Generalized multilayer model shows n=1 SIS coatings are optimal for maximum field in SRF applications, with minor penalty for sub-penetration-depth superconducting layers and degradation from thicker transition regions.
Advances in Nb 3Sn superconducting radiofrequency cavities towards first practical accelerator applications
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Analytical modeling suggests iron-based superconductor multilayers can sustain higher magnetic fields with lower surface resistance than bulk niobium for SRF applications.
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Multilayer model for coatings with arbitrary layers for superconducting radio-frequency applications
Generalized multilayer model shows n=1 SIS coatings are optimal for maximum field in SRF applications, with minor penalty for sub-penetration-depth superconducting layers and degradation from thicker transition regions.
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Analytical evaluation of surface barrier and resistance in iron-based superconducting multilayers for Superconducting Radio-Frequency applications
Analytical modeling suggests iron-based superconductor multilayers can sustain higher magnetic fields with lower surface resistance than bulk niobium for SRF applications.