Photo- and thermo-luminescence techniques are applied to several kinds of single crystal complex oxide scintillators to reveal tunnelling-driven radiative recombination processes. The tunnelling mechanism provides the physical ground to interpret the observed luminescence and scintillation characteristics which could not be explained by classical radiative recombination schemes

Nikl, M., Vedda, A., Pazzi, G., Mihokova, E., Fasoli, M., Pejchal, J., et al. (2010). Tunneling processes-driven radiative recombination in complex oxide scintillators. Intervento presentato a: 11th Europhysical Conference on Defects in Insulating Materials (EURODIM 2010), Pecs (Ungheria) [10.1088/1742-6596/249/1/012018].

Tunneling processes-driven radiative recombination in complex oxide scintillators

VEDDA, ANNA GRAZIELLA;FASOLI, MAURO;
2010

Abstract

Photo- and thermo-luminescence techniques are applied to several kinds of single crystal complex oxide scintillators to reveal tunnelling-driven radiative recombination processes. The tunnelling mechanism provides the physical ground to interpret the observed luminescence and scintillation characteristics which could not be explained by classical radiative recombination schemes
paper
scintillators; thermoluminescence; oxides
English
11th Europhysical Conference on Defects in Insulating Materials (EURODIM 2010)
2010
2010
249
1
012018
none
Nikl, M., Vedda, A., Pazzi, G., Mihokova, E., Fasoli, M., Pejchal, J., et al. (2010). Tunneling processes-driven radiative recombination in complex oxide scintillators. Intervento presentato a: 11th Europhysical Conference on Defects in Insulating Materials (EURODIM 2010), Pecs (Ungheria) [10.1088/1742-6596/249/1/012018].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/25255
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