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Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches

A necessary condition for high SRF performances in thin film coated cavities is the absence of substrate defects. For instance, in the past, defects originated around electron beam welds in high magnetic field areas have been shown to be the cause of performance limitations in Nb/Cu cavities. Seamle...

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Autores principales: Vega Cid, Lorena, Atieh, Said, Ferreira, Leonel, Laín-Amador, Lucia, Leith, Stewart, Pereira Carlos, Carlota, Rosaz, Guillaume, Scibor, Karol, Venturini Delsolaro, Walter, Vidal García, Pablo
Lenguaje:eng
Publicado: 2022
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-SRF2021-TUPTEV009
http://cds.cern.ch/record/2846176
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author Vega Cid, Lorena
Atieh, Said
Ferreira, Leonel
Laín-Amador, Lucia
Leith, Stewart
Pereira Carlos, Carlota
Rosaz, Guillaume
Scibor, Karol
Venturini Delsolaro, Walter
Vidal García, Pablo
author_facet Vega Cid, Lorena
Atieh, Said
Ferreira, Leonel
Laín-Amador, Lucia
Leith, Stewart
Pereira Carlos, Carlota
Rosaz, Guillaume
Scibor, Karol
Venturini Delsolaro, Walter
Vidal García, Pablo
author_sort Vega Cid, Lorena
collection CERN
description A necessary condition for high SRF performances in thin film coated cavities is the absence of substrate defects. For instance, in the past, defects originated around electron beam welds in high magnetic field areas have been shown to be the cause of performance limitations in Nb/Cu cavities. Seamless cavities are therefore good candidates to allow an optimization of the coating parameters without the pitfalls of a changing substrate. In this work, we present the first results of two different methods to produce seamless cavities applied to 1.3 GHz copper single cells coated with thin Nb films by means of HIPIMS. A first method consists in electroplating the copper resonator on precisely machined aluminum mandrels, which are then dissolved chemically. As an alternative and a cross check, one cavity was machined directly from the bulk. Both cavities were coated with HIPIMS Nb films using the same coating parameters and the SRF performance was measured down to 1.8 K with a variable coupler to minimize the measurement uncertainty.
id cern-2846176
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2022
record_format invenio
spelling cern-28461762023-01-14T22:17:45Zdoi:10.18429/JACoW-SRF2021-TUPTEV009http://cds.cern.ch/record/2846176engVega Cid, LorenaAtieh, SaidFerreira, LeonelLaín-Amador, LuciaLeith, StewartPereira Carlos, CarlotaRosaz, GuillaumeScibor, KarolVenturini Delsolaro, WalterVidal García, PabloSeamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different ApproachesAccelerators and Storage RingsA necessary condition for high SRF performances in thin film coated cavities is the absence of substrate defects. For instance, in the past, defects originated around electron beam welds in high magnetic field areas have been shown to be the cause of performance limitations in Nb/Cu cavities. Seamless cavities are therefore good candidates to allow an optimization of the coating parameters without the pitfalls of a changing substrate. In this work, we present the first results of two different methods to produce seamless cavities applied to 1.3 GHz copper single cells coated with thin Nb films by means of HIPIMS. A first method consists in electroplating the copper resonator on precisely machined aluminum mandrels, which are then dissolved chemically. As an alternative and a cross check, one cavity was machined directly from the bulk. Both cavities were coated with HIPIMS Nb films using the same coating parameters and the SRF performance was measured down to 1.8 K with a variable coupler to minimize the measurement uncertainty.oai:cds.cern.ch:28461762022
spellingShingle Accelerators and Storage Rings
Vega Cid, Lorena
Atieh, Said
Ferreira, Leonel
Laín-Amador, Lucia
Leith, Stewart
Pereira Carlos, Carlota
Rosaz, Guillaume
Scibor, Karol
Venturini Delsolaro, Walter
Vidal García, Pablo
Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title_full Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title_fullStr Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title_full_unstemmed Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title_short Seamless 1.3 GHz Copper Cavities for Nb Coatings: Cold Test Results of Two Different Approaches
title_sort seamless 1.3 ghz copper cavities for nb coatings: cold test results of two different approaches
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-SRF2021-TUPTEV009
http://cds.cern.ch/record/2846176
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