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Amplitude model for beam oscillations in the main Linac of CLIC

To achieve the challenging goal of ultra-low emittance preservation in the main linac of CLIC, different techniques are used. The according algorithms often rely on an accurate, fast and efficient to compute model of the amplitude behavior of the beam oscillations in the beam line. In this paper suc...

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Autores principales: Pfingstner, Jürgen, Schulte, Daniel, Schmickler, Hermann, Hofbaur, Michael
Lenguaje:eng
Publicado: 2010
Materias:
Acceso en línea:http://cds.cern.ch/record/1333706
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author Pfingstner, Jürgen
Schulte, Daniel
Schmickler, Hermann
Hofbaur, Michael
author_facet Pfingstner, Jürgen
Schulte, Daniel
Schmickler, Hermann
Hofbaur, Michael
author_sort Pfingstner, Jürgen
collection CERN
description To achieve the challenging goal of ultra-low emittance preservation in the main linac of CLIC, different techniques are used. The according algorithms often rely on an accurate, fast and efficient to compute model of the amplitude behavior of the beam oscillations in the beam line. In this paper such a model is developed, considering the accelerator design as well as the effect of filamentation. Filamentation is especially important, due to the high energy spread of the according beam and the large total phase advance of the lattice. Therefore a general model to describe filamentation is adapted to the properties of the beam in the main linac of CLIC. At the beginning of the linac, where made assumptions are not valid, this basic model is supported by a fit to simulation data. An accuracy evaluation of the produced data shows that the quadratic error is around 4 %. Therefore, the developed model delivers a fast and efficient procedure, to precisely predict the beam envelope behavior in the main linac of CLIC.
id cern-1333706
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2010
record_format invenio
spelling cern-13337062023-08-17T09:45:30Zhttp://cds.cern.ch/record/1333706engPfingstner, JürgenSchulte, DanielSchmickler, HermannHofbaur, MichaelAmplitude model for beam oscillations in the main Linac of CLICAccelerators and Storage RingsTo achieve the challenging goal of ultra-low emittance preservation in the main linac of CLIC, different techniques are used. The according algorithms often rely on an accurate, fast and efficient to compute model of the amplitude behavior of the beam oscillations in the beam line. In this paper such a model is developed, considering the accelerator design as well as the effect of filamentation. Filamentation is especially important, due to the high energy spread of the according beam and the large total phase advance of the lattice. Therefore a general model to describe filamentation is adapted to the properties of the beam in the main linac of CLIC. At the beginning of the linac, where made assumptions are not valid, this basic model is supported by a fit to simulation data. An accuracy evaluation of the produced data shows that the quadratic error is around 4 %. Therefore, the developed model delivers a fast and efficient procedure, to precisely predict the beam envelope behavior in the main linac of CLIC.CERN-OPEN-2011-010CLIC-Note-860oai:cds.cern.ch:13337062010-09-01
spellingShingle Accelerators and Storage Rings
Pfingstner, Jürgen
Schulte, Daniel
Schmickler, Hermann
Hofbaur, Michael
Amplitude model for beam oscillations in the main Linac of CLIC
title Amplitude model for beam oscillations in the main Linac of CLIC
title_full Amplitude model for beam oscillations in the main Linac of CLIC
title_fullStr Amplitude model for beam oscillations in the main Linac of CLIC
title_full_unstemmed Amplitude model for beam oscillations in the main Linac of CLIC
title_short Amplitude model for beam oscillations in the main Linac of CLIC
title_sort amplitude model for beam oscillations in the main linac of clic
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/1333706
work_keys_str_mv AT pfingstnerjurgen amplitudemodelforbeamoscillationsinthemainlinacofclic
AT schultedaniel amplitudemodelforbeamoscillationsinthemainlinacofclic
AT schmicklerhermann amplitudemodelforbeamoscillationsinthemainlinacofclic
AT hofbaurmichael amplitudemodelforbeamoscillationsinthemainlinacofclic