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FLUKA simulations for the optimization of the Beam Loss Monitors

The collimation system in the beam cleaning insertion IR7 of the Large Hadron Collider (LHC) is expected to clean the primary halo and the secondary radiation of a beam with unprecedented energy and intensity. Accidental beam losses can therefore entail severe consequences to the hardware of the mac...

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Autores principales: Brugger, M, Cerutti, F, Ferrari, A, Magistris, M, Santana-Leitner, M, Vlachoudis, V
Lenguaje:eng
Publicado: 2006
Materias:
Acceso en línea:http://cds.cern.ch/record/1119938
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author Brugger, M
Cerutti, F
Ferrari, A
Magistris, M
Santana-Leitner, M
Vlachoudis, V
author_facet Brugger, M
Cerutti, F
Ferrari, A
Magistris, M
Santana-Leitner, M
Vlachoudis, V
author_sort Brugger, M
collection CERN
description The collimation system in the beam cleaning insertion IR7 of the Large Hadron Collider (LHC) is expected to clean the primary halo and the secondary radiation of a beam with unprecedented energy and intensity. Accidental beam losses can therefore entail severe consequences to the hardware of the machine. Thus, protection mechanisms, e.g. beam abort, must be instantaneously triggered by a set of Beam Loss Monitors (BLM's). The readings in the BLM's couple the losses from various collimators, thus rendering the identification of any faulty unit rather complex. In the present study the detailed geometry of IR7 is upgraded with the insertion of the BLM's, and the Monte Carlo FLUKA transport code is used to estimate the individual contribution of every collimator to the showers detected in each BLM.
id cern-1119938
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2006
record_format invenio
spelling cern-11199382019-09-30T06:29:59Zhttp://cds.cern.ch/record/1119938engBrugger, MCerutti, FFerrari, AMagistris, MSantana-Leitner, MVlachoudis, VFLUKA simulations for the optimization of the Beam Loss MonitorsAccelerators and Storage RingsThe collimation system in the beam cleaning insertion IR7 of the Large Hadron Collider (LHC) is expected to clean the primary halo and the secondary radiation of a beam with unprecedented energy and intensity. Accidental beam losses can therefore entail severe consequences to the hardware of the machine. Thus, protection mechanisms, e.g. beam abort, must be instantaneously triggered by a set of Beam Loss Monitors (BLM's). The readings in the BLM's couple the losses from various collimators, thus rendering the identification of any faulty unit rather complex. In the present study the detailed geometry of IR7 is upgraded with the insertion of the BLM's, and the Monte Carlo FLUKA transport code is used to estimate the individual contribution of every collimator to the showers detected in each BLM.CERN-AB-Note-2008-038oai:cds.cern.ch:11199382006-12-01
spellingShingle Accelerators and Storage Rings
Brugger, M
Cerutti, F
Ferrari, A
Magistris, M
Santana-Leitner, M
Vlachoudis, V
FLUKA simulations for the optimization of the Beam Loss Monitors
title FLUKA simulations for the optimization of the Beam Loss Monitors
title_full FLUKA simulations for the optimization of the Beam Loss Monitors
title_fullStr FLUKA simulations for the optimization of the Beam Loss Monitors
title_full_unstemmed FLUKA simulations for the optimization of the Beam Loss Monitors
title_short FLUKA simulations for the optimization of the Beam Loss Monitors
title_sort fluka simulations for the optimization of the beam loss monitors
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1119938
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AT ceruttif flukasimulationsfortheoptimizationofthebeamlossmonitors
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AT magistrism flukasimulationsfortheoptimizationofthebeamlossmonitors
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