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Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals

Luminescence and photo-thermally stimulated defects creation processes are studied for a Pr3+-doped PbWO4 crystal at 4.2-400 K under excitation in the band-to-band, exciton, and charge-transfer transitions regions, as well as in the Pr3+-related absorption bands. Emission spectra of Pr3+ centers dep...

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Autores principales: Auffray, E, Korjik, M, Shalapska, T, Zazubovich, S
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.jlumin.2014.05.012
http://cds.cern.ch/record/2124593
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author Auffray, E
Korjik, M
Shalapska, T
Zazubovich, S
author_facet Auffray, E
Korjik, M
Shalapska, T
Zazubovich, S
author_sort Auffray, E
collection CERN
description Luminescence and photo-thermally stimulated defects creation processes are studied for a Pr3+-doped PbWO4 crystal at 4.2-400 K under excitation in the band-to-band, exciton, and charge-transfer transitions regions, as well as in the Pr3+-related absorption bands. Emission spectra of Pr3+ centers depend on the excitation energy, indicating the presence of Pr3+ centers of two types. The origin of these centers is discussed. The 2.03-2.06 eV emission, arising from the D-1(2) -> H-3(4) transitions of Pr3+ ions, is found to be effectively excited in a broad intense absorption band peaking at 4.2 K at 3.92 eV. By analogy with some other Pe(3+)-doped compounds, this band is suggested to arise from an electron transfer from an impurity Pr3+ ion to the crystal lattice W6+ or Pb2+ ions. The dynamics of the Pr3+-related excited states is clarified. In the PbWO4:Pr crystal studied, the concentration of single oxygen and lead vacancies as traps for electrons and holes is found to be negligible.
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publishDate 2014
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spelling cern-21245932019-09-30T06:29:59Zdoi:10.1016/j.jlumin.2014.05.012http://cds.cern.ch/record/2124593engAuffray, EKorjik, MShalapska, TZazubovich, SPhotoluminescence and excited states dynamics in PbWO4:Pr3+ crystalsNuclear Physics - ExperimentLuminescence and photo-thermally stimulated defects creation processes are studied for a Pr3+-doped PbWO4 crystal at 4.2-400 K under excitation in the band-to-band, exciton, and charge-transfer transitions regions, as well as in the Pr3+-related absorption bands. Emission spectra of Pr3+ centers depend on the excitation energy, indicating the presence of Pr3+ centers of two types. The origin of these centers is discussed. The 2.03-2.06 eV emission, arising from the D-1(2) -> H-3(4) transitions of Pr3+ ions, is found to be effectively excited in a broad intense absorption band peaking at 4.2 K at 3.92 eV. By analogy with some other Pe(3+)-doped compounds, this band is suggested to arise from an electron transfer from an impurity Pr3+ ion to the crystal lattice W6+ or Pb2+ ions. The dynamics of the Pr3+-related excited states is clarified. In the PbWO4:Pr crystal studied, the concentration of single oxygen and lead vacancies as traps for electrons and holes is found to be negligible.oai:cds.cern.ch:21245932014
spellingShingle Nuclear Physics - Experiment
Auffray, E
Korjik, M
Shalapska, T
Zazubovich, S
Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title_full Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title_fullStr Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title_full_unstemmed Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title_short Photoluminescence and excited states dynamics in PbWO4:Pr3+ crystals
title_sort photoluminescence and excited states dynamics in pbwo4:pr3+ crystals
topic Nuclear Physics - Experiment
url https://dx.doi.org/10.1016/j.jlumin.2014.05.012
http://cds.cern.ch/record/2124593
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