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A Map Approach for Electron Cloud Density in a Strong LHC Dipole

The luminosity is limited by the electron cloud effects in presently running and proposed future storage rings. The evolution of the electron density during the electron cloud formation can be reproduced using a bunch-to-bunch iterative map formalism. By performing simulation codes this approach has...

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Detalles Bibliográficos
Autores principales: Petracca, Stefania, Stabile, Arturo, Di Carmine, W
Lenguaje:eng
Publicado: 2014
Materias:
Acceso en línea:http://cds.cern.ch/record/2011533
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author Petracca, Stefania
Stabile, Arturo
Di Carmine, W
author_facet Petracca, Stefania
Stabile, Arturo
Di Carmine, W
author_sort Petracca, Stefania
collection CERN
description The luminosity is limited by the electron cloud effects in presently running and proposed future storage rings. The evolution of the electron density during the electron cloud formation can be reproduced using a bunch-to-bunch iterative map formalism. By performing simulation codes this approach has been used to obtain a numerical prediction of the coefficients in the map, while in the presence of a magnetic field an analytic formula has been obtained for the linear coefficient. The next goal is finding a theoretical prescription of the quadratic coefficient at least in the presence of magnetic dipole. Then it will be possible to reproduce, by using the map formalism, the dynamics of electron cloud without performing the simulations.
id oai-inspirehep.net-1313724
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2014
record_format invenio
spelling oai-inspirehep.net-13137242022-08-17T13:30:44Zhttp://cds.cern.ch/record/2011533engPetracca, StefaniaStabile, ArturoDi Carmine, WA Map Approach for Electron Cloud Density in a Strong LHC DipoleAccelerators and Storage RingsThe luminosity is limited by the electron cloud effects in presently running and proposed future storage rings. The evolution of the electron density during the electron cloud formation can be reproduced using a bunch-to-bunch iterative map formalism. By performing simulation codes this approach has been used to obtain a numerical prediction of the coefficients in the map, while in the presence of a magnetic field an analytic formula has been obtained for the linear coefficient. The next goal is finding a theoretical prescription of the quadratic coefficient at least in the presence of magnetic dipole. Then it will be possible to reproduce, by using the map formalism, the dynamics of electron cloud without performing the simulations.oai:inspirehep.net:13137242014
spellingShingle Accelerators and Storage Rings
Petracca, Stefania
Stabile, Arturo
Di Carmine, W
A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title_full A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title_fullStr A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title_full_unstemmed A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title_short A Map Approach for Electron Cloud Density in a Strong LHC Dipole
title_sort map approach for electron cloud density in a strong lhc dipole
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2011533
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AT stabilearturo amapapproachforelectronclouddensityinastronglhcdipole
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