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Beam loading voltage profile of an accelerating section with a linearly varying group velocity

The CLIC Tapered Damped accelerating Structure (TDS) has a 5.4% detuning of the lowest dipole mode. The geometrical variations that produce this detuning range also fix the fundamental mode's group velocity variation - very nearly linear with 0.108c (c is the speed of light) at the structure in...

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Detalles Bibliográficos
Autores principales: Wuensch, Walter, Wilson, Ian H
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:http://cds.cern.ch/record/388498
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author Wuensch, Walter
Wilson, Ian H
author_facet Wuensch, Walter
Wilson, Ian H
author_sort Wuensch, Walter
collection CERN
description The CLIC Tapered Damped accelerating Structure (TDS) has a 5.4% detuning of the lowest dipole mode. The geometrical variations that produce this detuning range also fix the fundamental mode's group velocity variation - very nearly linear with 0.108c (c is the speed of light) at the structure input to 0.054c at the output. In addition R'/Q also varies approximately linearly, from 22.3 kW/m at the input to 30 kW/m at the output. These variations result in a structure that is neither constant impedance nor constant gradient so the widely used relationships between structure length, input and average accelerating gradient are not applicable. In order to simplify the process of optimizing accelerator parameters an analytic expression for the voltage profile in a structure with a linearly varying group velocity has been derived. A more accurate numerical solution that includes the variation in R'/Q is also presented.
id cern-388498
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-3884982023-08-17T09:44:39Zhttp://cds.cern.ch/record/388498engWuensch, WalterWilson, Ian HBeam loading voltage profile of an accelerating section with a linearly varying group velocityAccelerators and Storage RingsThe CLIC Tapered Damped accelerating Structure (TDS) has a 5.4% detuning of the lowest dipole mode. The geometrical variations that produce this detuning range also fix the fundamental mode's group velocity variation - very nearly linear with 0.108c (c is the speed of light) at the structure input to 0.054c at the output. In addition R'/Q also varies approximately linearly, from 22.3 kW/m at the input to 30 kW/m at the output. These variations result in a structure that is neither constant impedance nor constant gradient so the widely used relationships between structure length, input and average accelerating gradient are not applicable. In order to simplify the process of optimizing accelerator parameters an analytic expression for the voltage profile in a structure with a linearly varying group velocity has been derived. A more accurate numerical solution that includes the variation in R'/Q is also presented.CERN-OPEN-99-012CLIC-Note-399oai:cds.cern.ch:3884981999-05-07
spellingShingle Accelerators and Storage Rings
Wuensch, Walter
Wilson, Ian H
Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title_full Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title_fullStr Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title_full_unstemmed Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title_short Beam loading voltage profile of an accelerating section with a linearly varying group velocity
title_sort beam loading voltage profile of an accelerating section with a linearly varying group velocity
topic Accelerators and Storage Rings
url http://cds.cern.ch/record/388498
work_keys_str_mv AT wuenschwalter beamloadingvoltageprofileofanacceleratingsectionwithalinearlyvaryinggroupvelocity
AT wilsonianh beamloadingvoltageprofileofanacceleratingsectionwithalinearlyvaryinggroupvelocity