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dc.date.accessioned2020-06-05T17:55:49Z
dc.date.available2020-06-05T17:55:49Z
dc.date.created2019-11-08T15:06:09Z
dc.date.issued2019
dc.identifier.citationGasik, P. Acharya, Shreyasi Acosta, Fernando T. Adamová, Dagmar Adolfsson, Jonatan Aggarwal, Madan M. Aglieri Rinella, Gianluca Agnello, Michelangelo Agrawal, Neelima Ahammed, Zubayer Alme, Johan Altenkaemper, Lucas Djuvsland, Øystein Ersdal, Magnus Rentsch Fionda, Fiorella Maria Celeste Nystrand, Joakim Rehman, Attiq Ur Røhrich, Dieter Tambave, Ganesh Jagannath Ullaland, Kjetil Wagner, Boris Zhou, Zhuo Arsene, Ionut Cristian Bätzing, Paul Christoph Dordic, Olja Lardeux, Antoine Xavier Lindal, Svein Mahmood, Sohail Musa Malik, Qasim Waheed Richter, Matthias Røed, Ketil Skaali, Toralf Bernhard Tveter, Trine Spedstad Wikne, Jon Christopher Zhao, Chengxin Hetland, Kristin Fanebust Kileng, Bjarte Nesbø, Simon Voigt Storetvedt, Maksim Melnik Helstrup, Håvard Langøy, Rune Lien, Jørgen André Ahn, Sang Un Aiola, Salvatore Akindinov, Alexander Al-Turany, Mohammad Alam, Sk Noor Albuquerque, D. S. D. Aleksandrov, Dmitry Alessandro, Bruno ALICE, Collaboration . Upgrade of the ALICE central barrel tracking detectors: ITS and TPC. Nuclear Physics A. 2019, 982, 943-946
dc.identifier.urihttp://hdl.handle.net/10852/76680
dc.description.abstractThe ALICE Collaboration will undertake a major upgrade of the detector apparatus during the second LHC Long Shutdown LS2 (2019–2020) in view of the Runs 3 and 4 (2021–2029). The objective of the upgrade is two-fold: i) an improvement of the tracking precision and efficiency, in particular in the low-momentum range; ii) an improvement of the readout capabilities of the experiment, in order to fully exploit the luminosity for heavy ions envisaged after LS2. The first goal will be achieved by replacing the Inner Tracking System with a new tracker, composed of seven layers of silicon pixel detectors. The new tracker will be made up of about 25000 Monolithic Active Pixel Sensors with fast readout, resulting in a material thickness reduced to 0.3% (inner layers) – 1% (outer layers) of the radiation length and a granularity of 28×28μm2. The second goal will be achieved, among other measures, by replacing the readout chambers of the 90m3 Time Projection Chamber with Micro Pattern Gaseous Detectors. In particular, the new readout chambers will consist of stacks of 4 Gas Electron Multiplier foils combining different hole pitches. The upgraded detector will operate continuously without the use of a triggered gating grid. It will thus be able to record all Pb–Pb collisions at the LHC interaction rate of 50kHz.en_US
dc.languageEN
dc.rightsAttribution-NonCommercial-NoDerivatives 4.0 International
dc.rights.urihttps://creativecommons.org/licenses/by-nc-nd/4.0/
dc.titleUpgrade of the ALICE central barrel tracking detectors: ITS and TPCen_US
dc.typeJournal articleen_US
dc.creator.authorGasik, P.
dc.creator.authorAcharya, Shreyasi
dc.creator.authorAcosta, Fernando T.
dc.creator.authorAdamová, Dagmar
dc.creator.authorAdolfsson, Jonatan
dc.creator.authorAggarwal, Madan M.
dc.creator.authorAglieri Rinella, Gianluca
dc.creator.authorAgnello, Michelangelo
dc.creator.authorAgrawal, Neelima
dc.creator.authorAhammed, Zubayer
dc.creator.authorAlme, Johan
dc.creator.authorAltenkaemper, Lucas
dc.creator.authorDjuvsland, Øystein
dc.creator.authorErsdal, Magnus Rentsch
dc.creator.authorFionda, Fiorella Maria Celeste
dc.creator.authorNystrand, Joakim
dc.creator.authorRehman, Attiq Ur
dc.creator.authorRøhrich, Dieter
dc.creator.authorTambave, Ganesh Jagannath
dc.creator.authorUllaland, Kjetil
dc.creator.authorWagner, Boris
dc.creator.authorZhou, Zhuo
dc.creator.authorArsene, Ionut Cristian
dc.creator.authorBätzing, Paul Christoph
dc.creator.authorDordic, Olja
dc.creator.authorLardeux, Antoine Xavier
dc.creator.authorLindal, Svein
dc.creator.authorMahmood, Sohail Musa
dc.creator.authorMalik, Qasim Waheed
dc.creator.authorRichter, Matthias
dc.creator.authorRøed, Ketil
dc.creator.authorSkaali, Toralf Bernhard
dc.creator.authorTveter, Trine Spedstad
dc.creator.authorWikne, Jon Christopher
dc.creator.authorZhao, Chengxin
dc.creator.authorHetland, Kristin Fanebust
dc.creator.authorKileng, Bjarte
dc.creator.authorNesbø, Simon Voigt
dc.creator.authorStoretvedt, Maksim Melnik
dc.creator.authorHelstrup, Håvard
dc.creator.authorLangøy, Rune
dc.creator.authorLien, Jørgen André
dc.creator.authorAhn, Sang Un
dc.creator.authorAiola, Salvatore
dc.creator.authorAkindinov, Alexander
dc.creator.authorAl-Turany, Mohammad
dc.creator.authorAlam, Sk Noor
dc.creator.authorAlbuquerque, D. S. D.
dc.creator.authorAleksandrov, Dmitry
dc.creator.authorAlessandro, Bruno
dc.creator.authorALICE, Collaboration
cristin.unitcode185,15,4,60
cristin.unitnameHøyenergifysikk
cristin.ispublishedtrue
cristin.fulltextoriginal
cristin.qualitycode1
dc.identifier.cristin1745445
dc.identifier.bibliographiccitationinfo:ofi/fmt:kev:mtx:ctx&ctx_ver=Z39.88-2004&rft_val_fmt=info:ofi/fmt:kev:mtx:journal&rft.jtitle=Nuclear Physics A&rft.volume=982&rft.spage=943&rft.date=2019
dc.identifier.jtitleNuclear Physics A
dc.identifier.volume982
dc.identifier.startpage943
dc.identifier.endpage946
dc.identifier.doihttps://doi.org/10.1016/j.nuclphysa.2018.08.022
dc.identifier.urnURN:NBN:no-79833
dc.subject.nviVDP::Kjerne- og elementærpartikkelfysikk: 431
dc.type.documentTidsskriftartikkelen_US
dc.type.peerreviewedPeer reviewed
dc.source.issn0375-9474
dc.identifier.fulltextFulltext https://www.duo.uio.no/bitstream/handle/10852/76680/2/1807.07787.pdf
dc.type.versionPublishedVersion
dc.relation.projectNFR/255188


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