Title :
Geant4-GATE Simulation of a Large Plastic Scintillator for Muon Radiography
Author :
Aguiar, P. ; Casarejos, E. ; Silva-Rodriguez, J. ; Vilan, J.A. ; Iglesias, A.
Author_Institution :
Fundacion Ramon Dominguez, Complexo Hospitalario Univ. de Santiago de Compostela, Santiago de Compostela, Spain
Abstract :
Envisaging the possibility of using large-area plastic scintillator slabs as robust detectors for high spatial resolution muon radiography, and prior to prototype development, we study expected basic performance by Monte Carlo simulation. We present preliminary results for a scalable square footprint detector unit of ~ 1 m2, defining a representative simulation model volume of 50 cm ×50 cm, with reflective surfaces and a light readout by direct coupling of 4 small PMTs (in a square arrangement) at one face of the scintillator slab. Light detection efficiency is calculated for several light collection configurations, considering different values of surface roughness, reflectivity, optical coupling index and scintillator thickness. Values maximizing photon detection have been identified. The light response function of 2.5-3.5 cm diameter PMTs for the proposed configuration has been determined. A detector intrinsic spatial resolution of the order of 1 cm is estimated for muon interactions at the center region of the detector module, using a simple centroid positioning algorithm (Anger logic).
Keywords :
Monte Carlo methods; radiography; solid scintillation detectors; Anger logic; Geant4-GATE simulation; Monte Carlo simulation; PMT; centroid positioning algorithm; high-spatial resolution muon radiography; large-area plastic scintillator slabs; light collection configurations; light detection efficiency; light response function; optical coupling index; photon detection; scintillator thickness; Detectors; Mesons; Photonics; Rough surfaces; Slabs; Spatial resolution; Surface roughness; Cosmic rays; GATE; Geant4; homeland security; muon radiography; muons;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2015.2431297