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TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS

The Non Scaling Fixed Field Alternating Gradient (NSFFAG) EMMA accelerator has a purely linear lattice, and the crossing of resonances during acceleration is therefore a key characteristic of the beam dynamics. An accurate measurement of the tune is essential for a full understanding of the machine...

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Detalles Bibliográficos
Autores principales: Giboudot, Y, Wolski, A, Kirkman, I
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1306235
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author Giboudot, Y
Wolski, A
Kirkman, I
author_facet Giboudot, Y
Wolski, A
Kirkman, I
author_sort Giboudot, Y
collection CERN
description The Non Scaling Fixed Field Alternating Gradient (NSFFAG) EMMA accelerator has a purely linear lattice, and the crossing of resonances during acceleration is therefore a key characteristic of the beam dynamics. An accurate measurement of the tune is essential for a full understanding of the machine behaviour. However, commonly used measurement techniques require the beam to perform a large number of turns in the machine. Simulations have shown us that rapid decoherence of the beam requires a technique capable of providing a tune measurement from just one or two turns of the ring. Model independent analysis(MIA) has been investigated as a possible approach. The singular value decomposition of a matrix composed of BPM readings from the trajectories of different bunches provides information on the machine optics. Simulations indicate that it should be possible to derive an accurate value of the tune using MIA, even in the presence of BPM noise and beam decoherence.
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spelling cern-13062352019-09-30T06:29:59Z http://cds.cern.ch/record/1306235 eng Giboudot, Y Wolski, A Kirkman, I TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS Accelerators and Storage Rings 11: Assessment of Novel Accelerator Concepts The Non Scaling Fixed Field Alternating Gradient (NSFFAG) EMMA accelerator has a purely linear lattice, and the crossing of resonances during acceleration is therefore a key characteristic of the beam dynamics. An accurate measurement of the tune is essential for a full understanding of the machine behaviour. However, commonly used measurement techniques require the beam to perform a large number of turns in the machine. Simulations have shown us that rapid decoherence of the beam requires a technique capable of providing a tune measurement from just one or two turns of the ring. Model independent analysis(MIA) has been investigated as a possible approach. The singular value decomposition of a matrix composed of BPM readings from the trajectories of different bunches provides information on the machine optics. Simulations indicate that it should be possible to derive an accurate value of the tune using MIA, even in the presence of BPM noise and beam decoherence. info:eu-repo/grantAgreement/EC/FP7/227579 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/1306235 2010
spellingShingle Accelerators and Storage Rings
11: Assessment of Novel Accelerator Concepts
Giboudot, Y
Wolski, A
Kirkman, I
TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title_full TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title_fullStr TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title_full_unstemmed TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title_short TUNE MEASUREMENT IN NON SCALING FFAG EMMA WITH MODEL INDEPENDENT ANALYSIS
title_sort tune measurement in non scaling ffag emma with model independent analysis
topic Accelerators and Storage Rings
11: Assessment of Novel Accelerator Concepts
url http://cds.cern.ch/record/1306235
http://cds.cern.ch/record/1306235
work_keys_str_mv AT giboudoty tunemeasurementinnonscalingffagemmawithmodelindependentanalysis
AT wolskia tunemeasurementinnonscalingffagemmawithmodelindependentanalysis
AT kirkmani tunemeasurementinnonscalingffagemmawithmodelindependentanalysis