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Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy
Quality Assurance (QA) in hadron therapy is crucial to ensure safe and accurate dose delivery to patients. This can be achieved with fast, reliable and high-resolution detectors. In this paper, we present a novel solution that combines a triple Gas Electron Multiplier (GEM) and a highly pixelated re...
Autores principales: | , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2021
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.3390/app11146459 http://cds.cern.ch/record/2778810 |
_version_ | 1780971765851226112 |
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author | Oliveira, Andreia Maia Akkerman, Hylke B Braccini, Saverio van Breemen, Albert J J M Manzano, Lucia Gallego Heracleous, Natalie Katsouras, Ilias Leidner, Johannes Murtas, Fabrizio Peeters, Bart Silari, Marco |
author_facet | Oliveira, Andreia Maia Akkerman, Hylke B Braccini, Saverio van Breemen, Albert J J M Manzano, Lucia Gallego Heracleous, Natalie Katsouras, Ilias Leidner, Johannes Murtas, Fabrizio Peeters, Bart Silari, Marco |
author_sort | Oliveira, Andreia Maia |
collection | CERN |
description | Quality Assurance (QA) in hadron therapy is crucial to ensure safe and accurate dose delivery to patients. This can be achieved with fast, reliable and high-resolution detectors. In this paper, we present a novel solution that combines a triple Gas Electron Multiplier (GEM) and a highly pixelated readout based on a matrix of organic photodiodes fabricated on top of an oxide-based thin-film transistor backplane. The first LaGEMPix prototype with an active area of 60 × 80 mm$^2$ was developed and characterized using low energy X-rays. The detector comprises a drift gap of 3.5 mm, a triple-GEM stack for electron amplification, and a readout featuring 480 × 640 pixels at a 126 µm pitch. Here, we describe the measurements and results in terms of spatial resolution for various experimental configurations. A comparison with GAFCHROMIC® films and the GEMPix detector used in the charge readout mode was performed to better understand the contribution to the spatial resolution from both the electron diffusion and the isotropic emission of photons. The measurements were compared to Monte Carlo simulations, using the FLUKA code. The simulation predictions are in good agreement with the GEMPix results. Future plans with respect to applications in hadron therapy are discussed. |
id | cern-2778810 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
record_format | invenio |
spelling | cern-27788102021-08-19T18:30:39Zdoi:10.3390/app11146459http://cds.cern.ch/record/2778810engOliveira, Andreia MaiaAkkerman, Hylke BBraccini, Saveriovan Breemen, Albert J J MManzano, Lucia GallegoHeracleous, NatalieKatsouras, IliasLeidner, JohannesMurtas, FabrizioPeeters, BartSilari, MarcoCharacterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron TherapyDetectors and Experimental TechniquesQuality Assurance (QA) in hadron therapy is crucial to ensure safe and accurate dose delivery to patients. This can be achieved with fast, reliable and high-resolution detectors. In this paper, we present a novel solution that combines a triple Gas Electron Multiplier (GEM) and a highly pixelated readout based on a matrix of organic photodiodes fabricated on top of an oxide-based thin-film transistor backplane. The first LaGEMPix prototype with an active area of 60 × 80 mm$^2$ was developed and characterized using low energy X-rays. The detector comprises a drift gap of 3.5 mm, a triple-GEM stack for electron amplification, and a readout featuring 480 × 640 pixels at a 126 µm pitch. Here, we describe the measurements and results in terms of spatial resolution for various experimental configurations. A comparison with GAFCHROMIC® films and the GEMPix detector used in the charge readout mode was performed to better understand the contribution to the spatial resolution from both the electron diffusion and the isotropic emission of photons. The measurements were compared to Monte Carlo simulations, using the FLUKA code. The simulation predictions are in good agreement with the GEMPix results. Future plans with respect to applications in hadron therapy are discussed.oai:cds.cern.ch:27788102021 |
spellingShingle | Detectors and Experimental Techniques Oliveira, Andreia Maia Akkerman, Hylke B Braccini, Saverio van Breemen, Albert J J M Manzano, Lucia Gallego Heracleous, Natalie Katsouras, Ilias Leidner, Johannes Murtas, Fabrizio Peeters, Bart Silari, Marco Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title | Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title_full | Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title_fullStr | Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title_full_unstemmed | Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title_short | Characterization with X-rays of a Large-Area GEMPix Detector with Optical Readout for QA in Hadron Therapy |
title_sort | characterization with x-rays of a large-area gempix detector with optical readout for qa in hadron therapy |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.3390/app11146459 http://cds.cern.ch/record/2778810 |
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