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Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications

Five single crystals of cerium-doped lutetium yttrium oxyorthosilicate (LYSO:Ce) grown by the Czochralski method were submitted to structural characterisation by X-ray (XRD) and neutron (ND) diffraction, scanning (SEM) and transmission (TEM) electron microscopy and energy dispersive microanalysis (E...

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Autores principales: Mengucci, P, André, G, Auffray, E, Barucca, G, Cecchi, C, Chipaux, R, Cousson, A, Davì, F, Di Vara, N, Rinaldi, D, Santecchia, E
Publicado: 2015
Materias:
XX
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2015.02.061
http://cds.cern.ch/record/2162744
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author Mengucci, P
André, G
Auffray, E
Barucca, G
Cecchi, C
Chipaux, R
Cousson, A
Davì, F
Di Vara, N
Rinaldi, D
Santecchia, E
author_facet Mengucci, P
André, G
Auffray, E
Barucca, G
Cecchi, C
Chipaux, R
Cousson, A
Davì, F
Di Vara, N
Rinaldi, D
Santecchia, E
author_sort Mengucci, P
collection CERN
description Five single crystals of cerium-doped lutetium yttrium oxyorthosilicate (LYSO:Ce) grown by the Czochralski method were submitted to structural characterisation by X-ray (XRD) and neutron (ND) diffraction, scanning (SEM) and transmission (TEM) electron microscopy and energy dispersive microanalysis (EDS). The Ultimate Tensile Strength (UTS), the Young Modulus (YM) and the Light Yield (LY) of the samples were also measured in order to correlate the mechanical and the optical behaviour of the crystals with the characteristics of their microstructure. Two of the samples analysed were also heat treated at 300 °C for 10 h to evidence possible variations induced by the temperature in the optical and mechanical response of the crystals. Results showed that the mean compositional variations evidenced by the structural analyses do not affect the mechanical and optical behaviour of the samples. On the contrary, the thermal treatment could induce the formation of coherent spherical particles (size 10 to 15 nm), not uniformly distributed inside the sample, that strongly reduce the UTS and YM values, but it does not affect the optical response of the crystal. This latter result was attributed to the low value of the heating temperature (300 °C) that is not sufficiently high to induce annealing of the oxygen vacancies traps that are responsible of the deterioration of the scintillation properties of the LYSO:Ce crystals. This study was carried out in the framework of the Crystal Clear Collaboration (CCC).
id cern-2162744
institution Organización Europea para la Investigación Nuclear
publishDate 2015
record_format invenio
spelling cern-21627442022-08-10T12:52:09Zdoi:10.1016/j.nima.2015.02.061http://cds.cern.ch/record/2162744Mengucci, PAndré, GAuffray, EBarucca, GCecchi, CChipaux, RCousson, ADavì, FDi Vara, NRinaldi, DSantecchia, EStructural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applicationsXXFive single crystals of cerium-doped lutetium yttrium oxyorthosilicate (LYSO:Ce) grown by the Czochralski method were submitted to structural characterisation by X-ray (XRD) and neutron (ND) diffraction, scanning (SEM) and transmission (TEM) electron microscopy and energy dispersive microanalysis (EDS). The Ultimate Tensile Strength (UTS), the Young Modulus (YM) and the Light Yield (LY) of the samples were also measured in order to correlate the mechanical and the optical behaviour of the crystals with the characteristics of their microstructure. Two of the samples analysed were also heat treated at 300 °C for 10 h to evidence possible variations induced by the temperature in the optical and mechanical response of the crystals. Results showed that the mean compositional variations evidenced by the structural analyses do not affect the mechanical and optical behaviour of the samples. On the contrary, the thermal treatment could induce the formation of coherent spherical particles (size 10 to 15 nm), not uniformly distributed inside the sample, that strongly reduce the UTS and YM values, but it does not affect the optical response of the crystal. This latter result was attributed to the low value of the heating temperature (300 °C) that is not sufficiently high to induce annealing of the oxygen vacancies traps that are responsible of the deterioration of the scintillation properties of the LYSO:Ce crystals. This study was carried out in the framework of the Crystal Clear Collaboration (CCC).oai:cds.cern.ch:21627442015
spellingShingle XX
Mengucci, P
André, G
Auffray, E
Barucca, G
Cecchi, C
Chipaux, R
Cousson, A
Davì, F
Di Vara, N
Rinaldi, D
Santecchia, E
Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title_full Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title_fullStr Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title_full_unstemmed Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title_short Structural, mechanical and light yield characterisation of heat treated LYSO:Ce single crystals for medical imaging applications
title_sort structural, mechanical and light yield characterisation of heat treated lyso:ce single crystals for medical imaging applications
topic XX
url https://dx.doi.org/10.1016/j.nima.2015.02.061
http://cds.cern.ch/record/2162744
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