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1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA

In a collaboration framework between CERN and ALBA, we are designing a normal conducting active 1.5 GHz cavity which could serve as main RF system for the Damping Ring of CLIC and as an active third harmonic cavity for the ALBA Storage Ring. The third harmonic cavity at ALBA will be used to increase...

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Detalles Bibliográficos
Autores principales: Bravo, Beatriz, Alvarez, Jose, Pérez, Francis, Salom, Angela
Lenguaje:eng
Publicado: 2017
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-IPAC2017-THPIK078
http://cds.cern.ch/record/2290463
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author Bravo, Beatriz
Alvarez, Jose
Pérez, Francis
Salom, Angela
author_facet Bravo, Beatriz
Alvarez, Jose
Pérez, Francis
Salom, Angela
author_sort Bravo, Beatriz
collection CERN
description In a collaboration framework between CERN and ALBA, we are designing a normal conducting active 1.5 GHz cavity which could serve as main RF system for the Damping Ring of CLIC and as an active third harmonic cavity for the ALBA Storage Ring. The third harmonic cavity at ALBA will be used to increase the bunch length in order to improve the beam lifetime and increase the beam stability thresholds. The main advantage of an active third harmonic cavity is that optimum conditions can be reached for any beam current. This paper presents the preliminary design of this cavity: an active, normal conducting cavity tuned at 1.5 GHz based on the 500 MHz European Higher Order Mode (HOM) damped normal conducting with nose cones using ridged circular waveguides for HOM damping. Electromagnetic simulations, mechanical and thermal stress analysis will be presented together with the calculations on beam stability improvement due to the third harmonic system.
id oai-inspirehep.net-1626283
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2017
record_format invenio
spelling oai-inspirehep.net-16262832023-07-20T15:03:39Zdoi:10.18429/JACoW-IPAC2017-THPIK078http://cds.cern.ch/record/2290463engBravo, BeatrizAlvarez, JosePérez, FrancisSalom, Angela1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBAAccelerators and Storage RingsIn a collaboration framework between CERN and ALBA, we are designing a normal conducting active 1.5 GHz cavity which could serve as main RF system for the Damping Ring of CLIC and as an active third harmonic cavity for the ALBA Storage Ring. The third harmonic cavity at ALBA will be used to increase the bunch length in order to improve the beam lifetime and increase the beam stability thresholds. The main advantage of an active third harmonic cavity is that optimum conditions can be reached for any beam current. This paper presents the preliminary design of this cavity: an active, normal conducting cavity tuned at 1.5 GHz based on the 500 MHz European Higher Order Mode (HOM) damped normal conducting with nose cones using ridged circular waveguides for HOM damping. Electromagnetic simulations, mechanical and thermal stress analysis will be presented together with the calculations on beam stability improvement due to the third harmonic system.CERN-ACC-2017-107CLIC-Note-1132oai:inspirehep.net:16262832017
spellingShingle Accelerators and Storage Rings
Bravo, Beatriz
Alvarez, Jose
Pérez, Francis
Salom, Angela
1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title 1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title_full 1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title_fullStr 1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title_full_unstemmed 1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title_short 1.5 GHz Cavity Design for the CLIC Damping Ring and as Active Third Harmonic Cavity for ALBA
title_sort 1.5 ghz cavity design for the clic damping ring and as active third harmonic cavity for alba
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-IPAC2017-THPIK078
http://cds.cern.ch/record/2290463
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