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Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime

Plasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for sev- eral scientific, medical and technological applications. Current plasma based acceleration experiments operate in the relativistic regime, where th...

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Detalles Bibliográficos
Autores principales: Vieira, J., Fonseca, R.A., Silva, L.O.
Lenguaje:eng
Publicado: CERN 2016
Materias:
Acceso en línea:https://dx.doi.org/10.5170/CERN-2016-001.79
http://cds.cern.ch/record/2199067
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author Vieira, J.
Fonseca, R.A.
Silva, L.O.
author_facet Vieira, J.
Fonseca, R.A.
Silva, L.O.
author_sort Vieira, J.
collection CERN
description Plasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for sev- eral scientific, medical and technological applications. Current plasma based acceleration experiments operate in the relativistic regime, where the plasma response is strongly non-linear. We outline some of the key properties of wake- field excitation in these regimes. We outline a multidimensional theory for the excitation of plasma wakefields in connection with current experiments. We then use these results and provide design guidelines for the choice of laser and plasma parameters ensuring a stable laser wakefield accelerator that maximizes the quality of the accelerated electrons. We also mention some of the future challenges associated with this technology.
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spelling cern-21990672022-08-10T12:42:32Zdoi:10.5170/CERN-2016-001.79http://cds.cern.ch/record/2199067engVieira, J.Fonseca, R.A.Silva, L.O.Multidimensional Plasma Wake Excitation in the Non-linear Blowout RegimeOther Fields of PhysicsPlasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for sev- eral scientific, medical and technological applications. Current plasma based acceleration experiments operate in the relativistic regime, where the plasma response is strongly non-linear. We outline some of the key properties of wake- field excitation in these regimes. We outline a multidimensional theory for the excitation of plasma wakefields in connection with current experiments. We then use these results and provide design guidelines for the choice of laser and plasma parameters ensuring a stable laser wakefield accelerator that maximizes the quality of the accelerated electrons. We also mention some of the future challenges associated with this technology.Plasma accelerators can sustain very high acceleration gradients. They are promising candidates for future generations of particle accelerators for several scientific, medical and technological applications. Current plasma based acceleration experiments operate in the relativistic regime, where the plasma response is strongly non-linear. We outline some of the key properties of wakefield excitation in these regimes. We outline a multidimensional theory for the excitation of plasma wakefields in connection with current experiments. We then use these results and provide design guidelines for the choice of laser and plasma parameters ensuring a stable laser wakefield accelerator that maximizes the quality of the accelerated electrons. We also mention some of the future challenges associated with this technology.CERNarXiv:1607.03514oai:cds.cern.ch:21990672016-07-12
spellingShingle Other Fields of Physics
Vieira, J.
Fonseca, R.A.
Silva, L.O.
Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title_full Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title_fullStr Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title_full_unstemmed Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title_short Multidimensional Plasma Wake Excitation in the Non-linear Blowout Regime
title_sort multidimensional plasma wake excitation in the non-linear blowout regime
topic Other Fields of Physics
url https://dx.doi.org/10.5170/CERN-2016-001.79
http://cds.cern.ch/record/2199067
work_keys_str_mv AT vieiraj multidimensionalplasmawakeexcitationinthenonlinearblowoutregime
AT fonsecara multidimensionalplasmawakeexcitationinthenonlinearblowoutregime
AT silvalo multidimensionalplasmawakeexcitationinthenonlinearblowoutregime