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Timepix3 as solid-state time-projection chamber in particle and nuclear physics
Timepix3 devices are hybrid pixel detectors developed within the Medipix3 collaboration at CERN providing a simultaneous measurement of energy (ToT) and time of arrival (ToA) in each of its 256$\times$256 pixels (pixel pitch: 55 µm). The timestamp resolution below 2 ns allows a measurement of charge...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
SISSA
2021
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.22323/1.390.0720 http://cds.cern.ch/record/2784918 |
_version_ | 1780972114065489920 |
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author | Bergmann, Benedikt Acharya, Bobby Alexandre, Jean Beneš, Petr Bevan, Adrian Billoud, Thomas Branzas, Horea Burian, Petr Campbell, Michael Cecchini, Stefano Cho, Y M de Montigny, Marc De Roeck, Albert Ellis, John R El Sawy, Mai M H Fairbairn, Malcolm Felea, Daniel Frank, Mariana Garvey, Declan Hays, Jonathan Hirt, Ann M Janecek, Josef Kalliokoski, Matti Korzenev, Alexander Lacarrère, Daniel H Leroy, Claude Levi, Guiseppe Lionti, Anthony Manek, Petr Maulik, Atanu Margiotta, Ann Mauri, Nicoletta Mavromatos, Nikos Meduna, Lukas Mermod, Philippe Millward, Lewis Mitsou, Vasiliki A Ostrovskiy, Igor Ouimet, Pierre-Philippe Papavassiliou, Joannis Parker, Becky Patrizii, Laura Pavalas, Gabriela Pinfold, James Popa, Lucia A Popa, Vlad Pozzato, Michele Pospisil, Stanislav Rajantie, Arttu Ruiz de Austri, Roberto Sahnoun, Zouleikha Sakellariadou, Mairi Santra, Arka Sarkar, Sarben Semenoff, Gordon W Shaa, Ameir Sirri, Gabriele Sliwa, Krzysztof Smolyanskiy, Petr Soluk, Richard Spurio, Maurizio Staelens, Michael Suk, Michal Tenti, Matteo Togo, Vincent Tuszynski, Jack A Upreti, Aditya Vento, Vicente Vives García, Oscar M Wall, Andie White, Eoghan |
author_facet | Bergmann, Benedikt Acharya, Bobby Alexandre, Jean Beneš, Petr Bevan, Adrian Billoud, Thomas Branzas, Horea Burian, Petr Campbell, Michael Cecchini, Stefano Cho, Y M de Montigny, Marc De Roeck, Albert Ellis, John R El Sawy, Mai M H Fairbairn, Malcolm Felea, Daniel Frank, Mariana Garvey, Declan Hays, Jonathan Hirt, Ann M Janecek, Josef Kalliokoski, Matti Korzenev, Alexander Lacarrère, Daniel H Leroy, Claude Levi, Guiseppe Lionti, Anthony Manek, Petr Maulik, Atanu Margiotta, Ann Mauri, Nicoletta Mavromatos, Nikos Meduna, Lukas Mermod, Philippe Millward, Lewis Mitsou, Vasiliki A Ostrovskiy, Igor Ouimet, Pierre-Philippe Papavassiliou, Joannis Parker, Becky Patrizii, Laura Pavalas, Gabriela Pinfold, James Popa, Lucia A Popa, Vlad Pozzato, Michele Pospisil, Stanislav Rajantie, Arttu Ruiz de Austri, Roberto Sahnoun, Zouleikha Sakellariadou, Mairi Santra, Arka Sarkar, Sarben Semenoff, Gordon W Shaa, Ameir Sirri, Gabriele Sliwa, Krzysztof Smolyanskiy, Petr Soluk, Richard Spurio, Maurizio Staelens, Michael Suk, Michal Tenti, Matteo Togo, Vincent Tuszynski, Jack A Upreti, Aditya Vento, Vicente Vives García, Oscar M Wall, Andie White, Eoghan |
author_sort | Bergmann, Benedikt |
collection | CERN |
description | Timepix3 devices are hybrid pixel detectors developed within the Medipix3 collaboration at CERN providing a simultaneous measurement of energy (ToT) and time of arrival (ToA) in each of its 256$\times$256 pixels (pixel pitch: 55 µm). The timestamp resolution below 2 ns allows a measurement of charge carrier drift times, so that particle trajectories can be reconstructed in 3D on a microscopic level ($z$-resolution: 30-60 µm). The 3D trajectory reconstruction methodology developed elsewhere is validated against simulated data providing ground truth information of the incident angles. The detector response functions and the achievable track angular resolutions are determined. For the first time, data taken with Timepix3 in the MoEDAL experiment are presented. After extracting singly charged minimum ionizing particle (MIP) tracks from the mixed radiation field using characteristic track features, their impact angles are evaluated. The directionality of the MIP radiation field is shown in elevation angle ($\theta$) versus azimuthal angle ($\phi$) maps, "unfolded" using the simulated detector responses to an omnidirectional radiation field. |
id | cern-2784918 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2021 |
publisher | SISSA |
record_format | invenio |
spelling | cern-27849182021-12-02T15:31:24Zdoi:10.22323/1.390.0720http://cds.cern.ch/record/2784918engBergmann, BenediktAcharya, BobbyAlexandre, JeanBeneš, PetrBevan, AdrianBilloud, ThomasBranzas, HoreaBurian, PetrCampbell, MichaelCecchini, StefanoCho, Y Mde Montigny, MarcDe Roeck, AlbertEllis, John REl Sawy, Mai M HFairbairn, MalcolmFelea, DanielFrank, MarianaGarvey, DeclanHays, JonathanHirt, Ann MJanecek, JosefKalliokoski, MattiKorzenev, AlexanderLacarrère, Daniel HLeroy, ClaudeLevi, GuiseppeLionti, AnthonyManek, PetrMaulik, AtanuMargiotta, AnnMauri, NicolettaMavromatos, NikosMeduna, LukasMermod, PhilippeMillward, LewisMitsou, Vasiliki AOstrovskiy, IgorOuimet, Pierre-PhilippePapavassiliou, JoannisParker, BeckyPatrizii, LauraPavalas, GabrielaPinfold, JamesPopa, Lucia APopa, VladPozzato, MichelePospisil, StanislavRajantie, ArttuRuiz de Austri, RobertoSahnoun, ZouleikhaSakellariadou, MairiSantra, ArkaSarkar, SarbenSemenoff, Gordon WShaa, AmeirSirri, GabrieleSliwa, KrzysztofSmolyanskiy, PetrSoluk, RichardSpurio, MaurizioStaelens, MichaelSuk, MichalTenti, MatteoTogo, VincentTuszynski, Jack AUpreti, AdityaVento, VicenteVives García, Oscar MWall, AndieWhite, EoghanTimepix3 as solid-state time-projection chamber in particle and nuclear physicsDetectors and Experimental TechniquesTimepix3 devices are hybrid pixel detectors developed within the Medipix3 collaboration at CERN providing a simultaneous measurement of energy (ToT) and time of arrival (ToA) in each of its 256$\times$256 pixels (pixel pitch: 55 µm). The timestamp resolution below 2 ns allows a measurement of charge carrier drift times, so that particle trajectories can be reconstructed in 3D on a microscopic level ($z$-resolution: 30-60 µm). The 3D trajectory reconstruction methodology developed elsewhere is validated against simulated data providing ground truth information of the incident angles. The detector response functions and the achievable track angular resolutions are determined. For the first time, data taken with Timepix3 in the MoEDAL experiment are presented. After extracting singly charged minimum ionizing particle (MIP) tracks from the mixed radiation field using characteristic track features, their impact angles are evaluated. The directionality of the MIP radiation field is shown in elevation angle ($\theta$) versus azimuthal angle ($\phi$) maps, "unfolded" using the simulated detector responses to an omnidirectional radiation field.SISSAoai:cds.cern.ch:27849182021 |
spellingShingle | Detectors and Experimental Techniques Bergmann, Benedikt Acharya, Bobby Alexandre, Jean Beneš, Petr Bevan, Adrian Billoud, Thomas Branzas, Horea Burian, Petr Campbell, Michael Cecchini, Stefano Cho, Y M de Montigny, Marc De Roeck, Albert Ellis, John R El Sawy, Mai M H Fairbairn, Malcolm Felea, Daniel Frank, Mariana Garvey, Declan Hays, Jonathan Hirt, Ann M Janecek, Josef Kalliokoski, Matti Korzenev, Alexander Lacarrère, Daniel H Leroy, Claude Levi, Guiseppe Lionti, Anthony Manek, Petr Maulik, Atanu Margiotta, Ann Mauri, Nicoletta Mavromatos, Nikos Meduna, Lukas Mermod, Philippe Millward, Lewis Mitsou, Vasiliki A Ostrovskiy, Igor Ouimet, Pierre-Philippe Papavassiliou, Joannis Parker, Becky Patrizii, Laura Pavalas, Gabriela Pinfold, James Popa, Lucia A Popa, Vlad Pozzato, Michele Pospisil, Stanislav Rajantie, Arttu Ruiz de Austri, Roberto Sahnoun, Zouleikha Sakellariadou, Mairi Santra, Arka Sarkar, Sarben Semenoff, Gordon W Shaa, Ameir Sirri, Gabriele Sliwa, Krzysztof Smolyanskiy, Petr Soluk, Richard Spurio, Maurizio Staelens, Michael Suk, Michal Tenti, Matteo Togo, Vincent Tuszynski, Jack A Upreti, Aditya Vento, Vicente Vives García, Oscar M Wall, Andie White, Eoghan Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title | Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title_full | Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title_fullStr | Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title_full_unstemmed | Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title_short | Timepix3 as solid-state time-projection chamber in particle and nuclear physics |
title_sort | timepix3 as solid-state time-projection chamber in particle and nuclear physics |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.22323/1.390.0720 http://cds.cern.ch/record/2784918 |
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