All-dielectric periodic terajet waveguide using an array of coupled cuboids
Date
2015Version
Acceso abierto / Sarbide irekia
Type
Artículo / Artikulua
Version
Versión publicada / Argitaratu den bertsioa
Impact
|
10.1063/1.4923186
Abstract
In this paper, the recently proposed technique to produce photonic jets (terajets at terahertz (THz) frequencies) using 3D dielectric cuboids is applied in the design of a mesoscale cuboid-chain wave- guide. The chains are basically designed with several dielectric cubes with side 1 wavelength placed periodically along the axial z-axis and separated by an air-gap. Based on this, a systematic stud ...
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In this paper, the recently proposed technique to produce photonic jets (terajets at terahertz (THz) frequencies) using 3D dielectric cuboids is applied in the design of a mesoscale cuboid-chain wave- guide. The chains are basically designed with several dielectric cubes with side 1 wavelength placed periodically along the axial z-axis and separated by an air-gap. Based on this, a systematic study of the focusing properties and wave guiding of this chain is performed when the air-gap between the dielectric cubes is changed from 0.25 wavelengths to 3 wavelengths with the best performance achieved at 2.5 wavelengths.An analysis when losses are included in the cubes is also done, demonstrating a robust performance. Finally, the wave guiding is experimentally demonstrated at sub-THz frequencies with a good agreement with numerical results. The simulation results of focusing and transport properties are carried out using Finite Integration Technique. The results here presented may be scaled to any frequency ranges such as millimeter, sub-millimeter, and optical frequencies. [--]
Subject
Dielectric waveguide,
Terajets,
Photonic nanojets
Publisher
AIP Publishing
Published in
Applied Physics Letters 106, 254102 (2015)
Description
The following article appeared in Minin, I., Minin, O., Pacheco-Pena, V., & Beruete, M. (n.d). All-dielectric periodic terajet waveguide using an array of coupled cuboids. Applied Physics Letters, 106(25), and may be found at http://dx.doi.org/10.1063/1.4923186.
Departament
Universidad Pública de Navarra. Departamento de Ingeniería Eléctrica y Electrónica /
Nafarroako Unibertsitate Publikoa. Ingeniaritza Elektrikoa eta Elektronikoa Saila
Publisher version
Sponsorship
This work was supported in part by the Spanish Government under Contract No. TEC2011-28664-C02-01. V.P.-P. was sponsored by Spanish Ministerio de Educación, Cultura y Deporte under Grant No. FPU AP-2012-3796. M.B. was sponsored by the Spanish Government via RYC-2011-08221.