithm |
publisher |
IEEE |
series |
IEEE Photonics Journal |
issn |
1943-0655 |
publishDate |
2014-01-01 |
description |
Within the framework of a method-of-moments algorithm, the natural frequencies and natural modes of a scatterer/antenna can be found by looking for the complex frequencies where the determinant of the impedance matrix becomes zero. However, for nanotopologies, the value of this determinant can easily go beyond the resolution or representation limits available on present-day computers. In this work, we propose a substitute for the matrix determinant that avoids this problem altogether: the characteristic term. A robust numerical procedure for locating natural frequencies using this new target function is outlined. Then, the natural frequencies of three different nanostructures, namely, a gold and nickel nanopatch and a gold nanodimer, are calculated and validated by numerically and experimentally obtained scattering/extinction spectra. |
url |
https://ieeexplore.ieee.org/document/6838978/ |
work_keys_str_mv |
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