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The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities

Higher Order Modes (HOMs) are of concern for superconducting cavities as they can drive instabilities and so are usually damped and monitored. With special dedicated electronics, HOMs can provide information on the position on the beam. It has been proposed that piezo tuners used to keep the cavi...

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Detalles Bibliográficos
Autores principales: Ainsworth, R, Molloy, S, Zhang, P, Grecki, M, Baboi, N, Wamsat, T, Eddy, N
Lenguaje:eng
Publicado: 2013
Materias:
XX
Acceso en línea:http://cds.cern.ch/record/2062227
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author Ainsworth, R
Molloy, S
Zhang, P
Grecki, M
Baboi, N
Wamsat, T
Eddy, N
author_facet Ainsworth, R
Molloy, S
Zhang, P
Grecki, M
Baboi, N
Wamsat, T
Eddy, N
author_sort Ainsworth, R
collection CERN
description Higher Order Modes (HOMs) are of concern for superconducting cavities as they can drive instabilities and so are usually damped and monitored. With special dedicated electronics, HOMs can provide information on the position on the beam. It has been proposed that piezo tuners used to keep the cavities operating at 1.3 GHz could alter the HOM spectrum altering the calibration constants used to read out the beam position affecting long term stability of the system. Also, of interest is how the cavity reacts to the slow tuner. Detuning and the retuning the cavity may alter the HOM spectrum. This is of particular interest for future machines not planning to use dedicated HOM damping as the tuning procedure may shift the frequency of HOMs onto dangerous resonances. The effect of temperature on the HOM spectrum is also investigated. An investigation of these effects has been performed at FLASH and the results are presented.
id cern-2062227
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-20622272022-08-17T13:31:49Zhttp://cds.cern.ch/record/2062227engAinsworth, RMolloy, SZhang, PGrecki, MBaboi, NWamsat, TEddy, NThe Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF CavitiesXXHigher Order Modes (HOMs) are of concern for superconducting cavities as they can drive instabilities and so are usually damped and monitored. With special dedicated electronics, HOMs can provide information on the position on the beam. It has been proposed that piezo tuners used to keep the cavities operating at 1.3 GHz could alter the HOM spectrum altering the calibration constants used to read out the beam position affecting long term stability of the system. Also, of interest is how the cavity reacts to the slow tuner. Detuning and the retuning the cavity may alter the HOM spectrum. This is of particular interest for future machines not planning to use dedicated HOM damping as the tuning procedure may shift the frequency of HOMs onto dangerous resonances. The effect of temperature on the HOM spectrum is also investigated. An investigation of these effects has been performed at FLASH and the results are presented.oai:cds.cern.ch:20622272013
spellingShingle XX
Ainsworth, R
Molloy, S
Zhang, P
Grecki, M
Baboi, N
Wamsat, T
Eddy, N
The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title_full The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title_fullStr The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title_full_unstemmed The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title_short The Influence of Tuners and Temperature on the Higher Order Mode Spectrum for 1.3 GHz SCRF Cavities
title_sort influence of tuners and temperature on the higher order mode spectrum for 1.3 ghz scrf cavities
topic XX
url http://cds.cern.ch/record/2062227
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