DocumentCode
1349244
Title
The electroluminescence of Xe-Ne gas mixtures: a Monte Carlo simulation study
Author
Santos, F.P. ; Dias, T.H.V.T. ; Rachinhas, P.J.B.M. ; Stauffer, A.D. ; Conde, C.A.N.
Author_Institution
Dept. de Fisica, Coimbra Univ., Portugal
Volume
45
Issue
2
fYear
1998
fDate
4/1/1998 12:00:00 AM
Firstpage
176
Lastpage
185
Abstract
We have performed a Monte Carlo simulation of the drift of electrons through a mixture of gaseous xenon with the lighter noble gas neon at a total pressure of 1 atm. The electroluminescence characteristics and other transport parameters are investigated as a function of the reduced electric field and composition of the mixture. For Xe-Ne mixtures with 5, 10, 20, 40, 70, 90, and 100% of Xe, we present results for electroluminescence yield and excitation efficiency, average electron energy, electron drift velocity, reduced mobility, reduced diffusion coefficients, and characteristic energies over a range of reduced electric fields which exclude electron multiplication. For the 5% Xe mixture, we also assess the influence of electron multiplication on the electroluminescence yield. The present study of Xe-Ne mixtures was motivated by an interest in using them as a filling for gas proportional scintillation counters in low-energy X-ray applications. In this energy range, the X rays will penetrate further into the detector due to the presence of Ne, and this will lead to an improvement in the collection of primary electrons originating near the detector window and may represent an advantage over the use of pure Xe
Keywords
Monte Carlo methods; X-ray detection; electroluminescence; gas mixtures; gas scintillation detectors; neon; proportional counters; xenon; Monte Carlo simulation; Xe-Ne; Xe-Ne gas mixtures; electroluminescence; electron drift velocity; gas proportional scintillation counters; low-energy X-ray applications; reduced electric field; Atomic measurements; Electroluminescence; Electron mobility; Energy resolution; Fluctuations; Ionization; Physics; Solid scintillation detectors; X-ray detection; X-ray detectors;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.664169
Filename
664169
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