Wang X., Abraimov D., Arbelaez D., Bogdanof T.J., Brouwer L., Caspi S., Dietderich D.R., Dimarco J., Francis A., Fajardo L.G., Ghiorso W.B., Gourlay S.A., Higley H.C., Marchevsky M., Maruszewski M.A., Myers C.S., Prestemon S.O., Shen T., Taylor J., Teyber R., Turqueti M., Laan D.v., Weiss J.D.
Ключевые слова: HTS, REBCO, coated conductor, CORC cables, fabrication, magnets dipole, operational performance, accelerator magnets, design, design parameters, critical characteristics, current-voltage characteristics, n-value, critical current, joint resistances, ramp rates, temperature distribution, thermal runaway
Laan D.C., Knoll A., Carota G., Hazelton D., Jaroszynski J., Abraimov D., Weiss J.D., Francis A., Bradford G., Small M.A.
Ключевые слова: HTS, REBCO, coated conductors, critical characteristics, Jc/B curves, nitrogen liquid , helium liquid, comparison, measurement setup, measurement technique, resistive transition, critical current density, temperature dependence, angular dependence, magnetic field dependence, microstructure, nanodoping, nanorods, nanoscaled effects, size effect, pinning force, experimental results, numerical analysis
Weijers H.W., Larbalestier D.C., Laan D.C., Kim Y., Cooley L.D., Wang X.R., Trociewitz U.P., Abraimov D., Griffin V., Weiss J.D., Miller G., Francis A., Davis D.S., Gillman J.
Weijers H.W., Larbalestier D.C., Cooley L.D., Trociewitz U.P., Dixon I.R., Bird M.D., Kim K.L., Bai H., Abraimov D.V., Marshall W.S., Boebinger G.S.
Ключевые слова: HTS, REBCO, coated conductors, MOCVD process, doping effect, critical characteristics, Jc/B curves, composition, pinning force, microstructure, nanoscaled effects, nanorods, critical current density, magnetic field dependence, irreversibility fields, fabrication, experimental results
Selvamanickam V., Galstyan E., Jaroszynski J., Abraimov D., Majkic G., Kar S., Kochat M., Pratap R., Paidpilli M., Goel C.
Selvamanickam V., Galstyan E., Jaroszynski J., Abraimov D., Majkic G., Kar S., Luo W., Sandra J.S., Yerraguravagari V.
Ключевые слова: HTS, GdYBCO, MOCVD process, coated conductors, coils, flexibility, former, Cu-based conductors, bending radius, uniformity, critical current, current density, distribution, trapped field distribution, fabrication, critical characteristics, current-voltage characteristics, magnetic field dependence, Jc/B curves, experimental results
Larbalestier D.C., Tarantini C., Hellstrom E.E., Jiang J., Jaroszynski J., Abraimov D., Brown M.D., Bradford G.
Coombs T.A., Larbalestier D., Painter T.A., Bole S., Abraimov D., Viouchkov Y., Voran A., White M., Francis A., Geng J., Sossong D., Coombs T.G.
Ключевые слова: HTS, REBCO, coated conductors, cables, stacked blocks, coils solenoidal, insulationless, winding configurations, dc performance, design, design parameters, high current test, flux jumps, critical characteristics, angular dependence, termination, joint resistances, experimental results
Ключевые слова: HTS, REBCO, coated conductors, wires round, flexibility, double-side structures, critical characteristics, current-voltage characteristics, width, thickness dependence, bending radius, critical current, magnetic field dependence, critical current density, architecture, new, fabrication, test results, helium liquid, cryogenic systems
Weijers H.W., Grilli F., Trillaud F., Gavrilin A.V., HILTON D.K., Abraimov D.V., Zermeсo V.M., Berrospe-Juarez E.
Ключевые слова: high field magnets, hybrid systems, LTS, HTS, REBCO, coated conductors, coils insert, coils pancake, design parameters, ac losses, modeling, numerical analysis, current density, distribution
Selvamanickam V., Galstyan E., Wang X., Xu A., Jaroszynski J., Abraimov D., Prestemon S.O., Majkic G., Higley H.C., Pratap R.
Bottura L., Usoskin A., Goldacker W., Rossi L., Larbalestier D., Senatore C., Rutt A., Ballarino A., Prause B., Schlenga K., Abraimov D., Kario A., Meledin A., Betz U., Hofacker F.
Ключевые слова: textile machines, microstructure, nanoscaled effects, long conductors, thickness dependence, distribution, critical characteristics, critical current, flux density, helium, n-value, homogeneity, self-field effect, experimental results, HTS, coated conductors, width, geometry effects, assembled conductors, YBCO, PLD process, fabrication, doping effect, substrate stainless steel
Li X., Selvamanickam V., Galstyan E., Jaroszynski J., Abraimov D., Kar S., Luo W., Kochat M., Sandra J.S.
Larbalestier D.C., Kim Y., Chen P., Hellstrom E.E., Jiang J., Trociewitz U.P., Starch W.L., HILTON D.K., Abraimov D.V., Davis D.S., Bosque E.S.
Godeke A., Markiewicz W.D., Walsh R.P., Jaroszynski J., Bird M.D., Viouchkov Y.L., Noyes P.D., Marks E.L., McRae D.M., Abraimov D.V., Marshall W.S., White J.M., Francis A., Arroyo E., Barret N., Kurteva D.V., Pereira R.C.
Larbalestier D.C., Coulter J.Y., Polyanskii A., Rossi L., Kametani F., Hu X., Jaroszynski J., Abraimov D., Sinclair J.W., Stangl A.
Xu A., Zhang Y., Gharahcheshmeh M.H., Yao Y., Galstyan E., Abraimov D., Kametani F., Polyanskii A., Jaroszynski J., Griffin V., Majkic G., Larbalestier D.C., Selvamanickam V.
Ключевые слова: HTS, REBCO, coated conductors, coils pancake, quench properties, resistance, numerical analysis, quench protection
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