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A Vlasov approach to study transverse instabilities driven by electron clouds

We present a linearized method to study transverse instabilities due to electron clouds. It is based on a compact characterization of the cloud dipolar and quadrupolar forces that can be easily obtained from quick single-pass numerical simulations. The long-term stability properties of the bunch are...

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Detalles Bibliográficos
Autores principales: Iadarola, Giovanni, Mether, Lotta, Mounet, Nicolas, Sabato, Luca
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:http://cds.cern.ch/record/2740683
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author Iadarola, Giovanni
Mether, Lotta
Mounet, Nicolas
Sabato, Luca
author_facet Iadarola, Giovanni
Mether, Lotta
Mounet, Nicolas
Sabato, Luca
author_sort Iadarola, Giovanni
collection CERN
description We present a linearized method to study transverse instabilities due to electron clouds. It is based on a compact characterization of the cloud dipolar and quadrupolar forces that can be easily obtained from quick single-pass numerical simulations. The long-term stability properties of the bunch are predicted by solving the linearized Vlasov equation taking into account the dipolar forces introduced by the e-cloud along the bunch as well as the betatron tune modulation with the longitudinal coordinate due to the e-cloud quadrupolar forces. The identification of the beam coherent eigenmodes is achieved by solving an eigenvalue problem. An expression for the tune shift of the rigid-bunch mode is also derived.
id cern-2740683
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
record_format invenio
spelling cern-27406832020-10-07T19:56:15Zhttp://cds.cern.ch/record/2740683engIadarola, GiovanniMether, LottaMounet, NicolasSabato, LucaA Vlasov approach to study transverse instabilities driven by electron clouds Accelerators and Storage RingsWe present a linearized method to study transverse instabilities due to electron clouds. It is based on a compact characterization of the cloud dipolar and quadrupolar forces that can be easily obtained from quick single-pass numerical simulations. The long-term stability properties of the bunch are predicted by solving the linearized Vlasov equation taking into account the dipolar forces introduced by the e-cloud along the bunch as well as the betatron tune modulation with the longitudinal coordinate due to the e-cloud quadrupolar forces. The identification of the beam coherent eigenmodes is achieved by solving an eigenvalue problem. An expression for the tune shift of the rigid-bunch mode is also derived.CERN-ACC-NOTE-2020-0054oai:cds.cern.ch:27406832020-08-31
spellingShingle Accelerators and Storage Rings
Iadarola, Giovanni
Mether, Lotta
Mounet, Nicolas
Sabato, Luca
A Vlasov approach to study transverse instabilities driven by electron clouds
title A Vlasov approach to study transverse instabilities driven by electron clouds
title_full A Vlasov approach to study transverse instabilities driven by electron clouds
title_fullStr A Vlasov approach to study transverse instabilities driven by electron clouds
title_full_unstemmed A Vlasov approach to study transverse instabilities driven by electron clouds
title_short A Vlasov approach to study transverse instabilities driven by electron clouds
title_sort vlasov approach to study transverse instabilities driven by electron clouds
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/2740683
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AT metherlotta avlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
AT mounetnicolas avlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
AT sabatoluca avlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
AT iadarolagiovanni vlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
AT metherlotta vlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
AT mounetnicolas vlasovapproachtostudytransverseinstabilitiesdrivenbyelectronclouds
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