Title :
Scintillation Properties of and Self Absorption in
Author :
Alekhin, Mikhail S. ; De Haas, Johan T M ; Krämer, Karl W. ; Dorenbos, Pieter
Author_Institution :
Fac. of Appl. Sci., Delft Univ. of Technol., Delft, Netherlands
Abstract :
The scintillation properties of pure SrI2 and SrI2 doped with 0.5%, 0.86%, 2%, and 5% europium were studied. Different techniques were used to measure γ-ray excited pulse-height and scintillation decay time spectra, and to perform X-ray excited and optically excited emission spectroscopy. Eu2+ emission and trapped exciton (TE) emission was observed in SrI2:Eu2+ samples. These emissions were studied as a function of temperature, Eu concentration, and sample size. A spectral overlap was observed between Eu2+ excitation and emission spectra, the amount of overlap depends on temperature. The light yield, energy resolution and luminescence decay profiles reveal also a dependence on temperature, sample size, and Eu concentration. The observations were analyzed and interpreted in terms of two separate models. One model consists of the relation between TE and Eu2+ emission and the other deals with self absorption processes.
Keywords :
X-ray spectra; excitons; gamma-ray spectra; ion emission; luminescence; scintillation; ultraviolet spectra; Eu2+ emission; SrI2 scintillation properties; SrI2:Eu2+ scintillation properties; SrI2:Eu2+ self absorption; X-ray excited emission spectroscopy; energy resolution profile; gamma-ray excited pulse height; light yield profile; luminescence decay profile; optically excited emission spectroscopy; scintillation decay time spectra; spectral overlap; trapped exciton emission; Absorption; Crystals; Energy resolution; Excitons; Photonics; Temperature dependence; Temperature measurement; ${rm SrI}_{2}$; Gamma-ray spectroscopy; scintillators; self-absorption; strontium iodide;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2011.2163642