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Article Dans Une Revue Nucl.Instrum.Meth.A Année : 2020

Neutron-$\gamma$ discrimination with organic scintillators: Intrinsic pulse shape and light yield contributions

Résumé

A comparative study of the neutron- γ Pulse Shape Discrimination (PSD) with seven organic scintillators is performed using an identical setup and digital electronics. The scintillators include plastics (EJ-299-33 and a plastic prototype), single crystals (stilbene and the recent doped p -terphenyl) and liquids (BC501A, NE213 and the deuterated liquid BC537). First, the overall PSD performance of the different scintillators is compared and threshold neutron energies for a given discrimination quality are determined. Then, using statistical arguments, two intrinsic contributions to the PSD capability of the scintillating materials are disentangled: the light yield and the specific pulse shapes induced by neutrons and γ -rays. This separation provides additional insight into the behaviour of organic scintillators and allows a detailed comparison of the discrimination performance of the various materials. On the basis of this analysis, limitations of current organic scintillators and of recently proposed alternative scintillators are discussed.
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Dates et versions

hal-02739941 , version 1 (07-10-2021)

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Citer

M. Sénoville, F. Delaunay, M. Pârlog, N.L. Achouri, N.A. Orr. Neutron-$\gamma$ discrimination with organic scintillators: Intrinsic pulse shape and light yield contributions. Nucl.Instrum.Meth.A, 2020, 971, pp.164080. ⟨10.1016/j.nima.2020.164080⟩. ⟨hal-02739941⟩
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