Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals

Scintillation materials capable of transforming absorbed high-energy particles into visible radiation photons find multiple applications including advanced medical visualization methods. Gd3Al2Ga3O12 : Ce is a promising oxygen-containing sсintillator for fabrication of detecting crys...

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Main Authors: Valentina M. Kasimova, Nina S. Kozlova, Oleg A. Buzanov, Evgeniya V. Zabelina
Format: Article
Language:English
Published: Pensoft Publishers 2019-09-01
Series:Modern Electronic Materials
Online Access:https://moem.pensoft.net/article/51573/download/pdf/
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spelling doaj-866720d3bbdd414ea5ea7dfb183d79ea2021-04-02T12:03:38ZengPensoft PublishersModern Electronic Materials2452-17792019-09-015310110510.3897/j.moem.5.3.5157351573Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystalsValentina M. Kasimova0Nina S. Kozlova1Oleg A. Buzanov2Evgeniya V. Zabelina3National University of Science and Technology MISiSNational University of Science and Technology MISiSJSC Fomos-MaterialsNational University of Science and Technology MISiS Scintillation materials capable of transforming absorbed high-energy particles into visible radiation photons find multiple applications including advanced medical visualization methods. Gd3Al2Ga3O12 : Ce is a promising oxygen-containing sсintillator for fabrication of detecting crystals of positron emission tomographs due to its unique properties, e.g. high density, high light yield, radiation hardness etc. However its kinetic parameters currently restrict its use in this field. Attempts at improving the luminescence rise and decay time kinetics by introducing additional impurities have become a top priority task for many researchers. Analyzing literary data one can conclude that the optical parameters of co-doped crystals have been studied insufficiently or have not been studied at all. We have studied Ca2+ and Zr4+ co-doped Gd3Al2Ga3O12 : Ce single crystals by optical spectroscopy in the 200–2200 nm. We have taken the optical transmittance, absorption and reflection spectra and measured the refractive indices. Dispersion curves have been obtained by approximation of experimental refractive indices using the Brewster method and the Cauchy equation. Material constants of these equations have been estimated for each of the co-doped crystals. https://moem.pensoft.net/article/51573/download/pdf/
collection DOAJ
language English
format Article
sources DOAJ
author Valentina M. Kasimova
Nina S. Kozlova
Oleg A. Buzanov
Evgeniya V. Zabelina
spellingShingle Valentina M. Kasimova
Nina S. Kozlova
Oleg A. Buzanov
Evgeniya V. Zabelina
Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
Modern Electronic Materials
author_facet Valentina M. Kasimova
Nina S. Kozlova
Oleg A. Buzanov
Evgeniya V. Zabelina
author_sort Valentina M. Kasimova
title Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
title_short Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
title_full Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
title_fullStr Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
title_full_unstemmed Effect of Ca2+ and Zr4+ co-doping on the optical properties of Gd3Al2Ga3O12: Ce single crystals
title_sort effect of ca2+ and zr4+ co-doping on the optical properties of gd3al2ga3o12: ce single crystals
publisher Pensoft Publishers
series Modern Electronic Materials
issn 2452-1779
publishDate 2019-09-01
description Scintillation materials capable of transforming absorbed high-energy particles into visible radiation photons find multiple applications including advanced medical visualization methods. Gd3Al2Ga3O12 : Ce is a promising oxygen-containing sсintillator for fabrication of detecting crystals of positron emission tomographs due to its unique properties, e.g. high density, high light yield, radiation hardness etc. However its kinetic parameters currently restrict its use in this field. Attempts at improving the luminescence rise and decay time kinetics by introducing additional impurities have become a top priority task for many researchers. Analyzing literary data one can conclude that the optical parameters of co-doped crystals have been studied insufficiently or have not been studied at all. We have studied Ca2+ and Zr4+ co-doped Gd3Al2Ga3O12 : Ce single crystals by optical spectroscopy in the 200–2200 nm. We have taken the optical transmittance, absorption and reflection spectra and measured the refractive indices. Dispersion curves have been obtained by approximation of experimental refractive indices using the Brewster method and the Cauchy equation. Material constants of these equations have been estimated for each of the co-doped crystals.
url https://moem.pensoft.net/article/51573/download/pdf/
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