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Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics

$Lu_{3}−_{x}Al_5O_{12}$:Ce optical ceramics ($Lu_3−_{x}AG:Ce,$ x = 1, 2, 3 and 4 at.%, respectively) with $Lu^{3+}$ compositions ranging from 1 to 4 at.% below stoichiometry content were fabricated by solid state reaction method and further optimized by an air-annealing process. The effect of $Lu^{3...

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Autores principales: Liu, Shuping, Mares, Jiri A, Babin, Vladimir, Hu, Chen, Kou, Huamin, D’Ambrosio, Carmelo, Pan, Yubai, Nikl, Martin
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.optmat.2016.06.006
http://cds.cern.ch/record/2270774
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author Liu, Shuping
Mares, Jiri A
Babin, Vladimir
Hu, Chen
Kou, Huamin
D’Ambrosio, Carmelo
Pan, Yubai
Nikl, Martin
author_facet Liu, Shuping
Mares, Jiri A
Babin, Vladimir
Hu, Chen
Kou, Huamin
D’Ambrosio, Carmelo
Pan, Yubai
Nikl, Martin
author_sort Liu, Shuping
collection CERN
description $Lu_{3}−_{x}Al_5O_{12}$:Ce optical ceramics ($Lu_3−_{x}AG:Ce,$ x = 1, 2, 3 and 4 at.%, respectively) with $Lu^{3+}$ compositions ranging from 1 to 4 at.% below stoichiometry content were fabricated by solid state reaction method and further optimized by an air-annealing process. The effect of $Lu^{3+}$ deficiency on the optical, luminescence and scintillation properties of such a non-stoichiometric $Lu_3−_{x}Al_5O_{12}$:Ce ceramics was investigated. Significant influence in the material densification was found leading to strong changes in the transparency, radioluminescence (RL) and scintillation response of these ceramics. Within the range of 1–4 at.% $Lu^{3+}$ deficiency, LuAl antisite defects were suppressed effectively and the $Lu_3−_{x}AG:Ce$ ceramics displayed an extremely high RL intensity which reaches ∼4 times higher than that of the latest commercial LuAG:Ce single crystals while its transparency deteriorated. The microstructure, presence of foreign phases and charge traps acting in scintillation mechanism were also characterized by means of SEM, back scattered electron imaging and thermoluminescence techniques, respectively.
id oai-inspirehep.net-1605206
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16052062019-09-30T06:29:59Zdoi:10.1016/j.optmat.2016.06.006http://cds.cern.ch/record/2270774engLiu, ShupingMares, Jiri ABabin, VladimirHu, ChenKou, HuaminD’Ambrosio, CarmeloPan, YubaiNikl, MartinEffect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramicsMaterial Science$Lu_{3}−_{x}Al_5O_{12}$:Ce optical ceramics ($Lu_3−_{x}AG:Ce,$ x = 1, 2, 3 and 4 at.%, respectively) with $Lu^{3+}$ compositions ranging from 1 to 4 at.% below stoichiometry content were fabricated by solid state reaction method and further optimized by an air-annealing process. The effect of $Lu^{3+}$ deficiency on the optical, luminescence and scintillation properties of such a non-stoichiometric $Lu_3−_{x}Al_5O_{12}$:Ce ceramics was investigated. Significant influence in the material densification was found leading to strong changes in the transparency, radioluminescence (RL) and scintillation response of these ceramics. Within the range of 1–4 at.% $Lu^{3+}$ deficiency, LuAl antisite defects were suppressed effectively and the $Lu_3−_{x}AG:Ce$ ceramics displayed an extremely high RL intensity which reaches ∼4 times higher than that of the latest commercial LuAG:Ce single crystals while its transparency deteriorated. The microstructure, presence of foreign phases and charge traps acting in scintillation mechanism were also characterized by means of SEM, back scattered electron imaging and thermoluminescence techniques, respectively.oai:inspirehep.net:16052062017
spellingShingle Material Science
Liu, Shuping
Mares, Jiri A
Babin, Vladimir
Hu, Chen
Kou, Huamin
D’Ambrosio, Carmelo
Pan, Yubai
Nikl, Martin
Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title_full Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title_fullStr Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title_full_unstemmed Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title_short Effect of reducing $Lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $Lu_{3}−_{x}Al_5O_{12}$:Ce ceramics
title_sort effect of reducing $lu^{3+}$ content on the fabrication and scintillation properties of non-stoichiometric $lu_{3}−_{x}al_5o_{12}$:ce ceramics
topic Material Science
url https://dx.doi.org/10.1016/j.optmat.2016.06.006
http://cds.cern.ch/record/2270774
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