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Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance

We study the loss of Landau damping for the longitudinal plane via the "Sacherer formalism". Stability limits are calculated for several longitudinal beam distributions, in particular for two types of flat bunches, which could be of interest to the LHC upgrade. The resulting stability diag...

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Detalles Bibliográficos
Autores principales: Santiago Gonzalez, I, Zimmermann, F
Lenguaje:eng
Publicado: 2008
Materias:
Acceso en línea:http://cds.cern.ch/record/1122255
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author Santiago Gonzalez, I
Zimmermann, F
author_facet Santiago Gonzalez, I
Zimmermann, F
author_sort Santiago Gonzalez, I
collection CERN
description We study the loss of Landau damping for the longitudinal plane via the "Sacherer formalism". Stability limits are calculated for several longitudinal beam distributions, in particular for two types of flat bunches, which could be of interest to the LHC upgrade. The resulting stability diagrams are computed and displayed for different azimuthal modes. A general recipe is given for calculating the threshold intensity in the case of a capacitive impedance below transition or, equivalently, for a purely inductive impedance above transition. The formalism was applied to the case of the PS Booster, as an example of space-charge impedance below transition, and to the SPS, as an example of inductive impedance above transition.
id cern-1122255
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2008
record_format invenio
spelling cern-11222552023-05-31T13:24:38Zhttp://cds.cern.ch/record/1122255engSantiago Gonzalez, IZimmermann, FLongitudinal stability of Flat Bunches with Space-Charge or Inductive ImpedanceAccelerators and Storage RingsWe study the loss of Landau damping for the longitudinal plane via the "Sacherer formalism". Stability limits are calculated for several longitudinal beam distributions, in particular for two types of flat bunches, which could be of interest to the LHC upgrade. The resulting stability diagrams are computed and displayed for different azimuthal modes. A general recipe is given for calculating the threshold intensity in the case of a capacitive impedance below transition or, equivalently, for a purely inductive impedance above transition. The formalism was applied to the case of the PS Booster, as an example of space-charge impedance below transition, and to the SPS, as an example of inductive impedance above transition.LHC-PROJECT-Report-1100CERN-LHC-PROJECT-Report-1100oai:cds.cern.ch:11222552008-08-27
spellingShingle Accelerators and Storage Rings
Santiago Gonzalez, I
Zimmermann, F
Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title_full Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title_fullStr Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title_full_unstemmed Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title_short Longitudinal stability of Flat Bunches with Space-Charge or Inductive Impedance
title_sort longitudinal stability of flat bunches with space-charge or inductive impedance
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1122255
work_keys_str_mv AT santiagogonzalezi longitudinalstabilityofflatbuncheswithspacechargeorinductiveimpedance
AT zimmermannf longitudinalstabilityofflatbuncheswithspacechargeorinductiveimpedance