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RF Voltage Calibration Using Phase Space Tomography in the CERN SPS

Voltage calibration using longitudinal phase-space tomography is a purely beam-based technique to determine the effective RF voltage experienced by a bunch. It was applied in the SPS, separately to each of its six accelerating travelling wave structures. A low spread in voltage errors was obtained b...

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Autores principales: Quartullo, Danilo, Albright, Simon, Damerau, Heiko, Lasheen, Alexandre, Papotti, Giulia, Zisou, Charilaos
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2022-TUPOST005
http://cds.cern.ch/record/2845896
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author Quartullo, Danilo
Albright, Simon
Damerau, Heiko
Lasheen, Alexandre
Papotti, Giulia
Zisou, Charilaos
author_facet Quartullo, Danilo
Albright, Simon
Damerau, Heiko
Lasheen, Alexandre
Papotti, Giulia
Zisou, Charilaos
author_sort Quartullo, Danilo
collection CERN
description Voltage calibration using longitudinal phase-space tomography is a purely beam-based technique to determine the effective RF voltage experienced by a bunch. It was applied in the SPS, separately to each of its six accelerating travelling wave structures. A low spread in voltage errors was obtained by carefully optimizing the number of acquired bunch profiles. The technique moreover provided the relative phases of the cavities, which allowed their alignment to be checked. Pairs of cavities were measured as well to validate the consistency of the single-cavity voltages. The beam measurements were repeated after several months to confirm the reproducibility of the results. Longitudinal beam dynamics simulations, including the full SPS impedance model, were performed as a benchmark. The aim was to verify that the effect of the cable transfer-function on the bunch profiles can be neglected, as well as collective effects and small errors in the accelerator parameters.
id cern-2845896
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28458962023-01-11T21:31:30Zdoi:10.18429/JACoW-IPAC2022-TUPOST005http://cds.cern.ch/record/2845896engQuartullo, DaniloAlbright, SimonDamerau, HeikoLasheen, AlexandrePapotti, GiuliaZisou, CharilaosRF Voltage Calibration Using Phase Space Tomography in the CERN SPSAccelerators and Storage RingsVoltage calibration using longitudinal phase-space tomography is a purely beam-based technique to determine the effective RF voltage experienced by a bunch. It was applied in the SPS, separately to each of its six accelerating travelling wave structures. A low spread in voltage errors was obtained by carefully optimizing the number of acquired bunch profiles. The technique moreover provided the relative phases of the cavities, which allowed their alignment to be checked. Pairs of cavities were measured as well to validate the consistency of the single-cavity voltages. The beam measurements were repeated after several months to confirm the reproducibility of the results. Longitudinal beam dynamics simulations, including the full SPS impedance model, were performed as a benchmark. The aim was to verify that the effect of the cable transfer-function on the bunch profiles can be neglected, as well as collective effects and small errors in the accelerator parameters.oai:cds.cern.ch:28458962022
spellingShingle Accelerators and Storage Rings
Quartullo, Danilo
Albright, Simon
Damerau, Heiko
Lasheen, Alexandre
Papotti, Giulia
Zisou, Charilaos
RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title_full RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title_fullStr RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title_full_unstemmed RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title_short RF Voltage Calibration Using Phase Space Tomography in the CERN SPS
title_sort rf voltage calibration using phase space tomography in the cern sps
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2022-TUPOST005
http://cds.cern.ch/record/2845896
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AT lasheenalexandre rfvoltagecalibrationusingphasespacetomographyinthecernsps
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