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Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator

Hollow channel plasma wakefield acceleration is a proposed method to provide high acceleration gradients for electrons and positrons alike: a key to future lepton colliders. However, beams which are misaligned from the channel axis induce strong transverse wakefields, deflecting beams and reducing t...

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Detalles Bibliográficos
Autores principales: Lindstrøm, C.A., Adli, E., Allen, J.M., An, W., Beekman, C., Clarke, C.I., Clayton, C.E., Corde, S., Doche, A., Frederico, J., Gessner, S.J., Green, S.Z., Hogan, M.J., Joshi, C., Litos, M., Lu, W., Marsh, K.A., Mori, W.B., O'Shea, B.D., Vafaei-Najafabadi, N., Yakimenko, V.
Lenguaje:eng
Publicado: 2018
Materias:
Acceso en línea:https://dx.doi.org/10.1103/PhysRevLett.120.124802
http://cds.cern.ch/record/2657686
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author Lindstrøm, C.A.
Adli, E.
Allen, J.M.
An, W.
Beekman, C.
Clarke, C.I.
Clayton, C.E.
Corde, S.
Doche, A.
Frederico, J.
Gessner, S.J.
Green, S.Z.
Hogan, M.J.
Joshi, C.
Litos, M.
Lu, W.
Marsh, K.A.
Mori, W.B.
O'Shea, B.D.
Vafaei-Najafabadi, N.
Yakimenko, V.
author_facet Lindstrøm, C.A.
Adli, E.
Allen, J.M.
An, W.
Beekman, C.
Clarke, C.I.
Clayton, C.E.
Corde, S.
Doche, A.
Frederico, J.
Gessner, S.J.
Green, S.Z.
Hogan, M.J.
Joshi, C.
Litos, M.
Lu, W.
Marsh, K.A.
Mori, W.B.
O'Shea, B.D.
Vafaei-Najafabadi, N.
Yakimenko, V.
author_sort Lindstrøm, C.A.
collection CERN
description Hollow channel plasma wakefield acceleration is a proposed method to provide high acceleration gradients for electrons and positrons alike: a key to future lepton colliders. However, beams which are misaligned from the channel axis induce strong transverse wakefields, deflecting beams and reducing the collider luminosity. This undesirable consequence sets a tight constraint on the alignment accuracy of the beam propagating through the channel. Direct measurements of beam misalignment-induced transverse wakefields are therefore essential for designing mitigation strategies. We present the first quantitative measurements of transverse wakefields in a hollow plasma channel, induced by an off-axis 20 GeV positron bunch, and measured with another 20 GeV lower charge trailing positron probe bunch. The measurements are largely consistent with theory.
id cern-2657686
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2018
record_format invenio
spelling cern-26576862022-08-10T12:29:53Zdoi:10.1103/PhysRevLett.120.124802http://cds.cern.ch/record/2657686engLindstrøm, C.A.Adli, E.Allen, J.M.An, W.Beekman, C.Clarke, C.I.Clayton, C.E.Corde, S.Doche, A.Frederico, J.Gessner, S.J.Green, S.Z.Hogan, M.J.Joshi, C.Litos, M.Lu, W.Marsh, K.A.Mori, W.B.O'Shea, B.D.Vafaei-Najafabadi, N.Yakimenko, V.Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma acceleratorphysics.acc-phAccelerators and Storage RingsHollow channel plasma wakefield acceleration is a proposed method to provide high acceleration gradients for electrons and positrons alike: a key to future lepton colliders. However, beams which are misaligned from the channel axis induce strong transverse wakefields, deflecting beams and reducing the collider luminosity. This undesirable consequence sets a tight constraint on the alignment accuracy of the beam propagating through the channel. Direct measurements of beam misalignment-induced transverse wakefields are therefore essential for designing mitigation strategies. We present the first quantitative measurements of transverse wakefields in a hollow plasma channel, induced by an off-axis 20 GeV positron bunch, and measured with another 20 GeV lower charge trailing positron probe bunch. The measurements are largely consistent with theory.Hollow channel plasma wakefield acceleration is a proposed method to provide high acceleration gradients for electrons and positrons alike: a key to future lepton colliders. However, beams which are misaligned from the channel axis induce strong transverse wakefields, deflecting beams and reducing the collider luminosity. This undesirable consequence sets a tight constraint on the alignment accuracy of the beam propagating through the channel. Direct measurements of beam misalignment-induced transverse wakefields are therefore essential for designing mitigation strategies. We present the first quantitative measurements of transverse wakefields in a hollow plasma channel, induced by an off-axis 20 GeV positron bunch, and measured with another 20 GeV lower charge trailing positron probe bunch. The measurements are largely consistent with theory.arXiv:1802.09000oai:cds.cern.ch:26576862018-02-25
spellingShingle physics.acc-ph
Accelerators and Storage Rings
Lindstrøm, C.A.
Adli, E.
Allen, J.M.
An, W.
Beekman, C.
Clarke, C.I.
Clayton, C.E.
Corde, S.
Doche, A.
Frederico, J.
Gessner, S.J.
Green, S.Z.
Hogan, M.J.
Joshi, C.
Litos, M.
Lu, W.
Marsh, K.A.
Mori, W.B.
O'Shea, B.D.
Vafaei-Najafabadi, N.
Yakimenko, V.
Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title_full Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title_fullStr Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title_full_unstemmed Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title_short Measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
title_sort measurement of transverse wakefields induced by a misaligned positron bunch in a hollow channel plasma accelerator
topic physics.acc-ph
Accelerators and Storage Rings
url https://dx.doi.org/10.1103/PhysRevLett.120.124802
http://cds.cern.ch/record/2657686
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