DocumentCode
1348804
Title
Nonproportionality of Scintillator Detectors: Theory and Experiment. II
Author
Payne, Stephen A. ; Moses, William W. ; Sheets, Steven ; Ahle, Larry ; Cherepy, Nerine J. ; Sturm, Benjamin ; Dazeley, Steven ; Bizarri, Gregory ; Choong, Woon-Seng
Author_Institution
Lawrence Livermore Nat. Lab. (LLNL), Livermore, CA, USA
Volume
58
Issue
6
fYear
2011
Firstpage
3392
Lastpage
3402
Abstract
We report measurements of electron response of scintillators, including data on 29 halides, oxides, organics, and fluorides. We model the data based on combining the theories of: Onsager, to account for formation of excitons and excited activators; Birks, to allow for exciton-exciton annihilation; Bethe-Bloch, to relate electron stopping to its energy; and Landau, to describe how fluctuations in the linear energy deposited (dE/dx) lead to nonproportionality´s contribution to resolution. In general there is satisfactory agreement with experiment, in terms of fitting the electron response data and reproducing the literature values of resolution. We find that the electron response curve shapes are more affected by the host lattice than by the activator or its concentration.
Keywords
scintillation counters; electron measurements; electron response data; electron stopping; excited activators; exciton formation; exciton-exciton annihilation; fluoride measurement; halide measurement; host lattice; nonproportionality contribution; organic measurement; oxide measurement; scintillator detector nonproportionality; Energy resolution; Excitons; Ionization; Mathematical model; Radiation detectors; Scintillation counters; Nonproportionality; radiation detector; scintillators;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/TNS.2011.2167687
Filename
6043891
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