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Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation

The RF performance of bulk Nb cavities has continuously improved over the years and is approaching the intrinsic limit of the material. Although some margin seems still available with processes such as N surface doping, long term solutions for SRF surfaces efficiency enhancement need to be pursued....

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Autores principales: Valente-Feliciano, Anne-Marie, Aull, Sarah, Eremeev, Grigory, Proslier, Thomas, Reece, Charles, Spradlin, Joshua
Lenguaje:eng
Publicado: 2015
Materias:
Acceso en línea:https://dx.doi.org/10.18429/JACoW-SRF2015-TUPB029
http://cds.cern.ch/record/2288264
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author Valente-Feliciano, Anne-Marie
Aull, Sarah
Eremeev, Grigory
Proslier, Thomas
Reece, Charles
Spradlin, Joshua
author_facet Valente-Feliciano, Anne-Marie
Aull, Sarah
Eremeev, Grigory
Proslier, Thomas
Reece, Charles
Spradlin, Joshua
author_sort Valente-Feliciano, Anne-Marie
collection CERN
description The RF performance of bulk Nb cavities has continuously improved over the years and is approaching the intrinsic limit of the material. Although some margin seems still available with processes such as N surface doping, long term solutions for SRF surfaces efficiency enhancement need to be pursued. Over the years, Nb/Cu technology, despite its shortcomings, has positioned itself as an alternative route for the future of superconducting structures used in accelerators. Significant progress has been made in recent years in the development of energetic deposition techniques such as Electron Cyclotron Resonance (ECR) plasma deposition. Nb films with very high material quality have then been produced by varying the deposition energy alluding to the promise of performing SRF films. This paper presents RF measurements, correlated with surface and material properties, for Nb films showing how, by varying the film growth conditions, the Nb film quality and surface resistance can be altered and how the Q-slope can be eventually overcome.
id oai-inspirehep.net-1482076
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2015
record_format invenio
spelling oai-inspirehep.net-14820762019-09-30T06:29:59Zdoi:10.18429/JACoW-SRF2015-TUPB029http://cds.cern.ch/record/2288264engValente-Feliciano, Anne-MarieAull, SarahEremeev, GrigoryProslier, ThomasReece, CharlesSpradlin, JoshuaMaterial quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensationAccelerators and Storage RingsThe RF performance of bulk Nb cavities has continuously improved over the years and is approaching the intrinsic limit of the material. Although some margin seems still available with processes such as N surface doping, long term solutions for SRF surfaces efficiency enhancement need to be pursued. Over the years, Nb/Cu technology, despite its shortcomings, has positioned itself as an alternative route for the future of superconducting structures used in accelerators. Significant progress has been made in recent years in the development of energetic deposition techniques such as Electron Cyclotron Resonance (ECR) plasma deposition. Nb films with very high material quality have then been produced by varying the deposition energy alluding to the promise of performing SRF films. This paper presents RF measurements, correlated with surface and material properties, for Nb films showing how, by varying the film growth conditions, the Nb film quality and surface resistance can be altered and how the Q-slope can be eventually overcome.oai:inspirehep.net:14820762015
spellingShingle Accelerators and Storage Rings
Valente-Feliciano, Anne-Marie
Aull, Sarah
Eremeev, Grigory
Proslier, Thomas
Reece, Charles
Spradlin, Joshua
Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title_full Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title_fullStr Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title_full_unstemmed Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title_short Material quality & SRF performance of Nb films grown on Cu via ECR plasma energetic condensation
title_sort material quality & srf performance of nb films grown on cu via ecr plasma energetic condensation
topic Accelerators and Storage Rings
url https://dx.doi.org/10.18429/JACoW-SRF2015-TUPB029
http://cds.cern.ch/record/2288264
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AT proslierthomas materialqualitysrfperformanceofnbfilmsgrownoncuviaecrplasmaenergeticcondensation
AT reececharles materialqualitysrfperformanceofnbfilmsgrownoncuviaecrplasmaenergeticcondensation
AT spradlinjoshua materialqualitysrfperformanceofnbfilmsgrownoncuviaecrplasmaenergeticcondensation