Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton

Two schemes of excitation of a Tamm plasmon polariton localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity have been investigated in the framework of the temporal coupled-mode theory. The parameters of the structure have been determined, whi...

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Main Authors: Rashid G. Bikbaev, Stepan Ya. Vetrov, Ivan V. Timofeev
Format: Article
Language:English
Published: MDPI AG 2019-03-01
Series:Photonics
Subjects:
Online Access:http://www.mdpi.com/2304-6732/6/1/28
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spelling doaj-4607c9be7de3430eb2ef32b8b7ebc19b2020-11-24T21:32:28ZengMDPI AGPhotonics2304-67322019-03-01612810.3390/photonics6010028photonics6010028Epsilon-Near-Zero Absorber by Tamm Plasmon PolaritonRashid G. Bikbaev0Stepan Ya. Vetrov1Ivan V. Timofeev2Kirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk 660036, RussiaKirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk 660036, RussiaKirensky Institute of Physics, Federal Research Center KSC SB RAS, Krasnoyarsk 660036, RussiaTwo schemes of excitation of a Tamm plasmon polariton localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity have been investigated in the framework of the temporal coupled-mode theory. The parameters of the structure have been determined, which correspond to the critical coupling of the incident field with a Tamm plasmon polariton and, consequently, ensure the total absorption of the incident radiation by the structure. It has been established that the spectral width of the absorption line depends on the scheme of Tamm plasmon polariton excitation and the parameters of a nanocomposite film. The features of field localization at the Tamm plasmon polariton frequency for different excitation schemes have been examined. It has been demonstrated that such media can be used as narrowband absorbers based on Tamm plasmon polaritons localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity.http://www.mdpi.com/2304-6732/6/1/28photonic crystalnanocompositeepsilon near-zero materialTamm plasmon polariton
collection DOAJ
language English
format Article
sources DOAJ
author Rashid G. Bikbaev
Stepan Ya. Vetrov
Ivan V. Timofeev
spellingShingle Rashid G. Bikbaev
Stepan Ya. Vetrov
Ivan V. Timofeev
Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
Photonics
photonic crystal
nanocomposite
epsilon near-zero material
Tamm plasmon polariton
author_facet Rashid G. Bikbaev
Stepan Ya. Vetrov
Ivan V. Timofeev
author_sort Rashid G. Bikbaev
title Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
title_short Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
title_full Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
title_fullStr Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
title_full_unstemmed Epsilon-Near-Zero Absorber by Tamm Plasmon Polariton
title_sort epsilon-near-zero absorber by tamm plasmon polariton
publisher MDPI AG
series Photonics
issn 2304-6732
publishDate 2019-03-01
description Two schemes of excitation of a Tamm plasmon polariton localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity have been investigated in the framework of the temporal coupled-mode theory. The parameters of the structure have been determined, which correspond to the critical coupling of the incident field with a Tamm plasmon polariton and, consequently, ensure the total absorption of the incident radiation by the structure. It has been established that the spectral width of the absorption line depends on the scheme of Tamm plasmon polariton excitation and the parameters of a nanocomposite film. The features of field localization at the Tamm plasmon polariton frequency for different excitation schemes have been examined. It has been demonstrated that such media can be used as narrowband absorbers based on Tamm plasmon polaritons localized at the interface between a photonic crystal and a nanocomposite with near-zero effective permittivity.
topic photonic crystal
nanocomposite
epsilon near-zero material
Tamm plasmon polariton
url http://www.mdpi.com/2304-6732/6/1/28
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AT stepanyavetrov epsilonnearzeroabsorberbytammplasmonpolariton
AT ivanvtimofeev epsilonnearzeroabsorberbytammplasmonpolariton
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