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Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing

Scintillator detector response modelling has become an essential tool in various research fields such as particle and nuclear physics, astronomy or geophysics. Yet, due to the system complexity and the requirement for accurate electron response measurements, model inference and calibration remains a...

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Detalles Bibliográficos
Autores principales: Breitenmoser, David, Cerutti, Francesco, Butterweck, Gernot, Kasprzak, Malgorzata Magdalena, Mayer, Sabine
Lenguaje:eng
Publicado: 2023
Materias:
Acceso en línea:http://cds.cern.ch/record/2856536
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author Breitenmoser, David
Cerutti, Francesco
Butterweck, Gernot
Kasprzak, Malgorzata Magdalena
Mayer, Sabine
author_facet Breitenmoser, David
Cerutti, Francesco
Butterweck, Gernot
Kasprzak, Malgorzata Magdalena
Mayer, Sabine
author_sort Breitenmoser, David
collection CERN
description Scintillator detector response modelling has become an essential tool in various research fields such as particle and nuclear physics, astronomy or geophysics. Yet, due to the system complexity and the requirement for accurate electron response measurements, model inference and calibration remains a challenge. Here, we propose Compton edge probing to perform non-proportional scintillation model (NPSM) inference for inorganic scintillators. We use laboratory-based gamma-ray radiation measurements with a NaI(Tl) scintillator to perform Bayesian inference on a NPSM. Further, we apply machine learning to emulate the detector response obtained by Monte Carlo simulations. We show that the proposed methodology successfully constrains the NPSM and hereby quantifies the intrinsic resolution. Moreover, using the trained emulators, we can predict the spectral Compton edge dynamics as a function of the parameterized scintillation mechanisms. The presented framework offers a novel way to infer NPSMs for any inorganic scintillator without the need for additional electron response measurements.
id cern-2856536
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2023
record_format invenio
spelling cern-28565362023-08-17T04:00:40Zhttp://cds.cern.ch/record/2856536engBreitenmoser, DavidCerutti, FrancescoButterweck, GernotKasprzak, Malgorzata MagdalenaMayer, SabineEmulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probingphysics.data-anOther Fields of Physicsphysics.comp-phOther Fields of Physicscond-mat.mtrl-sciastro-ph.IMAstrophysics and Astronomyphysics.ins-detDetectors and Experimental TechniquesScintillator detector response modelling has become an essential tool in various research fields such as particle and nuclear physics, astronomy or geophysics. Yet, due to the system complexity and the requirement for accurate electron response measurements, model inference and calibration remains a challenge. Here, we propose Compton edge probing to perform non-proportional scintillation model (NPSM) inference for inorganic scintillators. We use laboratory-based gamma-ray radiation measurements with a NaI(Tl) scintillator to perform Bayesian inference on a NPSM. Further, we apply machine learning to emulate the detector response obtained by Monte Carlo simulations. We show that the proposed methodology successfully constrains the NPSM and hereby quantifies the intrinsic resolution. Moreover, using the trained emulators, we can predict the spectral Compton edge dynamics as a function of the parameterized scintillation mechanisms. The presented framework offers a novel way to infer NPSMs for any inorganic scintillator without the need for additional electron response measurements.arXiv:2302.05641oai:cds.cern.ch:28565362023-02-11
spellingShingle physics.data-an
Other Fields of Physics
physics.comp-ph
Other Fields of Physics
cond-mat.mtrl-sci
astro-ph.IM
Astrophysics and Astronomy
physics.ins-det
Detectors and Experimental Techniques
Breitenmoser, David
Cerutti, Francesco
Butterweck, Gernot
Kasprzak, Malgorzata Magdalena
Mayer, Sabine
Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title_full Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title_fullStr Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title_full_unstemmed Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title_short Emulator-based Bayesian Inference on Non-Proportional Scintillation Models by Compton-Edge Probing
title_sort emulator-based bayesian inference on non-proportional scintillation models by compton-edge probing
topic physics.data-an
Other Fields of Physics
physics.comp-ph
Other Fields of Physics
cond-mat.mtrl-sci
astro-ph.IM
Astrophysics and Astronomy
physics.ins-det
Detectors and Experimental Techniques
url http://cds.cern.ch/record/2856536
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