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On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams

Coherent transverse dipole oscillations in colliding head-on non-rigid bunches are studied using the Vlasov equation. The corresponding eigenvalue problem is solved numerically in the case of round Gaussian bunches of equal size but with not necessarily equal intensities. Transition from the weak-st...

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Autor principal: Alexahin, Yu I
Lenguaje:eng
Publicado: 1996
Materias:
Acceso en línea:http://cds.cern.ch/record/314169
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author Alexahin, Yu I
author_facet Alexahin, Yu I
author_sort Alexahin, Yu I
collection CERN
description Coherent transverse dipole oscillations in colliding head-on non-rigid bunches are studied using the Vlasov equation. The corresponding eigenvalue problem is solved numerically in the case of round Gaussian bunches of equal size but with not necessarily equal intensities. Transition from the weak-strong to the strong-strong cases is found at the intensity ratio of about 60% when a discrete p-mode frequency emerges from continuum of eigenfrequencies related to the beam-beam tunespread in the weaker bunch. In the strong-strong case the large coherent beam-beam tuneshift dominates over interchange processes between coherent and incoherent motion; it can switch off Landau damping of dipole transverse oscillations, slows down incoherent emittance growth due to external kicks on the beams. The consequences for the transverse feedback operation in collision are discussed.
id cern-314169
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1996
record_format invenio
spelling cern-3141692023-05-05T12:57:28Zhttp://cds.cern.ch/record/314169engAlexahin, Yu IOn the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding BeamsAccelerators and Storage RingsCoherent transverse dipole oscillations in colliding head-on non-rigid bunches are studied using the Vlasov equation. The corresponding eigenvalue problem is solved numerically in the case of round Gaussian bunches of equal size but with not necessarily equal intensities. Transition from the weak-strong to the strong-strong cases is found at the intensity ratio of about 60% when a discrete p-mode frequency emerges from continuum of eigenfrequencies related to the beam-beam tunespread in the weaker bunch. In the strong-strong case the large coherent beam-beam tuneshift dominates over interchange processes between coherent and incoherent motion; it can switch off Landau damping of dipole transverse oscillations, slows down incoherent emittance growth due to external kicks on the beams. The consequences for the transverse feedback operation in collision are discussed.CERN-SL-96-064-APoai:cds.cern.ch:3141691996-08-26
spellingShingle Accelerators and Storage Rings
Alexahin, Yu I
On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title_full On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title_fullStr On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title_full_unstemmed On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title_short On the Landau Damping and Decoherence of Transverse Dipole Oscillations in Colliding Beams
title_sort on the landau damping and decoherence of transverse dipole oscillations in colliding beams
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/314169
work_keys_str_mv AT alexahinyui onthelandaudampinganddecoherenceoftransversedipoleoscillationsincollidingbeams