Smooth, homogeneous, high-purity Nb3Sn superconducting RF resonant cavity by seed-free electrochemical synthesis

Author:

Sun ZemingORCID,Baraissov ZhaslanORCID,Porter Ryan D,Shpani Liana,Shao Yu-Tsun,Oseroff ThomasORCID,Thompson Michael O,Muller David A,Liepe Matthias U

Abstract

AbstractWorkbench-size particle accelerators, enabled by Nb3Sn-based superconducting radio-frequency (SRF) cavities, hold the potential of driving scientific discovery by offering a widely accessible and affordable source of high-energy electrons and x-rays. Thin-film Nb3Sn RF superconductors with high quality factors, high operation temperatures, and high-field potentials are critical for these devices. However, surface roughness, non-stoichiometry, and impurities in Nb3Sn deposited by conventional Sn-vapor diffusion prevent them from reaching their theoretical capabilities. Here we demonstrate a seed-free electrochemical synthesis that pushes the limit of chemical and physical properties in Nb3Sn. Utilization of electrochemical Sn pre-deposits reduces the roughness of converted Nb3Sn by five times compared to typical vapor-diffused Nb3Sn. Quantitative mappings using chemical and atomic probes confirm improved stoichiometry and minimized impurity concentrations in electrochemically synthesized Nb3Sn. We have successfully applied this Nb3Sn to the large-scale 1.3 GHz SRF cavity and demonstrated ultra-low BCS surface resistances at multiple operation temperatures, notably lower than vapor-diffused cavities. Our smooth, homogeneous, high-purity Nb3Sn provides the route toward high efficiency and high fields for SRF applications under helium-free cryogenic operations.

Funder

U.S. DOE

U.S. National Science Foundation

Publisher

IOP Publishing

Subject

Materials Chemistry,Electrical and Electronic Engineering,Metals and Alloys,Condensed Matter Physics,Ceramics and Composites

Reference75 articles.

1. Microwave superconductivity;Anlage;IEEE J. Microw.,2021

2. Superconducting microresonators: physics and applications;Zmuidzinas;Annu. Rev. Condens. Matter Phys.,2012

3. Superconducting radio-frequency cavities;Padamsee;Annu. Rev. Nucl. Part. Sci.,2014

4. X-ray free-electron lasers;McNeil;Nat. Photon.,2010

5. Features and futures of x-ray free-electron lasers;Huang;Innovation,2021

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