Simulations of gamma quanta scattering in a single module of the J-PET detector
arXiv:1312.0250 · doi:10.1515/bams-2013-0107
Abstract
This article describes simulations of scattering of annihilation gamma quanta in a strip of plastic scintillator. Such strips constitute basic detection modules in a newly proposed Positron Emission Tomography which utilizes plastic scintillators instead of inorganic crystals. An algorithm simulating chain of Compton scatterings was elaborated and series of simulations have been conducted for the scintillator strip with the cross section of 5 mm x 19 mm. Obtained results indicate that secondary interactions occur only in the case of about 8% of events and out of them only 25 take place in the distance larger than 0.5 cm from the primary interaction. It was also established that light signals produced at primary and secondary interactions overlap with the delay which distribution is characterized by FWHM of about 40 ps.
Submitted to Bio-Algorithms and Med-Systems (14 pages, 9 figures)
Cited by in corpus (5)
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- Witnessing Entanglement In Compton Scattering Processes Via Mutually Unbiased Bases
- Calculation of time resolution of the J-PET tomograph using the Kernel Density Estimation