Cargando…

Space Charge Mitigation With Longitudinally Hollow Bunches

Hollow longitudinal phase space distributions have a flat profile and hence reduce the impact of transverse space charge. Dipolar parametric excitation with the phase loop feedback systems provides such hollow distributions under reproducible conditions. We present a procedure to create hollow bunch...

Descripción completa

Detalles Bibliográficos
Autores principales: Oeftiger, Adrian, Hancock, Steven, Rumolo, Giovanni
Lenguaje:eng
Publicado: 2016
Acceso en línea:http://cds.cern.ch/record/2253326
_version_ 1780953551262973952
author Oeftiger, Adrian
Hancock, Steven
Rumolo, Giovanni
author_facet Oeftiger, Adrian
Hancock, Steven
Rumolo, Giovanni
author_sort Oeftiger, Adrian
collection CERN
description Hollow longitudinal phase space distributions have a flat profile and hence reduce the impact of transverse space charge. Dipolar parametric excitation with the phase loop feedback systems provides such hollow distributions under reproducible conditions. We present a procedure to create hollow bunches during the acceleration ramp of CERN’s PS Booster machine with minimal changes to the operational cycle. The improvements during the injection plateau of the downstream Proton Synchrotron are assessed in comparison to standard parabolic bunches.
id cern-2253326
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2016
record_format invenio
spelling cern-22533262019-09-30T06:29:59Zhttp://cds.cern.ch/record/2253326engOeftiger, AdrianHancock, StevenRumolo, GiovanniSpace Charge Mitigation With Longitudinally Hollow BunchesHollow longitudinal phase space distributions have a flat profile and hence reduce the impact of transverse space charge. Dipolar parametric excitation with the phase loop feedback systems provides such hollow distributions under reproducible conditions. We present a procedure to create hollow bunches during the acceleration ramp of CERN’s PS Booster machine with minimal changes to the operational cycle. The improvements during the injection plateau of the downstream Proton Synchrotron are assessed in comparison to standard parabolic bunches.Poster-2017-568CERN-ACC-NOTE-2017-0007oai:cds.cern.ch:22533262016-07-04
spellingShingle Oeftiger, Adrian
Hancock, Steven
Rumolo, Giovanni
Space Charge Mitigation With Longitudinally Hollow Bunches
title Space Charge Mitigation With Longitudinally Hollow Bunches
title_full Space Charge Mitigation With Longitudinally Hollow Bunches
title_fullStr Space Charge Mitigation With Longitudinally Hollow Bunches
title_full_unstemmed Space Charge Mitigation With Longitudinally Hollow Bunches
title_short Space Charge Mitigation With Longitudinally Hollow Bunches
title_sort space charge mitigation with longitudinally hollow bunches
url http://cds.cern.ch/record/2253326
work_keys_str_mv AT oeftigeradrian spacechargemitigationwithlongitudinallyhollowbunches
AT hancocksteven spacechargemitigationwithlongitudinallyhollowbunches
AT rumologiovanni spacechargemitigationwithlongitudinallyhollowbunches