Zobrazeno 1 - 10
of 63
pro vyhledávání: '"Pudasaini, Uttar"'
Autor:
Lechner, Eric M., Trofimova, Olga, Angle, Jonathan W., DiGuilio, Madison C., Pudasaini, Uttar
While Nb3Sn theoretically offers better superconducting RF cavity performance (Q0 and Eacc) to Nb at any given temperature, peak RF magnetic fields consistently fall short of the 400 mT prediction. The relatively rough topography of vapor-diffused Nb
Externí odkaz:
http://arxiv.org/abs/2409.01569
Autor:
Sayeed, Md Nizam, Pudasaini, Uttar, Reece, Charles E., Eremeev, Grigory V., Elsayed-Ali, Hani E.
Nb3Sn films were fabricated by multilayer sequential sputtering on Nb at substrate temperatures ranging from room temperature to 250 {\deg}C. The multilayers were then annealed inside a separate vacuum furnace at 950 {\deg}C for 3h. The films materia
Externí odkaz:
http://arxiv.org/abs/2109.07066
Autor:
Sayeed, Md. Nizam, Pudasaini, Uttar, Reece, Charles E., Eremeev, Grigory V., Elsayed-Ali, Hani E.
Superconducting Nb3Sn films were fabricated on sapphire and fine grain Nb substrates by magnetron sputtering from a single stoichiometric Nb3Sn target. The structural, morphological and superconducting properties of the films annealed for 24 h at tem
Externí odkaz:
http://arxiv.org/abs/2007.07103
Autor:
Sayeed, Md Nizam, Pudasaini, Uttar, Reece, Charles E, Eremeev, Grigory V, Elsayed-Ali, Hani E
Superconducting Nb3Sn films can be synthesized by controlling the atomic concentration of Sn. Multilayer sequential sputtering of Nb and Sn thin films followed by high temperature annealing is considered as a method to fabricate Nb3Sn films, where th
Externí odkaz:
http://arxiv.org/abs/2004.10921
Autor:
Shakel, Md Sharifuzzaman, Sayeed, Md Nizam, Eremeev, Grigory V., Valente-Feliciano, Anne-Marie, Pudasaini, Uttar, Elsayed-Ali, Hani E.
Publikováno v:
In Vacuum November 2023 217
Nb3Sn (Tc ~ 18 K and Hsh ~ 400 mT) is a prospective material to replace Nb (Tc ~ 9 K and Hsh ~ 200 mT) in SRF accelerator cavities for significant cost reduction and performance enhancement. Because of its material properties, Nb3Sn is best employed
Externí odkaz:
http://arxiv.org/abs/1909.05695
Publikováno v:
In Vacuum June 2023 212
Nb3Sn has the potential to achieve superior performance in terms of quality factor, accelerating gradient and operating temperature (4.2 K vs 2 K) resulting in significant reduction in both capital and operating costs compared to traditional niobium
Externí odkaz:
http://arxiv.org/abs/1806.02845
Autor:
Sayeed, Md Nizam, Pudasaini, Uttar, Reece, Charles E., Eremeev, Grigory V., Elsayed-Ali, Hani E.
Publikováno v:
In Thin Solid Films 1 December 2022 763
Autor:
Sayeed, Md Nizam, Pudasaini, Uttar, Reece, Charles E., Eremeev, Grigory V., Elsayed-Ali, Hani E.
Publikováno v:
In Applied Surface Science 1 March 2021 541