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Feedback Techniques and SPS Ecloud Instabilities - Design Estimates
The SPS at high intensities exhibits transverse single-bunch instabilities with signatures consistent with an Ecloud driven instability. While the SPS has a coupled-bunch transverse feedback system, control of Ecloud-driven motion requires a much wider control bandwidth capable of sensing and contro...
Autores principales: | , , , , , , , , , , |
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Lenguaje: | eng |
Publicado: |
2009
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Materias: | |
Acceso en línea: | http://cds.cern.ch/record/1215584 |
_version_ | 1780918105664389120 |
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author | Fox, J D Mastorides, T Ndabashimiye, G Rivetta, C H Van Winkle, D Xu, J Byrd, J M Vay, J L Höfle, Wolfgang Rumolo, G de Maria, R |
author_facet | Fox, J D Mastorides, T Ndabashimiye, G Rivetta, C H Van Winkle, D Xu, J Byrd, J M Vay, J L Höfle, Wolfgang Rumolo, G de Maria, R |
author_sort | Fox, J D |
collection | CERN |
description | The SPS at high intensities exhibits transverse single-bunch instabilities with signatures consistent with an Ecloud driven instability. While the SPS has a coupled-bunch transverse feedback system, control of Ecloud-driven motion requires a much wider control bandwidth capable of sensing and controlling motion within each bunched beam. This paper draws beam dynamics data from the measurements and simulations of this SPS instability, and develops initial performance requirements for a feedback system with 2-4 GS/sec sampling rates to damp Ecloud-driven transverse motion in the SPS at intensities desired for high-current LHC operation. Requirements for pickups, kickers and signal processing architectures are presented. Initial lab measurements of proof-of-principle lab model prototypes are presented for the wideband kicker driver signal functions. |
id | cern-1215584 |
institution | Organización Europea para la Investigación Nuclear |
language | eng |
publishDate | 2009 |
record_format | invenio |
spelling | cern-12155842019-09-30T06:29:59Zhttp://cds.cern.ch/record/1215584engFox, J DMastorides, TNdabashimiye, GRivetta, C HVan Winkle, DXu, JByrd, J MVay, J LHöfle, WolfgangRumolo, Gde Maria, RFeedback Techniques and SPS Ecloud Instabilities - Design EstimatesAccelerators and Storage RingsThe SPS at high intensities exhibits transverse single-bunch instabilities with signatures consistent with an Ecloud driven instability. While the SPS has a coupled-bunch transverse feedback system, control of Ecloud-driven motion requires a much wider control bandwidth capable of sensing and controlling motion within each bunched beam. This paper draws beam dynamics data from the measurements and simulations of this SPS instability, and develops initial performance requirements for a feedback system with 2-4 GS/sec sampling rates to damp Ecloud-driven transverse motion in the SPS at intensities desired for high-current LHC operation. Requirements for pickups, kickers and signal processing architectures are presented. Initial lab measurements of proof-of-principle lab model prototypes are presented for the wideband kicker driver signal functions.CERN-ATS-2009-108oai:cds.cern.ch:12155842009-05-04 |
spellingShingle | Accelerators and Storage Rings Fox, J D Mastorides, T Ndabashimiye, G Rivetta, C H Van Winkle, D Xu, J Byrd, J M Vay, J L Höfle, Wolfgang Rumolo, G de Maria, R Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title | Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title_full | Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title_fullStr | Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title_full_unstemmed | Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title_short | Feedback Techniques and SPS Ecloud Instabilities - Design Estimates |
title_sort | feedback techniques and sps ecloud instabilities - design estimates |
topic | Accelerators and Storage Rings |
url | http://cds.cern.ch/record/1215584 |
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