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Mitigation of the onset of hosing in the linear regime through plasma frequency detuning

The hosing instability poses a feasibility risk for plasma-based accelerator concepts. We show that the growth rate for beam hosing in the linear regime (which is relevant for concepts that use a long driver) is a function of the centroid perturbation wavelength. We demonstrate how this property can...

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Autores principales: Moreira, Mariana, Muggli, Patric, Vieira, Jorge
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:http://cds.cern.ch/record/2824345
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author Moreira, Mariana
Muggli, Patric
Vieira, Jorge
author_facet Moreira, Mariana
Muggli, Patric
Vieira, Jorge
author_sort Moreira, Mariana
collection CERN
description The hosing instability poses a feasibility risk for plasma-based accelerator concepts. We show that the growth rate for beam hosing in the linear regime (which is relevant for concepts that use a long driver) is a function of the centroid perturbation wavelength. We demonstrate how this property can be used to damp centroid oscillations by detuning the plasma response sufficiently early in the development of the instability. We also develop a new theoretical model for the early evolution of hosing. These findings have implications for the general control of an instability's growth rate.
id cern-2824345
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28243452022-08-11T13:12:30Zhttp://cds.cern.ch/record/2824345engMoreira, MarianaMuggli, PatricVieira, JorgeMitigation of the onset of hosing in the linear regime through plasma frequency detuningphysics.plasm-phPhysics in GeneralThe hosing instability poses a feasibility risk for plasma-based accelerator concepts. We show that the growth rate for beam hosing in the linear regime (which is relevant for concepts that use a long driver) is a function of the centroid perturbation wavelength. We demonstrate how this property can be used to damp centroid oscillations by detuning the plasma response sufficiently early in the development of the instability. We also develop a new theoretical model for the early evolution of hosing. These findings have implications for the general control of an instability's growth rate.arXiv:2207.14763oai:cds.cern.ch:28243452022
spellingShingle physics.plasm-ph
Physics in General
Moreira, Mariana
Muggli, Patric
Vieira, Jorge
Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title_full Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title_fullStr Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title_full_unstemmed Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title_short Mitigation of the onset of hosing in the linear regime through plasma frequency detuning
title_sort mitigation of the onset of hosing in the linear regime through plasma frequency detuning
topic physics.plasm-ph
Physics in General
url http://cds.cern.ch/record/2824345
work_keys_str_mv AT moreiramariana mitigationoftheonsetofhosinginthelinearregimethroughplasmafrequencydetuning
AT mugglipatric mitigationoftheonsetofhosinginthelinearregimethroughplasmafrequencydetuning
AT vieirajorge mitigationoftheonsetofhosinginthelinearregimethroughplasmafrequencydetuning