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The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN
The Gigatracker is the NA62 beam tracker. It is made of three 63.1mm x 29.3mm stations of 300μm x 300μm hybrid silicon pixel detectors installed in vacuum ( ∼10$^{-6} mbar$ ). The beam particles, flowing at 750 $M H z$ , are traced in 4-dimensions by mean of time-stamping pixels with a design resolu...
Autores principales: | , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
Elsevier
2020
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.1016/j.nima.2019.04.081 http://cds.cern.ch/record/2713275 |
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author | Federici, L Aglieri Rinella, G Alvarez Feito, D Arcidiacono, R Biino, C Bonacini, S Ceccucci, A Chiozzi, S Cortina Gil, E Cotta Ramusino, A Degrange, J Fiorini, M Gamberini, E Gianoli, A Kaplon, J Kleimenova, A Kluge, A Mapelli, A Marchetto, F Migliore, E Minucci, E Morel, M Noël, J Noy, M Perktold, L Perrin-Terrin, M Petagna, P Petrucci, F Poltorak, K Romagnoli, G Ruggiero, G Velghe, B Wahl, H |
author_facet | Federici, L Aglieri Rinella, G Alvarez Feito, D Arcidiacono, R Biino, C Bonacini, S Ceccucci, A Chiozzi, S Cortina Gil, E Cotta Ramusino, A Degrange, J Fiorini, M Gamberini, E Gianoli, A Kaplon, J Kleimenova, A Kluge, A Mapelli, A Marchetto, F Migliore, E Minucci, E Morel, M Noël, J Noy, M Perktold, L Perrin-Terrin, M Petagna, P Petrucci, F Poltorak, K Romagnoli, G Ruggiero, G Velghe, B Wahl, H |
author_sort | Federici, L |
collection | CERN |
description | The Gigatracker is the NA62 beam tracker. It is made of three 63.1mm x 29.3mm stations of 300μm x 300μm hybrid silicon pixel detectors installed in vacuum ( ∼10$^{-6} mbar$ ). The beam particles, flowing at 750 $M H z$ , are traced in 4-dimensions by mean of time-stamping pixels with a design resolution of 200ps . This performance has to be maintained despite the beam irradiation amounting to a yearly fluence of 2×10$^{14}$ 1MeV n$_{eq}$∕cm$^2$ . The detector material minimization is paramount, as the detector faces the full beam. The station material budget is reduced to 0.5% X$_0$ by using (HEP world first) micro-channels cooling. We will describe the detector design and performances during the NA62 runs. |
id | oai-inspirehep.net-1782765 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2020 |
publisher | Elsevier |
record_format | invenio |
spelling | oai-inspirehep.net-17827652020-03-26T20:35:28Zdoi:10.1016/j.nima.2019.04.081http://cds.cern.ch/record/2713275engFederici, LAglieri Rinella, GAlvarez Feito, DArcidiacono, RBiino, CBonacini, SCeccucci, AChiozzi, SCortina Gil, ECotta Ramusino, ADegrange, JFiorini, MGamberini, EGianoli, AKaplon, JKleimenova, AKluge, AMapelli, AMarchetto, FMigliore, EMinucci, EMorel, MNoël, JNoy, MPerktold, LPerrin-Terrin, MPetagna, PPetrucci, FPoltorak, KRomagnoli, GRuggiero, GVelghe, BWahl, HThe Gigatracker, the silicon beam tracker for the NA62 experiment at CERNDetectors and Experimental TechniquesThe Gigatracker is the NA62 beam tracker. It is made of three 63.1mm x 29.3mm stations of 300μm x 300μm hybrid silicon pixel detectors installed in vacuum ( ∼10$^{-6} mbar$ ). The beam particles, flowing at 750 $M H z$ , are traced in 4-dimensions by mean of time-stamping pixels with a design resolution of 200ps . This performance has to be maintained despite the beam irradiation amounting to a yearly fluence of 2×10$^{14}$ 1MeV n$_{eq}$∕cm$^2$ . The detector material minimization is paramount, as the detector faces the full beam. The station material budget is reduced to 0.5% X$_0$ by using (HEP world first) micro-channels cooling. We will describe the detector design and performances during the NA62 runs.Elsevieroai:inspirehep.net:17827652020 |
spellingShingle | Detectors and Experimental Techniques Federici, L Aglieri Rinella, G Alvarez Feito, D Arcidiacono, R Biino, C Bonacini, S Ceccucci, A Chiozzi, S Cortina Gil, E Cotta Ramusino, A Degrange, J Fiorini, M Gamberini, E Gianoli, A Kaplon, J Kleimenova, A Kluge, A Mapelli, A Marchetto, F Migliore, E Minucci, E Morel, M Noël, J Noy, M Perktold, L Perrin-Terrin, M Petagna, P Petrucci, F Poltorak, K Romagnoli, G Ruggiero, G Velghe, B Wahl, H The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title | The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title_full | The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title_fullStr | The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title_full_unstemmed | The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title_short | The Gigatracker, the silicon beam tracker for the NA62 experiment at CERN |
title_sort | gigatracker, the silicon beam tracker for the na62 experiment at cern |
topic | Detectors and Experimental Techniques |
url | https://dx.doi.org/10.1016/j.nima.2019.04.081 http://cds.cern.ch/record/2713275 |
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