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Noise and possible loss of Landau damping through noise excited wakefields

The effect of transverse Landau damping in circular hadron colliders depends strongly on the bunch distribution. The bunches are often assumed to be Gaussian in the transverse dimensions, as it fits well to measurements and it is the expected effect of intra-beam scattering. However, a small change...

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Detalles Bibliográficos
Autores principales: Furuseth, S V, Buffat, Xavier
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:https://dx.doi.org/10.23732/CYRCP-2020-009.262
http://cds.cern.ch/record/2752624
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author Furuseth, S V
Buffat, Xavier
author_facet Furuseth, S V
Buffat, Xavier
author_sort Furuseth, S V
collection CERN
description The effect of transverse Landau damping in circular hadron colliders depends strongly on the bunch distribution. The bunches are often assumed to be Gaussian in the transverse dimensions, as it fits well to measurements and it is the expected effect of intra-beam scattering. However, a small change of the distribution can cause a loss of stability. We study the effect that external noise excites the transverse motion of the beam, which produces wakefields, which act back on the beam and cause a diffusion of incoherent particles. The diffusion is narrow in frequency space, and thus also in action space. Macroparticle simulations have shown a similar change of the distribution, which is only detectable in action space, not projected in position space. The narrow diffusion efficiently drills a hole in the stability diagram, at the location of the unstable mode, eventually leading to an instability. The advised mitigation technique is to reduce the drilling rate by operating with a stability margin.
id oai-inspirehep.net-1847111
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2020
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spelling oai-inspirehep.net-18471112021-02-25T20:01:59Zdoi:10.23732/CYRCP-2020-009.262http://cds.cern.ch/record/2752624engFuruseth, S VBuffat, XavierNoise and possible loss of Landau damping through noise excited wakefieldsAccelerators and Storage RingsThe effect of transverse Landau damping in circular hadron colliders depends strongly on the bunch distribution. The bunches are often assumed to be Gaussian in the transverse dimensions, as it fits well to measurements and it is the expected effect of intra-beam scattering. However, a small change of the distribution can cause a loss of stability. We study the effect that external noise excites the transverse motion of the beam, which produces wakefields, which act back on the beam and cause a diffusion of incoherent particles. The diffusion is narrow in frequency space, and thus also in action space. Macroparticle simulations have shown a similar change of the distribution, which is only detectable in action space, not projected in position space. The narrow diffusion efficiently drills a hole in the stability diagram, at the location of the unstable mode, eventually leading to an instability. The advised mitigation technique is to reduce the drilling rate by operating with a stability margin.oai:inspirehep.net:18471112020
spellingShingle Accelerators and Storage Rings
Furuseth, S V
Buffat, Xavier
Noise and possible loss of Landau damping through noise excited wakefields
title Noise and possible loss of Landau damping through noise excited wakefields
title_full Noise and possible loss of Landau damping through noise excited wakefields
title_fullStr Noise and possible loss of Landau damping through noise excited wakefields
title_full_unstemmed Noise and possible loss of Landau damping through noise excited wakefields
title_short Noise and possible loss of Landau damping through noise excited wakefields
title_sort noise and possible loss of landau damping through noise excited wakefields
topic Accelerators and Storage Rings
url https://dx.doi.org/10.23732/CYRCP-2020-009.262
http://cds.cern.ch/record/2752624
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