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Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions

The BRAN (Beam RAte of Neutrals) detector monitors the collision rates in the high luminosity interaction regions of LHC (ATLAS and CMS). This Argon gas ionization detector measures the forward neutral particles from collisions at the interaction point. To predict and improve the understanding of th...

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Autores principales: Stiller, Johannes, Matis, Howard, Ratti, Alessandro, Turner, William, Miyamoto, Ryoichi, White, Simon
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1307873
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author Stiller, Johannes
Matis, Howard
Ratti, Alessandro
Turner, William
Miyamoto, Ryoichi
White, Simon
author_facet Stiller, Johannes
Matis, Howard
Ratti, Alessandro
Turner, William
Miyamoto, Ryoichi
White, Simon
author_sort Stiller, Johannes
collection CERN
description The BRAN (Beam RAte of Neutrals) detector monitors the collision rates in the high luminosity interaction regions of LHC (ATLAS and CMS). This Argon gas ionization detector measures the forward neutral particles from collisions at the interaction point. To predict and improve the understanding of the detector’s performance, we produced a detailed model of the detector and its surroundings in Fluka. In this paper, we present the model and results of our simulations including the detectors estimated response to interactions for beam energies of 3.5, 5, and 7 TeV
id cern-1307873
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13078732022-08-17T13:31:15Zhttp://cds.cern.ch/record/1307873engStiller, JohannesMatis, HowardRatti, AlessandroTurner, WilliamMiyamoto, RyoichiWhite, SimonSimulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction RegionsAccelerators and Storage RingsThe BRAN (Beam RAte of Neutrals) detector monitors the collision rates in the high luminosity interaction regions of LHC (ATLAS and CMS). This Argon gas ionization detector measures the forward neutral particles from collisions at the interaction point. To predict and improve the understanding of the detector’s performance, we produced a detailed model of the detector and its surroundings in Fluka. In this paper, we present the model and results of our simulations including the detectors estimated response to interactions for beam energies of 3.5, 5, and 7 TeVoai:cds.cern.ch:13078732010
spellingShingle Accelerators and Storage Rings
Stiller, Johannes
Matis, Howard
Ratti, Alessandro
Turner, William
Miyamoto, Ryoichi
White, Simon
Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title_full Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title_fullStr Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title_full_unstemmed Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title_short Simulation of the LHC BRAN Luminosity Monitor for High Luminosity Interaction Regions
title_sort simulation of the lhc bran luminosity monitor for high luminosity interaction regions
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1307873
work_keys_str_mv AT stillerjohannes simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions
AT matishoward simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions
AT rattialessandro simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions
AT turnerwilliam simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions
AT miyamotoryoichi simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions
AT whitesimon simulationofthelhcbranluminositymonitorforhighluminosityinteractionregions