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STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS

Motivated by the discussions on scenarios for LHC upgrades, beam studies on the stability of flat bunches in a double-harmonic RF system have been conducted in the CERN Proton Synchrotron (PS). Injecting nearly nominal LHC beam intensity per cycle, 18 bunches are accelerated on harmonic h = 21 to 26...

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Autores principales: Bhat, C M, Caspers, F, Damerau, H, Hancock, S, Mahner, E, Zimmermann, F
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2009
Materias:
Acceso en línea:http://cds.cern.ch/record/1304877
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author Bhat, C M
Caspers, F
Damerau, H
Hancock, S
Mahner, E
Zimmermann, F
author_facet Bhat, C M
Caspers, F
Damerau, H
Hancock, S
Mahner, E
Zimmermann, F
author_sort Bhat, C M
collection CERN
description Motivated by the discussions on scenarios for LHC upgrades, beam studies on the stability of flat bunches in a double-harmonic RF system have been conducted in the CERN Proton Synchrotron (PS). Injecting nearly nominal LHC beam intensity per cycle, 18 bunches are accelerated on harmonic h = 21 to 26GeV with the 10MHz RF system. On the flat-top, all bunches are then transformed to flat bunches by adiabatically adding RF voltage at h = 42 from a 20MHz cavity in anti-phase to the h = 21 system. The voltage ratio V (h42)/V (h21) of about 0.5 was set according to simulations. For the next 140 ms, longitudinal profiles show stable bunches in the double-harmonic RF bucket until extraction. Without the second harmonic component, coupled-bunch oscillations are observed. The flatness of the bunches along the batch is analyzed as a measure of the relative phase error between the RF systems due to beam loading. The results of beamdynamics simulations and their comparison with the measured data are presented.
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spelling cern-13048772023-01-11T08:43:41Z http://cds.cern.ch/record/1304877 eng Bhat, C M Caspers, F Damerau, H Hancock, S Mahner, E Zimmermann, F STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS Accelerators and Storage Rings 4: AccNet: Accelerator Science Networks Motivated by the discussions on scenarios for LHC upgrades, beam studies on the stability of flat bunches in a double-harmonic RF system have been conducted in the CERN Proton Synchrotron (PS). Injecting nearly nominal LHC beam intensity per cycle, 18 bunches are accelerated on harmonic h = 21 to 26GeV with the 10MHz RF system. On the flat-top, all bunches are then transformed to flat bunches by adiabatically adding RF voltage at h = 42 from a 20MHz cavity in anti-phase to the h = 21 system. The voltage ratio V (h42)/V (h21) of about 0.5 was set according to simulations. For the next 140 ms, longitudinal profiles show stable bunches in the double-harmonic RF bucket until extraction. Without the second harmonic component, coupled-bunch oscillations are observed. The flatness of the bunches along the batch is analyzed as a measure of the relative phase error between the RF systems due to beam loading. The results of beamdynamics simulations and their comparison with the measured data are presented. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1304877 2009
spellingShingle Accelerators and Storage Rings
4: AccNet: Accelerator Science Networks
Bhat, C M
Caspers, F
Damerau, H
Hancock, S
Mahner, E
Zimmermann, F
STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title_full STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title_fullStr STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title_full_unstemmed STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title_short STABILIZING EFFECT OF A DOUBLE-HARMONIC RF SYSTEM IN THE CERN PS
title_sort stabilizing effect of a double-harmonic rf system in the cern ps
topic Accelerators and Storage Rings
4: AccNet: Accelerator Science Networks
url http://cds.cern.ch/record/1304877
http://cds.cern.ch/record/1304877
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