Effect of ^-Doping on the Temperature Dependence of : Photoluminescence

The temperature dependence of the photoluminescence properties of {\rm Gd}_{2}{\rm SiO}_{5}:{\rm Ce},{\rm Ca} crystals was found to be significantly affected by Ca codoping and shows that presence of additional energy levels in these crystals provides nonradiative energy transfer. The excitation and...

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Veröffentlicht in:IEEE transactions on nuclear science 2013-04, Vol.60 (2), p.973-978
Hauptverfasser: Tyagi, Mohit, Koschan, Merry, Rothfuss, Harold E., Hayward, Jason, Melcher, Charles L.
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container_issue 2
container_start_page 973
container_title IEEE transactions on nuclear science
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creator Tyagi, Mohit
Koschan, Merry
Rothfuss, Harold E.
Hayward, Jason
Melcher, Charles L.
description The temperature dependence of the photoluminescence properties of {\rm Gd}_{2}{\rm SiO}_{5}:{\rm Ce},{\rm Ca} crystals was found to be significantly affected by Ca codoping and shows that presence of additional energy levels in these crystals provides nonradiative energy transfer. The excitation and emission bands also broaden with codoping due to presence of these additional energy levels. Therefore Ca codoping in {\rm Gd}_{2}{\rm SiO}_{5} crystals decreases the scintillation decay very strongly and has a strong adverse affect on scintillation light yield, different from the effect in other members of the oxyorthosilicate family such as {\rm Lu}_{2}{\rm SiO}_{5} and {\rm Y}_{2}{\rm SiO}_{5} .
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subjects Absorption
Calcium
cerium
co-doping
Crystals
Energy exchange
Energy states
Ions
photoluminescence
Temperature dependence
{\rm Gd}_{2}{\rm SiO}_{5} (GSO)
title Effect of ^-Doping on the Temperature Dependence of : Photoluminescence
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