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Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals

A new approach to interpret the radiation hardness of PbWO//4 (PWO) scintillators is developed by revealing importance of the inclusions of tungsten oxides WO//3//-//x with variable valency. It is demonstrated that the influence of the ionizing radiation on PWO is, in many aspects, similar to the ef...

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Autores principales: Burachas, S, Beloglovski, S Y, Makov, I, Saveliev, Yu, Ippolitov, M S, Man'ko, V, Nikulin, S P, Nyanin, A, Vasilev, A, Apanasenko, A, Tamulaitis, G
Lenguaje:eng
Publicado: 2003
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(03)00991-4
http://cds.cern.ch/record/643308
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author Burachas, S
Beloglovski, S Y
Makov, I
Saveliev, Yu
Ippolitov, M S
Man'ko, V
Nikulin, S P
Nyanin, A
Vasilev, A
Apanasenko, A
Tamulaitis, G
author_facet Burachas, S
Beloglovski, S Y
Makov, I
Saveliev, Yu
Ippolitov, M S
Man'ko, V
Nikulin, S P
Nyanin, A
Vasilev, A
Apanasenko, A
Tamulaitis, G
author_sort Burachas, S
collection CERN
description A new approach to interpret the radiation hardness of PbWO//4 (PWO) scintillators is developed by revealing importance of the inclusions of tungsten oxides WO//3//-//x with variable valency. It is demonstrated that the influence of the ionizing radiation on PWO is, in many aspects, similar to the effect of the high-temperature annealing in oxygenless ambient. In both cases, a valency change of the tungsten oxides is initiated and results in induced absorption and, consequently, in crystal coloration. In the PWO crystals doped with L//2O//3 (L = Y, La, Gd), the radiation hardness and the optical properties are mainly affected by inclusions of W//1//-//yL//yO//3//- //x (0 less than x less than 0.3) instead of inclusions of WO//3//- //x prevailing in the undoped samples. It is demonstrated that the radiation-induced bleaching and the photochromic effect of PWO are caused by phase transitions in the inclusions of tungsten oxide. Thermodynamic conditions for the phase transitions are discussed and the optimal oxidation values for the growth of radiation-hard PWO are determined. The optimization is implemented on an industrial scale to grow PWO crystals with improved, stable and reproducible characteristics for the ALICE experiment at CERN.
id cern-643308
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2003
record_format invenio
spelling cern-6433082019-09-30T06:29:59Zdoi:10.1016/S0168-9002(03)00991-4http://cds.cern.ch/record/643308engBurachas, SBeloglovski, S YMakov, ISaveliev, YuIppolitov, M SMan'ko, VNikulin, S PNyanin, AVasilev, AApanasenko, ATamulaitis, GInfluence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystalsDetectors and Experimental TechniquesA new approach to interpret the radiation hardness of PbWO//4 (PWO) scintillators is developed by revealing importance of the inclusions of tungsten oxides WO//3//-//x with variable valency. It is demonstrated that the influence of the ionizing radiation on PWO is, in many aspects, similar to the effect of the high-temperature annealing in oxygenless ambient. In both cases, a valency change of the tungsten oxides is initiated and results in induced absorption and, consequently, in crystal coloration. In the PWO crystals doped with L//2O//3 (L = Y, La, Gd), the radiation hardness and the optical properties are mainly affected by inclusions of W//1//-//yL//yO//3//- //x (0 less than x less than 0.3) instead of inclusions of WO//3//- //x prevailing in the undoped samples. It is demonstrated that the radiation-induced bleaching and the photochromic effect of PWO are caused by phase transitions in the inclusions of tungsten oxide. Thermodynamic conditions for the phase transitions are discussed and the optimal oxidation values for the growth of radiation-hard PWO are determined. The optimization is implemented on an industrial scale to grow PWO crystals with improved, stable and reproducible characteristics for the ALICE experiment at CERN.oai:cds.cern.ch:6433082003
spellingShingle Detectors and Experimental Techniques
Burachas, S
Beloglovski, S Y
Makov, I
Saveliev, Yu
Ippolitov, M S
Man'ko, V
Nikulin, S P
Nyanin, A
Vasilev, A
Apanasenko, A
Tamulaitis, G
Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title_full Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title_fullStr Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title_full_unstemmed Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title_short Influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (PWO) scintillation crystals
title_sort influence of variable tungsten valency on optical transmittance and radiation hardness of lead tungstate (pwo) scintillation crystals
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(03)00991-4
http://cds.cern.ch/record/643308
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