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Measurement of α-particle quenching in LAB based scintillator in independent small-scale experiments

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  • B. von Krosigk
  • M. Chen
  • S. Hans
  • A. R. Junghans
  • T. Kögler
  • C. Kraus
  • L. Kuckert
  • X Liu
  • R. Nolte
  • Helen Mary O'Keeffe
  • H. Wan Chan Tseung
  • J. R. Wilson
  • A. Wright
  • M. Yeh
  • K. Zuber
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Article number109
<mark>Journal publication date</mark>03/2016
<mark>Journal</mark>European Physical Journal C: Particles and Fields
Issue number3
Volume76
Number of pages13
Publication StatusPublished
<mark>Original language</mark>English

Abstract

The α-particle light response of liquid scintillators based on linear alkylbenzene (LAB) has been measured with three different experimental approaches. In the first approach, α-particles were produced in the scintillator via 12C(n,α)9Be reactions. In the second approach, the scintillator was loaded with 2 % of natSm providing an α-emitter, 147Sm, as an internal source. In the third approach, a scintillator flask was deployed into the water-filled SNO+ detector and the radioactive contaminants 222Rn, 218Po and 214Po provided the α-particle signal. The behavior of the observed α-particle light outputs are in agreement with each case successfully described by Birks’ law. The resulting Birks parameter kB ranges from (0.0066±0.0016) to (0.0076±0.0003) cm/MeV. In the first approach, the α-particle light response was measured simultaneously with the light response of recoil protons produced via neutron–proton elastic scattering. This enabled a first time a direct comparison of kB describing the proton and the α-particle response of LAB based scintillator. The observed kB values describing the two light response functions deviate by more than 5σ. The presented results are valuable for all current and future detectors, using LAB based scintillator as target, since they depend on an accurate knowledge of the scintillator response to different particles.