A generic model for the study of supercontinuum generation in graphene-covered nanowires
"We study supercontinuum (SC) generation in graphene-covered nanowires based on a generic model that correctly accounts for the evolution of the photon number under Kerr and two-photon absorption processes, and the influence of graphene is treated within the framework of saturable photoexcited-...
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Acceso en línea: | http://ri.itba.edu.ar/handle/123456789/3892 |
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I32-R138-123456789-38922022-12-07T13:06:04Z A generic model for the study of supercontinuum generation in graphene-covered nanowires Linale, N. Fierens, Pablo Ignacio Vermeulen, N. Grosz, Diego NANOCABLES FOTONES DOS PROCESOS DE FOTONES GRAFENO "We study supercontinuum (SC) generation in graphene-covered nanowires based on a generic model that correctly accounts for the evolution of the photon number under Kerr and two-photon absorption processes, and the influence of graphene is treated within the framework of saturable photoexcited-carrier refraction. We discuss the role of the various effects on the generation of SC by a thorough analysis of short-pulse propagation in two different kinds of graphene-covered nanowires, one made of silicon nitride and the other made of silicon. Finally, we discuss the effect of stacking graphene layers as a means to enhance SC generation with pulse powers compatible with those in integrated optical devices." 2022-05-23T19:04:54Z 2022-05-23T19:04:54Z 2022-01 Artículos de Publicaciones Periódicas info:eu-repo/semantics/publishedVersion 2515-7647 http://ri.itba.edu.ar/handle/123456789/3892 en info:eu-repo/semantics/altidentifier/doi/10.1088/2515-7647/ac4277 info:eu-repo/grantAgreement/FWO/G005420N/BE. Bruselas info:eu-repo/grantAgreement/FWO/G0F6218N/BE. Bruselas info:eu-repo/grantAgreement/VUB-OZR/BE. Bruselas https://creativecommons.org/licenses/by/4.0/ application/pdf |
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Instituto Tecnológico de Buenos Aires (ITBA) |
institution_str |
I-32 |
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R-138 |
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Repositorio Institucional Instituto Tecnológico de Buenos Aires (ITBA) |
language |
Inglés |
topic |
NANOCABLES FOTONES DOS PROCESOS DE FOTONES GRAFENO |
spellingShingle |
NANOCABLES FOTONES DOS PROCESOS DE FOTONES GRAFENO Linale, N. Fierens, Pablo Ignacio Vermeulen, N. Grosz, Diego A generic model for the study of supercontinuum generation in graphene-covered nanowires |
topic_facet |
NANOCABLES FOTONES DOS PROCESOS DE FOTONES GRAFENO |
description |
"We study supercontinuum (SC) generation in graphene-covered nanowires based on a generic model that correctly accounts for the evolution of the photon number under Kerr and two-photon absorption processes, and the influence of graphene is treated within the framework of saturable photoexcited-carrier refraction. We discuss the role of the various effects on the generation of SC by a thorough analysis of short-pulse propagation in two different kinds of graphene-covered nanowires, one made of silicon nitride and the other made of silicon. Finally, we discuss the effect of stacking graphene layers as a means to enhance SC generation with pulse powers compatible with those in integrated optical devices." |
format |
Artículos de Publicaciones Periódicas publishedVersion |
author |
Linale, N. Fierens, Pablo Ignacio Vermeulen, N. Grosz, Diego |
author_facet |
Linale, N. Fierens, Pablo Ignacio Vermeulen, N. Grosz, Diego |
author_sort |
Linale, N. |
title |
A generic model for the study of supercontinuum generation in graphene-covered nanowires |
title_short |
A generic model for the study of supercontinuum generation in graphene-covered nanowires |
title_full |
A generic model for the study of supercontinuum generation in graphene-covered nanowires |
title_fullStr |
A generic model for the study of supercontinuum generation in graphene-covered nanowires |
title_full_unstemmed |
A generic model for the study of supercontinuum generation in graphene-covered nanowires |
title_sort |
generic model for the study of supercontinuum generation in graphene-covered nanowires |
publishDate |
2022 |
url |
http://ri.itba.edu.ar/handle/123456789/3892 |
work_keys_str_mv |
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1765660836191272960 |