Nb3Sn is currently the most promising material other than niobium for future superconducting radiofrequency cavities. Critical fields above 120 mT in pulsed operation and about 80 mT in CW have been achieved in cavity tests. This is large compared to the lower critical field as derived from the London penetration depth, extracted from low field surface impedance measurements. In this paper direct measurements of the London penetration depth from which the lower critical field and the superheating field are derived are presented. The field of first vortex penetration is measured under DC and RF fields. The combined results confirm that Nb3Sn cavities are indeed operated in a metastable state above the lower critical field but are cur...
Superconducting radio-frequency (SRF) resonator cavities provide extremely high quality factors \u3e...
In this article, the suitability of Nb3Sn to improve the performance of superconducting Radio-Frequ...
Nb₃Sn is a next-generation superconducting material that can be used for future superconducting radi...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiof...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiof...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiofr...
Nb3 Sn has the potential to significantly improve cryogenic efficiency and maximum fields in superco...
300 pagesNiobium-3 Tin (Nb3Sn) is the most promising alternative material for Superconducting Radiof...
A 1.3 GHz Nb_{3}Sn superconducting radio-frequency cavity prepared with a modified annealing step re...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Workbench-size particle accelerators, enabled by Nb3Sn-based superconducting radio-frequency (SRF) c...
We investigated the performance limitations of superconducting radio-frequency (SRF) cavities and ma...
We investigated the performance limitations of superconducting radio-frequency (SRF) cavities and ma...
Superconducting radio-frequency (SRF) resonator cavities provide extremely high quality factors \u3e...
Nb3Sn is a very promising candidate material for future SRF cavities. With a critical temperature m...
Superconducting radio-frequency (SRF) resonator cavities provide extremely high quality factors \u3e...
In this article, the suitability of Nb3Sn to improve the performance of superconducting Radio-Frequ...
Nb₃Sn is a next-generation superconducting material that can be used for future superconducting radi...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiof...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiof...
Nb3Sn is currently the most promising material other than niobium for future superconducting radiofr...
Nb3 Sn has the potential to significantly improve cryogenic efficiency and maximum fields in superco...
300 pagesNiobium-3 Tin (Nb3Sn) is the most promising alternative material for Superconducting Radiof...
A 1.3 GHz Nb_{3}Sn superconducting radio-frequency cavity prepared with a modified annealing step re...
Superconducting rf (SRF) cavities made of niobium are now approaching their theoretical superheating...
Workbench-size particle accelerators, enabled by Nb3Sn-based superconducting radio-frequency (SRF) c...
We investigated the performance limitations of superconducting radio-frequency (SRF) cavities and ma...
We investigated the performance limitations of superconducting radio-frequency (SRF) cavities and ma...
Superconducting radio-frequency (SRF) resonator cavities provide extremely high quality factors \u3e...
Nb3Sn is a very promising candidate material for future SRF cavities. With a critical temperature m...
Superconducting radio-frequency (SRF) resonator cavities provide extremely high quality factors \u3e...
In this article, the suitability of Nb3Sn to improve the performance of superconducting Radio-Frequ...
Nb₃Sn is a next-generation superconducting material that can be used for future superconducting radi...