Zhukovsky A., Michael P.C., Doody J., Golfinopoulos T., Hartwig Z.S., Vieira R.F., Fry V., Ihloff E., Nash D., Schweiger S., O’Shea C., Watterson A., Barnett R., Voirin E.A., Bartoszek L., Lations R.F.
Michael P.C., Cheng J., Labombard B., Brunner D., Golfinopoulos T., Hartwig Z.S., et all, Wolf M., Vieira R.F., Lammi C.J., Voirin E., Barnett R., Bartoszek L., Agabian S., Dunn D., Barry M., Chamberlain S., Chavarria D., at all
Ключевые слова: Tokamak, HTS, REBCO, cables, coils toroidal, coils model, SPARC program, fabrication, review, design parameters, current leads, feeder, cryogenic systems, cryocoolers
Zhukovsky A., Michael P.C., Labombard B., Vieira R., Beck W., Doody J., Golfinopoulos T., Johnson R., Wolf M.J., Hartwig Z., Estrada J., Fry V., Ihloff E., Voirin E., Nash D., Schweiger S., O’Shea C., Watterson A., Barnett R., Bartoszek L., Lane-Walsh S., Muncks J.P., Santoro F., Stillerman J., Wilcox S., Chamberlain S., Chavarria D., Pfeiffer A., Pierson S., Ravikumar D.K., Rowell M., Vidal C., Burke W., Byford W., Cote K., Dombrowski E., Doos R., Fulton M., Levine M., Metcalfe K.
Ключевые слова: facility, magnets, Tokamak, design parameters, coils toroidal, coils model, HTS, REBCO, tapes, current leads, VIPER cable, bus bar conductor, cryogenic systems, cooling technology, cryostat, control systems, vacuum structure, shields, irradiation effects, nitrogen liquid , helium supercritical, power supply
Zhukovsky A., Michael P.C., Golfinopoulos T., Hartwig Z.S., Wolf M.J., Beck W.K., Vieira R.F., Estrada J., Fry V., Ihloff E., Barnett R., Vidal C.
Ключевые слова: facility, SPARC program, HTS, REBCO, coils toroidal, coils model, cryogenic systems, nitrogen liquid , current leads, design, design parameters, fabrication, operational performance, VIPER cable, test results, review
Michael P.C., Badcock R.A., Castaldo B., Davies M., Hartwig Z., Salazar E.E., Segal M., Vieira R.F., Estrada J., Fry V., Bajko M.-3, Gonzales J.T.
Ключевые слова: SULTAN, fibers, optical properties, measurement technique, quench detection, HTS, cables, magnets, cooling technology, test results, VIPER cable, facility
Zhou L., Takayasu M., Radovinsky A., Bajko M., Michael P.C., Badcock R.A., Golfinopoulos T., Hartwig Z.S., Sorbom B.N., Beck W.K., Irby J.H., Kuznetsov S., Castaldo B., Davies M., Pfeiffer A.T., Pierson S.Z., Rowell M.D., Salazar E.E., Segal M., Stahle P.W., Toland T.L., Vieira R.F., Craighill C.L., Estrada J., Fry V., Hubbard A.E., Lammi C.J., Mouratidis T., Murray R.A.
Ключевые слова: NMR magnet, HTS, REBCO, coated conductors, coils insert, magnetization, screening current, distribution, modeling, numerical analysis, remanent field, current distribution, magnetic field distribution, current density, coils pancake, torque, mechanical properties, stress distribution, screen, resonance effects
Ключевые слова: NMR magnet, hybrid systems, LTS, HTS, REBCO, coated conductors, coils insert, coils pancake, insulationless, design, fabrication, test results, winding techniques, critical caracteristics, critical current, n-value, displacements, resistivity, fabrication, current-voltage characteristics, magnetic field distribution, heat loads
Ключевые слова: NMR magnet, hybrid systems, LTS, Nb3Sn, HTS, Bi2223, tapes, REBCO, coated conductors, design, fabrication, prototype, screening current, design parameters, shimming
Ключевые слова: NMR magnet, LTS, HTS, coils insert, insulationless, coils pancake, REBCO, coated conductors, hybrid systems, screening current, design parameters, flux density, distribution, test results, screen, induced field
Minervini J.V., Michael P.C., Vieira R., Whyte D.G., Leccacorvi R., Sorbom B.N., Wright G.M., Beck W.K., Terry D.R., Irby J.H., Marmar E.S.
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