The Monte-Carlo refractive index matching technique for determining the input parameters for simulation of the light collection in scintillating crystals
Author:
Publisher
Elsevier BV
Subject
Instrumentation,Nuclear and High Energy Physics
Reference26 articles.
1. CMS Collaboration, CMS Technical Proposal, CERN/LHCC 97-33, unpublished.
2. New inorganic scintillation materials development for medical imaging
3. Cryogenic scintillators in searches for extremely rare events
4. Simulation of light collection in scintillators with rough surfaces
5. Effect of geometrical modifications and crystal defects on light collection in ideal rectangular parallelepipedic BGO scintillators
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2. Light collection simulation when determining light yield of single crystal and polycrystalline organic scintillators;Functional materials;2015-10-01
3. Optimization of light collection from crystal scintillators for cryogenic experiments;Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment;2014-04
4. Time of flight positron emission tomography towards 100ps resolution with L(Y)SO: an experimental and theoretical analysis;Journal of Instrumentation;2013-07-29
5. Application of the Monte-Carlo refractive index matching (MCRIM) technique to the determination of the absolute light yield of a calcium molybdate scintillator;Journal of Instrumentation;2013-06-06
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