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CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC

The LHC crystal-based collimation system is mainly addressed. A CRYSTAL simulation code for particle tracking in crystals is introduced. Its essence consists in both adequate and fast sampling of proton trajectories in crystals which is crucial for both correct description of experiments and quantit...

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Detalles Bibliográficos
Autores principales: Sytov, A.I., Tikhomirov, V.V.
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nimb.2015.02.042
http://cds.cern.ch/record/1973262
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author Sytov, A.I.
Tikhomirov, V.V.
author_facet Sytov, A.I.
Tikhomirov, V.V.
author_sort Sytov, A.I.
collection CERN
description The LHC crystal-based collimation system is mainly addressed. A CRYSTAL simulation code for particle tracking in crystals is introduced. Its essence consists in both adequate and fast sampling of proton trajectories in crystals which is crucial for both correct description of experiments and quantitative prediction of new effects. The H8 single-pass experiment at the CERN SPS as well as 7 TeV proton deflection by a bent crystal at the LHC are simulated. We predict the existence of dechanneling peaks corresponding to the planar channeling oscillations as well as describe the possibility of their observation at high energies, specifically in the LHC crystal-assisted collimation experiment planned on 2015. An effect of excess over the amorphous level of ionization losses in the channeling mode was also found for the LHC energy. In addition, the LHC crystal-based collimation system is simulated as well as its possible improved layouts with application of a crystal with the cut and multiple volume reflection in one bent crystal.
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publishDate 2014
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spelling cern-19732622021-05-03T20:30:13Zdoi:10.1016/j.nimb.2015.02.042http://cds.cern.ch/record/1973262engSytov, A.I.Tikhomirov, V.V.CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHCAccelerators and Storage RingsThe LHC crystal-based collimation system is mainly addressed. A CRYSTAL simulation code for particle tracking in crystals is introduced. Its essence consists in both adequate and fast sampling of proton trajectories in crystals which is crucial for both correct description of experiments and quantitative prediction of new effects. The H8 single-pass experiment at the CERN SPS as well as 7 TeV proton deflection by a bent crystal at the LHC are simulated. We predict the existence of dechanneling peaks corresponding to the planar channeling oscillations as well as describe the possibility of their observation at high energies, specifically in the LHC crystal-assisted collimation experiment planned on 2015. An effect of excess over the amorphous level of ionization losses in the channeling mode was also found for the LHC energy. In addition, the LHC crystal-based collimation system is simulated as well as its possible improved layouts with application of a crystal with the cut and multiple volume reflection in one bent crystal.The LHC crystal-based collimation system is mainly addressed. A CRYSTAL simulation code for particle tracking in crystals is introduced. Its essence consists in both adequate and fast sampling of proton trajectories in crystals which is crucial for both correct description of experiments and quantitative prediction of new effects. The H8 single-pass experiment at the CERN SPS as well as 7 TeV proton deflection by a bent crystal at the LHC are simulated. We predict the existence of dechanneling peaks corresponding to the planar channeling oscillations as well as describe the possibility of their observation at high energies, specifically in the LHC crystal-assisted collimation experiment planned on 2015. An effect of excess over the amorphous level of ionization losses in the channeling mode was also found for the LHC energy. In addition, the LHC crystal-based collimation system is simulated as well as its possible improved layouts with application of a crystal with the cut and multiple volume reflection in one bent crystal.A CRYSTAL simulation code for particle tracking in crystals is introduced. Its essence consists in both adequate and fast sampling of proton trajectories in crystals which is crucial for both correct description of experiments and quantitative prediction of new effects. The H8 single-pass experiment at the CERN SPS as well as 7 TeV proton deflection by a bent crystal at the LHC are simulated. We predict the existence of dechanneling peaks corresponding to the planar channeling oscillations as well as describe the possibility of their observation at high energies, specifically at the LHC energy. An effect of excess over the amorphous level of ionization losses in the channeling mode was also found at 7 TeV.arXiv:1412.0110oai:cds.cern.ch:19732622014-11-29
spellingShingle Accelerators and Storage Rings
Sytov, A.I.
Tikhomirov, V.V.
CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title_full CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title_fullStr CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title_full_unstemmed CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title_short CRYSTAL Simulation Code and New Coherent Effects in Bent Crystal at the LHC
title_sort crystal simulation code and new coherent effects in bent crystal at the lhc
topic Accelerators and Storage Rings
url https://dx.doi.org/10.1016/j.nimb.2015.02.042
http://cds.cern.ch/record/1973262
work_keys_str_mv AT sytovai crystalsimulationcodeandnewcoherenteffectsinbentcrystalatthelhc
AT tikhomirovvv crystalsimulationcodeandnewcoherenteffectsinbentcrystalatthelhc