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Simulation and Measurement of Quenching and Channeling Effects in CsI(Tl) for Dark Matter Search

Authors :
J. H. Lee
H. Bhang
J. H. Choi
W. G. Kang
B. H. Kim
H. J. Kim
K. W. Kim
S. C. Kim
S. K. Kim
Y. D. Kim
J. I. Lee
J. K. Lee
M. J. Lee
S. J. Lee
J. Li
X. R. Li
Y. J. Li
S. S. Myung
S. L. Olsen
S. Ryu
I. S. Seong
J. H. So
Q. Yue
Source :
IEEE Transactions on Nuclear Science. 59:2346-2353
Publication Year :
2012
Publisher :
Institute of Electrical and Electronics Engineers (IEEE), 2012.

Abstract

In order to understand the scintillation characteristics of nuclear recoil events in CsI(Tl) crystals and for application to the analysis of Dark Matter (DM) searches, we study quenching and channeling effects with simulations of recoil ion motion in CsI(Tl) and experiments using neutrons impinging on the crystal. The electronic energy loss versus penetration depth of recoil ions in a CsI(Tl) target are simulated by the SRIM and MARLOWE programs and modified by the application of a measured scintillation efficiency function. They are used to produce quenching factors as a function of recoil energy. The application of the MARLOWE code to a monocrystalline target yields a light yield distribution including tails which are correlated with ions' enhanced ranges. The 2.4 MeV pulsed neutrons impinging on a monocrystalline CsI(Tl) target and an array of neutron detectors located at different scattering angles are used to measure the light yield distribution and the status of the measurement is reported.

Details

ISSN :
15581578 and 00189499
Volume :
59
Database :
OpenAIRE
Journal :
IEEE Transactions on Nuclear Science
Accession number :
edsair.doi...........7e8825e247761d764d2cdda8d69d4bd7
Full Text :
https://doi.org/10.1109/tns.2012.2189019