On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs

We derived a general equation governing the spectra of electrostatic surface plasmons supported by a waveguide structure of two identical plasma slabs separated by a dielectric medium. The plasma slabs are parallel, homogeneous, and have finite thicknesses. The geometry under consideration supports...

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Main Authors: E. Yasin, A. AlKhateeb, F. Rawwagah, A. Abuzir
Format: Article
Language:English
Published: Advanced Electromagnetics 2020-05-01
Series:Advanced Electromagnetics
Subjects:
Online Access:https://aemjournal.org/index.php/AEM/article/view/1368
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spelling doaj-6d798082f52f47829b596b6a669bd7ae2020-11-25T02:52:58ZengAdvanced ElectromagneticsAdvanced Electromagnetics2119-02752020-05-019110.7716/aem.v9i1.1368On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabsE. Yasin0A. AlKhateeb1F. Rawwagah2A. Abuzir3King Faisal UniversiyYarmouk UniversityYarmouk UniversityKing Faisal University We derived a general equation governing the spectra of electrostatic surface plasmons supported by a waveguide structure of two identical plasma slabs separated by a dielectric medium. The plasma slabs are parallel, homogeneous, and have finite thicknesses. The geometry under consideration supports two surface plasmon modes, which we investigated numerically for Polyethylene $\varepsilon_d=2.25$ and vacuum $\varepsilon_d=1$ as central regions. With vacuum as a central region, the two surface plasmon modes become coupled and merge into the well known single mode of quasi-static frequency $\omega=0.707\omega_{\rm p}$. The surface plasmon modes in the presence of a Polyethylene are decoupled and remain nondegenerate over the whole range of $kd$. Therefore, the two plasmon modes propagate independent of each other with distinct quasi-static resonance frequencies, namely, a backward wave with $\omega=0.707\omega_{\rm p}$ corresponding to a single plasma-vacuum interface and a forward wave with $\omega=\frac{\omega_{\rm p}}{\sqrt{3.25}}=0.55\omega_{\rm p}$ corresponding to a single plasma-dielectric interface. Increasing the central region width is found to introduce a delay in reaching the quasi-static resonance frequencies. The effect of collision is to down shift the mode frequencies for long wavelengths and also to down shift the quasi-static frequencies. https://aemjournal.org/index.php/AEM/article/view/1368Slab WaveguidePlasma Slab WaveguideSurface PlasmonsCoupled Plasmon Surface Modes
collection DOAJ
language English
format Article
sources DOAJ
author E. Yasin
A. AlKhateeb
F. Rawwagah
A. Abuzir
spellingShingle E. Yasin
A. AlKhateeb
F. Rawwagah
A. Abuzir
On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
Advanced Electromagnetics
Slab Waveguide
Plasma Slab Waveguide
Surface Plasmons
Coupled Plasmon Surface Modes
author_facet E. Yasin
A. AlKhateeb
F. Rawwagah
A. Abuzir
author_sort E. Yasin
title On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
title_short On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
title_full On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
title_fullStr On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
title_full_unstemmed On the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
title_sort on the coupling of forward and backward slow waves supported by the waveguide configuration of a dielectric sandwiched between two plasma slabs
publisher Advanced Electromagnetics
series Advanced Electromagnetics
issn 2119-0275
publishDate 2020-05-01
description We derived a general equation governing the spectra of electrostatic surface plasmons supported by a waveguide structure of two identical plasma slabs separated by a dielectric medium. The plasma slabs are parallel, homogeneous, and have finite thicknesses. The geometry under consideration supports two surface plasmon modes, which we investigated numerically for Polyethylene $\varepsilon_d=2.25$ and vacuum $\varepsilon_d=1$ as central regions. With vacuum as a central region, the two surface plasmon modes become coupled and merge into the well known single mode of quasi-static frequency $\omega=0.707\omega_{\rm p}$. The surface plasmon modes in the presence of a Polyethylene are decoupled and remain nondegenerate over the whole range of $kd$. Therefore, the two plasmon modes propagate independent of each other with distinct quasi-static resonance frequencies, namely, a backward wave with $\omega=0.707\omega_{\rm p}$ corresponding to a single plasma-vacuum interface and a forward wave with $\omega=\frac{\omega_{\rm p}}{\sqrt{3.25}}=0.55\omega_{\rm p}$ corresponding to a single plasma-dielectric interface. Increasing the central region width is found to introduce a delay in reaching the quasi-static resonance frequencies. The effect of collision is to down shift the mode frequencies for long wavelengths and also to down shift the quasi-static frequencies.
topic Slab Waveguide
Plasma Slab Waveguide
Surface Plasmons
Coupled Plasmon Surface Modes
url https://aemjournal.org/index.php/AEM/article/view/1368
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