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LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade

The present LHCb Muon Identification procedure was optimised to guarantee high muon detection efficiency at the istantaneous luminosity $\mathcal{L}$ of $2\cdot10^{32}$~cm$^{-2}$~s$^{-1}$. In the current data taking conditions, the luminosity is higher than foreseen and the low energy background con...

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Autor principal: Cogoni, Violetta
Lenguaje:eng
Publicado: 2016
Acceso en línea:http://cds.cern.ch/record/2136821
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author Cogoni, Violetta
author_facet Cogoni, Violetta
author_sort Cogoni, Violetta
collection CERN
description The present LHCb Muon Identification procedure was optimised to guarantee high muon detection efficiency at the istantaneous luminosity $\mathcal{L}$ of $2\cdot10^{32}$~cm$^{-2}$~s$^{-1}$. In the current data taking conditions, the luminosity is higher than foreseen and the low energy background contribution to the visible rate in the muon system is larger than expected. A worse situation is expected for Run III when LHCb will operate at $\mathcal{L} = 2\cdot10^{33}$~cm$^{-2}$~s$^{-1}$ causing the high particle fluxes to deteriorate the muon detection efficiency, because of the increased dead time of the electronics, and in particular to worsen the muon identification capabilities, due to the increased contribution of the background, with deleterious consequences especially for the analyses requiring high purity signal. In this context, possible new algorithms for the muon identification will be illustrated. In particular, the performance on combinatorial background rejection will be shown, together with the extrapolations in upgrade conditions.
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institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
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spelling cern-21368212019-09-30T06:29:59Zhttp://cds.cern.ch/record/2136821engCogoni, ViolettaLHCb - Novel Muon Identification Algorithms for the LHCb UpgradeThe present LHCb Muon Identification procedure was optimised to guarantee high muon detection efficiency at the istantaneous luminosity $\mathcal{L}$ of $2\cdot10^{32}$~cm$^{-2}$~s$^{-1}$. In the current data taking conditions, the luminosity is higher than foreseen and the low energy background contribution to the visible rate in the muon system is larger than expected. A worse situation is expected for Run III when LHCb will operate at $\mathcal{L} = 2\cdot10^{33}$~cm$^{-2}$~s$^{-1}$ causing the high particle fluxes to deteriorate the muon detection efficiency, because of the increased dead time of the electronics, and in particular to worsen the muon identification capabilities, due to the increased contribution of the background, with deleterious consequences especially for the analyses requiring high purity signal. In this context, possible new algorithms for the muon identification will be illustrated. In particular, the performance on combinatorial background rejection will be shown, together with the extrapolations in upgrade conditions.Poster-2016-522oai:cds.cern.ch:21368212016-03-02
spellingShingle Cogoni, Violetta
LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title_full LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title_fullStr LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title_full_unstemmed LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title_short LHCb - Novel Muon Identification Algorithms for the LHCb Upgrade
title_sort lhcb - novel muon identification algorithms for the lhcb upgrade
url http://cds.cern.ch/record/2136821
work_keys_str_mv AT cogonivioletta lhcbnovelmuonidentificationalgorithmsforthelhcbupgrade