3.8 Article

Study of Multi-Pixel Scintillator Detector Configurations for Measuring Polarized Gamma Radiation

期刊

CONDENSED MATTER
卷 6, 期 4, 页码 -

出版社

MDPI
DOI: 10.3390/condmat6040043

关键词

gamma-ray polarization; Positron Emission Tomography; quantum entanglement; GAGG

资金

  1. Research Cooperability Program of the Croatian Science Foundation - European Union from the European Social Fund under the Operational Programme Efficient Human Resources [PZS-2019-02-5829]

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This passage discusses the creation of gamma photons with orthogonal polarizations when a positron annihilates, and the use of coincidence measurements for estimating their initial relative polarization orientation. The study utilizes Monte Carlo simulations to model two detector configurations for measuring gamma-ray polarization in PET, with the configuration based on GAGG crystals demonstrating slightly better polarimetric performance than the one based on LYSO crystals.
When a positron annihilates, two gamma photons are created with orthogonal polarizations. It is possible to use coincidence measurements where both photons undergo Compton scattering to estimate their initial relative polarization orientation. This information is of great interest in gamma imaging systems, such as Positron Emission Tomography, where it may be used as an additional tool to distinguish true coincidence events from scatter and random background. The successful utilization of this principle critically depends on the detector's angular and energy resolution, which determine its polarimetric performance. In this study, we use Monte Carlo simulations based on the Geant4 toolkit to model two multi-pixel detector configurations identified as prospective for the measurement of gamma-ray polarization in PET. One is based on 2 mm x 2 mm x 20 mm LYSO scintillators and the other is based on 3 mm x 3 mm x 20 mm GAGG scintillators. Each configuration has a pair of modules, each consisting of 64 crystals set up in a single 8 x 8 matrix, where both the recoil electron and the Compton-scattered photon are absorbed. We simulate positron annihilation by generating two back-to-back gamma photons of 511 keV with orthogonal polarizations. The Compton scattering is successfully identified and the modulation of the azimuthal angle difference is clearly observed. The configuration based on GAGG crystals demonstrates slightly better polarimetric performance than the one based on LYSO crystals, reflected in the more pronounced azimuthal modulation.

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