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The LHCb Turbo Stream

The LHCb experiment will record an unprecedented dataset of beauty and charm hadron decays during Run II of the LHC, set to take place between 2015 and 2018. A key computing challenge is to store and process this data, which limits the maximum output rate of the LHCb trigger. So far, LHCb has writte...

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Autores principales: Benson, Sean, Gligorov, Vladimir, Vesterinen, Mika Anton, Williams, John Michael
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.1088/1742-6596/664/8/082004
http://cds.cern.ch/record/2019752
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author Benson, Sean
Gligorov, Vladimir
Vesterinen, Mika Anton
Williams, John Michael
author_facet Benson, Sean
Gligorov, Vladimir
Vesterinen, Mika Anton
Williams, John Michael
author_sort Benson, Sean
collection CERN
description The LHCb experiment will record an unprecedented dataset of beauty and charm hadron decays during Run II of the LHC, set to take place between 2015 and 2018. A key computing challenge is to store and process this data, which limits the maximum output rate of the LHCb trigger. So far, LHCb has written out a few kHz of events containing the full raw sub-detector data, which are passed through a full offline event reconstruction before being considered for physics analysis. Charm physics in particular is limited by trigger output rate constraints. A new streaming strategy includes the possibility to perform the physics analysis with candidates reconstructed in the trigger, thus bypassing the offline reconstruction and discarding the raw event. In the Turbo stream the trigger will write out a compact summary of physics objects containing all information necessary for analyses, and this will allow an increased output rate and thus higher average efficiencies and smaller selection biases. This idea will be commissioned and developed during 2015 with a selection of physics analyses. It is anticipated that the turbo stream will be adopted by an increasing number of analyses during the remainder of LHC Run II (2015-2018) and ultimately in Run III (starting in 2020) with the upgraded LHCb detector.
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spelling cern-20197522022-08-10T13:00:40Zdoi:10.1088/1742-6596/664/8/082004http://cds.cern.ch/record/2019752engBenson, SeanGligorov, VladimirVesterinen, Mika AntonWilliams, John MichaelThe LHCb Turbo StreamParticle Physics - ExperimentThe LHCb experiment will record an unprecedented dataset of beauty and charm hadron decays during Run II of the LHC, set to take place between 2015 and 2018. A key computing challenge is to store and process this data, which limits the maximum output rate of the LHCb trigger. So far, LHCb has written out a few kHz of events containing the full raw sub-detector data, which are passed through a full offline event reconstruction before being considered for physics analysis. Charm physics in particular is limited by trigger output rate constraints. A new streaming strategy includes the possibility to perform the physics analysis with candidates reconstructed in the trigger, thus bypassing the offline reconstruction and discarding the raw event. In the Turbo stream the trigger will write out a compact summary of physics objects containing all information necessary for analyses, and this will allow an increased output rate and thus higher average efficiencies and smaller selection biases. This idea will be commissioned and developed during 2015 with a selection of physics analyses. It is anticipated that the turbo stream will be adopted by an increasing number of analyses during the remainder of LHC Run II (2015-2018) and ultimately in Run III (starting in 2020) with the upgraded LHCb detector.LHCb-PROC-2015-013CERN-LHCb-PROC-2015-013oai:cds.cern.ch:20197522015-05-25
spellingShingle Particle Physics - Experiment
Benson, Sean
Gligorov, Vladimir
Vesterinen, Mika Anton
Williams, John Michael
The LHCb Turbo Stream
title The LHCb Turbo Stream
title_full The LHCb Turbo Stream
title_fullStr The LHCb Turbo Stream
title_full_unstemmed The LHCb Turbo Stream
title_short The LHCb Turbo Stream
title_sort lhcb turbo stream
topic Particle Physics - Experiment
url https://dx.doi.org/10.1088/1742-6596/664/8/082004
http://cds.cern.ch/record/2019752
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