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Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory

Formation, excitation and passivation of defects by absorbed hydrogen have been extensively reported in the literature. Here we present a basic luminescence-diffusion model to simulate creation and chemical annealing behavior of non-bridging oxygen hole centers in silica by their treatment under a l...

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Detalles Bibliográficos
Autores principales: Barannik, E, Kalantaryan, O, Zhurenko, V, Kononenko, S, Kononenko, O
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2015.09.080
http://cds.cern.ch/record/2161591
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author Barannik, E
Kalantaryan, O
Zhurenko, V
Kononenko, S
Kononenko, O
author_facet Barannik, E
Kalantaryan, O
Zhurenko, V
Kononenko, S
Kononenko, O
author_sort Barannik, E
collection CERN
description Formation, excitation and passivation of defects by absorbed hydrogen have been extensively reported in the literature. Here we present a basic luminescence-diffusion model to simulate creation and chemical annealing behavior of non-bridging oxygen hole centers in silica by their treatment under a long-time hydrogen implantation. The model is in a good agreement with experimental data and explains the uncommon nonmonotonic time dependence of the non-bridging oxygen hole centers luminescence during the hydrogen implantation. The proposed model establishes the quantitative relation between the intensity dependence of luminescence on its intrinsic diffusivity, hydrogen concentration, defect concentration and cross-section of their creation. Possibilities to estimate these parameters based on the experimental data for the efficiency of silica luminescence are also discussed.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
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spelling cern-21615912022-08-10T13:06:32Zdoi:10.1016/j.nimb.2015.09.080http://cds.cern.ch/record/2161591engBarannik, EKalantaryan, OZhurenko, VKononenko, SKononenko, OTime dependence of silica optical properties during the implantation of fast hydrogen ions: TheoryChemical Physics and ChemistryFormation, excitation and passivation of defects by absorbed hydrogen have been extensively reported in the literature. Here we present a basic luminescence-diffusion model to simulate creation and chemical annealing behavior of non-bridging oxygen hole centers in silica by their treatment under a long-time hydrogen implantation. The model is in a good agreement with experimental data and explains the uncommon nonmonotonic time dependence of the non-bridging oxygen hole centers luminescence during the hydrogen implantation. The proposed model establishes the quantitative relation between the intensity dependence of luminescence on its intrinsic diffusivity, hydrogen concentration, defect concentration and cross-section of their creation. Possibilities to estimate these parameters based on the experimental data for the efficiency of silica luminescence are also discussed.oai:cds.cern.ch:21615912015
spellingShingle Chemical Physics and Chemistry
Barannik, E
Kalantaryan, O
Zhurenko, V
Kononenko, S
Kononenko, O
Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title_full Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title_fullStr Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title_full_unstemmed Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title_short Time dependence of silica optical properties during the implantation of fast hydrogen ions: Theory
title_sort time dependence of silica optical properties during the implantation of fast hydrogen ions: theory
topic Chemical Physics and Chemistry
url https://dx.doi.org/10.1016/j.nimb.2015.09.080
http://cds.cern.ch/record/2161591
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