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Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons

In circular accelerators, the interaction between the beam and its surroundings is described in terms of bunched-beam modes through Sacherer's formalism. As the bunch intensity increases, the different modes, separated by the synchrotron frequency, can no longer be treated separately. In this r...

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Autor principal: Métral, Elias
Lenguaje:eng
Publicado: 2002
Materias:
Acceso en línea:http://cds.cern.ch/record/558880
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author Métral, Elias
author_facet Métral, Elias
author_sort Métral, Elias
collection CERN
description In circular accelerators, the interaction between the beam and its surroundings is described in terms of bunched-beam modes through Sacherer's formalism. As the bunch intensity increases, the different modes, separated by the synchrotron frequency, can no longer be treated separately. In this regime, the wake fields couple the modes together and a wave pattern travelling along the bunch is created. It leads to the longitudinal and transverse mode-coupling instabilities, aspects of which are discussed under many different names in a variety of different papers. The present work reviews and unifies these approaches. It is shown that for the transverse plane, the same intensity threshold is obtained through 5 seemingly diverse formalisms: (i) transverse mode coupling, (ii) beam break-up, (iii) fast blow-up, (iv) post head-tail, and (v) a quasi coasting-beam approach using the peak values of bunch current and momentum spread as input for the coasting-beam formula. For the longitudinal plane, a new stability criterion is derived using the mode-coupling formalism. This formula is close to the Keil-Schnell-Boussard criterion, when the space-charge impedance is much smaller than the resonator one.
id cern-558880
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2002
record_format invenio
spelling cern-5588802022-08-17T13:37:20Zhttp://cds.cern.ch/record/558880engMétral, EliasStability Criteria for High-Intensity Single-Bunch Beams in SynchrotronsAccelerators and Storage RingsIn circular accelerators, the interaction between the beam and its surroundings is described in terms of bunched-beam modes through Sacherer's formalism. As the bunch intensity increases, the different modes, separated by the synchrotron frequency, can no longer be treated separately. In this regime, the wake fields couple the modes together and a wave pattern travelling along the bunch is created. It leads to the longitudinal and transverse mode-coupling instabilities, aspects of which are discussed under many different names in a variety of different papers. The present work reviews and unifies these approaches. It is shown that for the transverse plane, the same intensity threshold is obtained through 5 seemingly diverse formalisms: (i) transverse mode coupling, (ii) beam break-up, (iii) fast blow-up, (iv) post head-tail, and (v) a quasi coasting-beam approach using the peak values of bunch current and momentum spread as input for the coasting-beam formula. For the longitudinal plane, a new stability criterion is derived using the mode-coupling formalism. This formula is close to the Keil-Schnell-Boussard criterion, when the space-charge impedance is much smaller than the resonator one.CERN-PS-2002-022-AEoai:cds.cern.ch:5588802002-06-12
spellingShingle Accelerators and Storage Rings
Métral, Elias
Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title_full Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title_fullStr Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title_full_unstemmed Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title_short Stability Criteria for High-Intensity Single-Bunch Beams in Synchrotrons
title_sort stability criteria for high-intensity single-bunch beams in synchrotrons
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/558880
work_keys_str_mv AT metralelias stabilitycriteriaforhighintensitysinglebunchbeamsinsynchrotrons