arXiv · 1801.03620
Response of gadolinium doped liquid scintillator to charged particles: measurement based on intrinsic U/Th contamination
Abstract
A measurement is reported for the response to charged particles of a liquid scintillator named EJ-335 doped with 0.5% gadolinium by weight. This liquid scintillator was used as the detection medium in a neutron detector. The measurement is based on the in-situ $α$-particles from the intrinsic Uranium and Thorium contamination in the scintillator. The $β$-$α$ and the $α$-$α$ cascade decays from the U/Th decay chains were used to select $α$-particles. The contamination levels of U/Th were consequently measured to be $(5.54\pm0.15)\times 10^{-11}$ g/g, $(1.45\pm0.01)\times 10^{-10}$ g/g and $(1.07\pm0.01)\times 10^{-11}$ g/g for $^{232}$Th, $^{238}$U and $^{235}$U, respectively, assuming secular equilibrium. The stopping power of $α$-particles in the liquid scintillator was simulated by the TRIM software. Then the Birks constant, $kB$, of the scintillator for $α$-particles was determined to be $(7.28\pm0.23)$ mg/(cm$^{2}\cdot$MeV) by Birks' formulation. The response for protons is also presented assuming the $kB$ constant is the same as for $α$-particles.
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Qiang Du, Shin-Ted Lin, Han-Tao He, Shu-Kui Liu, Chang-Jian Tang, Li Wang, Henry T. Wong, Hao-Yang Xing, Qian Yue, Jing-Jun Zhu. 2018-03-06. Response of gadolinium doped liquid scintillator to charged particles: measurement based on intrinsic U/Th contamination. https://doi.org/10.1088/1748-0221%2F13%2F04%2Fp04001
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