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CLIC Post-Collision Line Luminosity Monitoring

The CLIC post collision line is designed to transport the un-collided beams and the products of the collided beams with a total power of 14MW to the main beam dump. Full Monte Carlo simulation has been done for the description of the CLIC luminosity monitoring in the post collision line. One method...

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Detalles Bibliográficos
Autores principales: Appleby, R B, Apyan, A, Deacon, L, Geschwendtner, E
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2011
Materias:
Acceso en línea:http://cds.cern.ch/record/1403133
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author Appleby, R B
Apyan, A
Deacon, L
Geschwendtner, E
author_facet Appleby, R B
Apyan, A
Deacon, L
Geschwendtner, E
author_sort Appleby, R B
collection CERN
description The CLIC post collision line is designed to transport the un-collided beams and the products of the collided beams with a total power of 14MW to the main beam dump. Full Monte Carlo simulation has been done for the description of the CLIC luminosity monitoring in the post collision line. One method of the luminosity diagnostic is based on the detection of high energy muons produced by beamstrahlung photons in the main beam dump. The disrupted beam and the beamstrahlung photons produce at the order of 106 muons per bunch crossing per cm2, with energies higher than 10 GeV. Threshold Cherenkov counters are considered after the beam dump for the detection of these high energy muons. Another method for luminosity monitoring is presented using the direct detection of the beamstrahlung photons.
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spelling cern-14031332019-09-30T06:29:59Z http://cds.cern.ch/record/1403133 eng Appleby, R B Apyan, A Deacon, L Geschwendtner, E CLIC Post-Collision Line Luminosity Monitoring Accelerators and Storage Rings 9: Technology for normal conducting higher energy linear accelerators The CLIC post collision line is designed to transport the un-collided beams and the products of the collided beams with a total power of 14MW to the main beam dump. Full Monte Carlo simulation has been done for the description of the CLIC luminosity monitoring in the post collision line. One method of the luminosity diagnostic is based on the detection of high energy muons produced by beamstrahlung photons in the main beam dump. The disrupted beam and the beamstrahlung photons produce at the order of 106 muons per bunch crossing per cm2, with energies higher than 10 GeV. Threshold Cherenkov counters are considered after the beam dump for the detection of these high energy muons. Another method for luminosity monitoring is presented using the direct detection of the beamstrahlung photons. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1403133 2011
spellingShingle Accelerators and Storage Rings
9: Technology for normal conducting higher energy linear accelerators
Appleby, R B
Apyan, A
Deacon, L
Geschwendtner, E
CLIC Post-Collision Line Luminosity Monitoring
title CLIC Post-Collision Line Luminosity Monitoring
title_full CLIC Post-Collision Line Luminosity Monitoring
title_fullStr CLIC Post-Collision Line Luminosity Monitoring
title_full_unstemmed CLIC Post-Collision Line Luminosity Monitoring
title_short CLIC Post-Collision Line Luminosity Monitoring
title_sort clic post-collision line luminosity monitoring
topic Accelerators and Storage Rings
9: Technology for normal conducting higher energy linear accelerators
url http://cds.cern.ch/record/1403133
http://cds.cern.ch/record/1403133
work_keys_str_mv AT applebyrb clicpostcollisionlineluminositymonitoring
AT apyana clicpostcollisionlineluminositymonitoring
AT deaconl clicpostcollisionlineluminositymonitoring
AT geschwendtnere clicpostcollisionlineluminositymonitoring