Using penetration depth for phase matching in photonic crystal waveguides

A new method of design for the phase-matching in waveguides is suggested. The approach is based on utilizing the concept of the penetration depth of light into the waveguide walls. The lateral components of wavevectors are employed to adjust the phase-matching condition in the propagation direction....

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Published in:Journal of the European Optical Society-Rapid Publications
Main Authors: Goldin S. Y., Meliach G., Arieli Y., Sfez B.
Format: Article
Language:English
Published: EDP Sciences 2011-01-01
Subjects:
Online Access:https://jeos.edpsciences.org/articles/jeos/pdf/2011/01/jeos20110611018.pdf
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author Goldin S. Y.
Meliach G.
Arieli Y.
Sfez B.
author_facet Goldin S. Y.
Meliach G.
Arieli Y.
Sfez B.
author_sort Goldin S. Y.
collection DOAJ
container_title Journal of the European Optical Society-Rapid Publications
description A new method of design for the phase-matching in waveguides is suggested. The approach is based on utilizing the concept of the penetration depth of light into the waveguide walls. The lateral components of wavevectors are employed to adjust the phase-matching condition in the propagation direction. The method is demonstrated in two systems: one using single and the other using double photonic-crystal mirrors.
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spelling doaj-art-fd674e4d06ca4e54a7a3bbbbb478acc92025-08-20T00:29:31ZengEDP SciencesJournal of the European Optical Society-Rapid Publications1990-25732011-01-0161101810.2971/jeos.2011.11018jeos20110611018Using penetration depth for phase matching in photonic crystal waveguidesGoldin S. Y.0Meliach G.1Arieli Y.2Sfez B.3Jerusalem College of Technology, Physics DepartmentJerusalem College of Technology, Physics DepartmentJerusalem College of Technology, Physics DepartmentSoreq NRC, Electro-Optics DivisionA new method of design for the phase-matching in waveguides is suggested. The approach is based on utilizing the concept of the penetration depth of light into the waveguide walls. The lateral components of wavevectors are employed to adjust the phase-matching condition in the propagation direction. The method is demonstrated in two systems: one using single and the other using double photonic-crystal mirrors.https://jeos.edpsciences.org/articles/jeos/pdf/2011/01/jeos20110611018.pdfphase-matchingwaveguidenonlinearphotonic crystalmultilayerpenetration depth
spellingShingle Goldin S. Y.
Meliach G.
Arieli Y.
Sfez B.
Using penetration depth for phase matching in photonic crystal waveguides
phase-matching
waveguide
nonlinear
photonic crystal
multilayer
penetration depth
title Using penetration depth for phase matching in photonic crystal waveguides
title_full Using penetration depth for phase matching in photonic crystal waveguides
title_fullStr Using penetration depth for phase matching in photonic crystal waveguides
title_full_unstemmed Using penetration depth for phase matching in photonic crystal waveguides
title_short Using penetration depth for phase matching in photonic crystal waveguides
title_sort using penetration depth for phase matching in photonic crystal waveguides
topic phase-matching
waveguide
nonlinear
photonic crystal
multilayer
penetration depth
url https://jeos.edpsciences.org/articles/jeos/pdf/2011/01/jeos20110611018.pdf
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AT meliachg usingpenetrationdepthforphasematchinginphotoniccrystalwaveguides
AT arieliy usingpenetrationdepthforphasematchinginphotoniccrystalwaveguides
AT sfezb usingpenetrationdepthforphasematchinginphotoniccrystalwaveguides