Hybrid Cerenkov-scintillation detector validation using Monte Carlo simulations
Emilie Jean, Simon Lambert-Girard, Francois Therriault-Proulx, Luc, Beaulieu

TL;DR
This study uses Monte Carlo simulations to validate a hybrid Cerenkov-scintillation detector, assessing its accuracy, limitations, and the impact of electron energy spectra on irradiation angle measurements for potential clinical use.
Contribution
It provides a detailed validation of the detector's performance and limitations through simulations, enhancing understanding of Cerenkov light dependencies and calibration accuracy.
Findings
Simulation results closely match experimental data.
Maximum irradiation angle error was less than 1.12 degrees.
Electron energy spectra influence Cerenkov light intensity and measurement accuracy.
Abstract
Objective: This study aimed at investigating through Monte Carlo simulations the limitations of a novel hybrid Cerenkov-scintillation detector and the associated method for irradiation angle measurements. Approach: Using Monte Carlo simulations, previous experimental irradiations of the hybrid detector with a linear accelerator were replicated to evaluate its general performances and limitations. Cerenkov angular calibration curves and irradiation angle measurements were then compared. Furthermore, the impact of the Cerenkov light energy dependency on the detector accuracy was investigated using the energy spectra of electrons travelling through the detector. Main results: Monte Carlo simulations were found to be in good agreement with experimental values. The irradiation angle absolute mean error was found to be lesser than what was obtained experimentally, with a maximum value of 1.12…
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Taxonomy
TopicsRadiation Dose and Imaging · Advanced Radiotherapy Techniques · Radiation Therapy and Dosimetry
