Simulation of the response of the Solid State Neutron Detector for the European Spallation Source
/ Authors
L. Boyd, E. Rofors, J. Annand, K. Fissum, R. Hall-Wilton, R. Al Jebali, K. Kanaki, K. Livingston, V. Maulerová, N. Mauritzson
and 3 more authors
/ Abstract
The characteristics of the Solid-state Neutron Detector, under development for neutron-scattering measurements at the European Spallation Source, have been simulated with a Geant4-based computer code. The code models the interations of thermal neutrons and ionising radiation in the 6Li-doped scintillating glass of the detector, the production of scintillation light and the transport of optical, scintillation photons through the the scintillator, en route to the photo-cathode of the attached multi-anode photomultiplier. Factors which affect the optical-photon transport, such as surface finish, pixelation of the glass sheet, provision of a front reflector and optical coupling media are compared. Predictions of the detector response are compared with measurements made with neutron and gamma-ray sources, a collimated alpha source and finely collimated beams of 2.5 MeV protons and deuterons.
Journal: arXiv: Instrumentation and Detectors