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author Akiba, Kazu
van Beuzekom, Martin
Boterenbrood, Henk
Buchanan, Emma
Buytaert, Jan
Byczynski, Wiktor
Cid Vidal, Xabier
Collins, Paula
Dall'Occo, Elena
Suárez, Alvaro Dosil
Dumps, Raphael
Evans, Tim
Franco Lima, Vinicius
Gallas Torreira, Abraham
García Pardiñas, Julián
van der Heijden, Bas
Hombach, Christoph
John, Malcolm
Kulis, Szymon
Cudie, Xavi Llopart
Marinho, Franciole
Price, Eugenia
Richards, Sophie
Rodriguez Perez, Pablo
Saunders, Daniel
Schiager Folkestad, Asmund
Schindler, Heinrich
Schreuder, Frans
Snoek, Hella
Tsopelas, Panagiotis
Velthuis, Jaap
Vieites Diaz, Maria
Williams, Mark J.R.
author_facet Akiba, Kazu
van Beuzekom, Martin
Boterenbrood, Henk
Buchanan, Emma
Buytaert, Jan
Byczynski, Wiktor
Cid Vidal, Xabier
Collins, Paula
Dall'Occo, Elena
Suárez, Alvaro Dosil
Dumps, Raphael
Evans, Tim
Franco Lima, Vinicius
Gallas Torreira, Abraham
García Pardiñas, Julián
van der Heijden, Bas
Hombach, Christoph
John, Malcolm
Kulis, Szymon
Cudie, Xavi Llopart
Marinho, Franciole
Price, Eugenia
Richards, Sophie
Rodriguez Perez, Pablo
Saunders, Daniel
Schiager Folkestad, Asmund
Schindler, Heinrich
Schreuder, Frans
Snoek, Hella
Tsopelas, Panagiotis
Velthuis, Jaap
Vieites Diaz, Maria
Williams, Mark J.R.
author_sort Akiba, Kazu
collection CERN
description The LHCb VELO Timepix3 telescope is a silicon pixel tracking system constructed initially to evaluate the performance of LHCb VELO Upgrade prototypes. The telescope consists of eight hybrid pixel silicon sensor planes equipped with the Timepix3 ASIC . The planes provide excellent charge measurement, timestamping and spatial resolution and the system can function at high track rates. This paper describes the construction of the telescope and its data acquisition system and offline reconstruction software. A timing resolution of 350 ps was obtained for reconstructed tracks. A pointing resolution of better than 2\mum was determined for the 180 GeV/c mixed hadron beam at the CERN SPS . The telescope has been shown to operate at a rate of 5 million particles s−1⋅ cm−2 without a loss in efficiency.
id cern-2668670
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
record_format invenio
spelling cern-26686702022-08-30T04:10:15Zdoi:10.1088/1748-0221/14/05/P05026http://cds.cern.ch/record/2668670engAkiba, Kazuvan Beuzekom, MartinBoterenbrood, HenkBuchanan, EmmaBuytaert, JanByczynski, WiktorCid Vidal, XabierCollins, PaulaDall'Occo, ElenaSuárez, Alvaro DosilDumps, RaphaelEvans, TimFranco Lima, ViniciusGallas Torreira, AbrahamGarcía Pardiñas, Juliánvan der Heijden, BasHombach, ChristophJohn, MalcolmKulis, SzymonCudie, Xavi LlopartMarinho, FranciolePrice, EugeniaRichards, SophieRodriguez Perez, PabloSaunders, DanielSchiager Folkestad, AsmundSchindler, HeinrichSchreuder, FransSnoek, HellaTsopelas, PanagiotisVelthuis, JaapVieites Diaz, MariaWilliams, Mark J.R.LHCb VELO Timepix3 Telescopephysics.ins-detDetectors and Experimental TechniquesThe LHCb VELO Timepix3 telescope is a silicon pixel tracking system constructed initially to evaluate the performance of LHCb VELO Upgrade prototypes. The telescope consists of eight hybrid pixel silicon sensor planes equipped with the Timepix3 ASIC . The planes provide excellent charge measurement, timestamping and spatial resolution and the system can function at high track rates. This paper describes the construction of the telescope and its data acquisition system and offline reconstruction software. A timing resolution of 350 ps was obtained for reconstructed tracks. A pointing resolution of better than 2\mum was determined for the 180 GeV/c mixed hadron beam at the CERN SPS . The telescope has been shown to operate at a rate of 5 million particles s−1⋅ cm−2 without a loss in efficiency.The LHCb VELO Timepix3 telescope is a silicon pixel tracking system constructed initially to evaluate the performance of LHCb VELO Upgrade prototypes. The telesope consists of eight hybrid pixel silicon sensor planes equipped with the Timepix3 ASIC. The planes provide excellent charge measurement, timestamping and spatial resolution and the system can function at high track rates. This paper describes the construction of the telescope and its data acquisition system and offline reconstruction software. A timing resolution of 350~ps was obtained for reconstructed tracks. A pointing resolution of better than 2~\mum was determined for the 180~GeV/c %\gevc mixed hadron beam at the CERN SPS. The telescope has been shown to operate at a rate of 5 million particles~\unit{s^{-1}\cdot cm^{-2}} without a loss in efficiency.arXiv:1902.09755oai:cds.cern.ch:26686702019-02-26
spellingShingle physics.ins-det
Detectors and Experimental Techniques
Akiba, Kazu
van Beuzekom, Martin
Boterenbrood, Henk
Buchanan, Emma
Buytaert, Jan
Byczynski, Wiktor
Cid Vidal, Xabier
Collins, Paula
Dall'Occo, Elena
Suárez, Alvaro Dosil
Dumps, Raphael
Evans, Tim
Franco Lima, Vinicius
Gallas Torreira, Abraham
García Pardiñas, Julián
van der Heijden, Bas
Hombach, Christoph
John, Malcolm
Kulis, Szymon
Cudie, Xavi Llopart
Marinho, Franciole
Price, Eugenia
Richards, Sophie
Rodriguez Perez, Pablo
Saunders, Daniel
Schiager Folkestad, Asmund
Schindler, Heinrich
Schreuder, Frans
Snoek, Hella
Tsopelas, Panagiotis
Velthuis, Jaap
Vieites Diaz, Maria
Williams, Mark J.R.
LHCb VELO Timepix3 Telescope
title LHCb VELO Timepix3 Telescope
title_full LHCb VELO Timepix3 Telescope
title_fullStr LHCb VELO Timepix3 Telescope
title_full_unstemmed LHCb VELO Timepix3 Telescope
title_short LHCb VELO Timepix3 Telescope
title_sort lhcb velo timepix3 telescope
topic physics.ins-det
Detectors and Experimental Techniques
url https://dx.doi.org/10.1088/1748-0221/14/05/P05026
http://cds.cern.ch/record/2668670
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