DocumentCode
1157143
Title
Measurements of NaI(Tl) Electron Response: Comparison of Different Samples
Author
Hull, Giulia ; Choong, Woon-Seng ; Moses, William W. ; Bizarri, Gregory ; Valentine, John D. ; Payne, Stephen A. ; Cherepy, Nerine J. ; Reutter, Bryan W.
Author_Institution
Lawrence Livermore Nat. Lab., Livermore, CA
Volume
56
Issue
1
fYear
2009
Firstpage
331
Lastpage
336
Abstract
This paper measures the sample to sample variation in the light yield proportionality of NaI(Tl), and so explores whether this is an invariant characteristic of the material or whether it depends on the chemical and physical properties of the tested samples. We report on the electron response of nine crystals of NaI(Tl), differing in shape, volume, age, manufacturer and quality. The proportionality has been measured at the SLYNCI facility in the energy range between 3.5 to 460 keV. We observe that while samples produced by the same manufacturer at approximately the same time have virtually identical electron response curves, there are significant sample to sample variations among crystals produced by different manufacturers or at different times. In an effort to correlate changes in the electron response with details of the scintillation mechanism, we characterized other scintillation properties, including the gamma response and the x-ray excited emission spectra and decay times, for the nine crystals. While sample to sample differences in these crystals were observed, we have been unable to identify the underlying fundamental mechanisms that are responsible for these differences.
Keywords
X-ray emission spectra; electron detection; gamma-ray detection; scintillation; solid scintillation detectors; NaI(Tl); NaI(Tl) crystals; SLYNCI facility; X-ray excited emission spectra; decay time measurements; electron response curves; electron volt energy 3.5 keV to 460 keV; gamma ray detection; light yield proportionality; scintillation mechanism; scintillator; Contracts; Crystalline materials; Crystals; Electrons; Gamma ray detection; Gamma ray detectors; Laboratories; Light scattering; Manufacturing; Materials testing; Nonproportionality; radiation detector; scintillator;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2008.2009876
Filename
4782167
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