Kruger W., Bergauer T., Galatyuk T., Hirtl A., Kedych V., Kis M., Linev S., Michel J., Pietraszko J., Pitters F., Rost A., Schmidt C.J., Svintozelskyi V., Trager M., Traxler M., Ulrich-Pur F., Wendisch C.
Ключевые слова: accelerator magnets, medical applications
Schmidt C., Pfeiffer S., Zenker K., Gumus C., Hierholzer M., Michel P., Schlarb H., Schurig R., Steinbruck R., Kuntzsch M.
Ключевые слова: accelerator magnets, stability, electron irradiation, cavity, control systems, noise, measurement setup
Yanagi N., Saitoh H., Pedersen T.S., Stoneking M.R., Singer M., Stenson E.V., Horn-Stanja J., Nibl S., Hergenhahn U., Hugenschmidt C.3, Dickmann M., Danielson J.R., Surko C.M.
Ключевые слова: HTS, Bi2223, tapes, coils, levitation performance, confinement
Eisterer M., Weber H.W., Sokolovsky V., Goldacker W., Habisreuther T., Prikhna T.A., Moshchil V.E., Sverdun V.B., Schmidt C., Kozyrev A.V., Shapovalov A.P., Kovylaev V.V., Karpets M.V., Shaternik A.V., Grechnev G.E., Boutko V.G., Gusev A.A., Romaka V.V., Shaternik V.E.*10
Ключевые слова: HTS, YBCO, thin films, oxygen release, films epitaxial, measurement technique, PLD process, critical temperature
Prikhna T., Gawalek W., Savchuk Y., Soldatov A., Sokolovsky V., Eisterer M., Weber H.W., Noudem J., Serga M., Turkevich V., Tompsic M., Tkach V., Danilenko N., Goldacker W., Karau F.*10, Fesenko I., Rindfleisch M., Dellith J., Wendt M., You S., Meerovich V., Dub S., Moshchil V., Sergienko N., Kozyrev A., Habisreuther T., Schmidt C., Litzkendorf D., Nagorny P*1., Sverdun V.
Prikhna T.A., Gawalek W., Tkach V.M., Danilenko N.I., Savchuk Y.M., Dub S.N., Moshchil V.E., Kozyrev A.V., Sergienko N.V., Wendt M., Melnikov V.S., Dellith J., Weber H., Eisterer M., Schmidt C., Habisreuther T., Litzkendorf D., Vajda J., Shapovalov A.P., Sokolovsky V., Nagorny P.A., Sverdun V.B., Kosa J., Karau F., Starostina A.V.
Kovalev L.K., Penkin V.T., Gawalek W., Goldacker W., Habisreuther T., Litzkendorf D., Prikhna T.A., Noudem J., Moshchil V.E., Sverdun V.B., Sergienko N.V., Schmidt C., Savchuk Y.M., Wendt M., Dub S.N., Melnikov V.S., Dellith J., Nagorny P.A., Dittrich U., Kozyrev A.V., Rozenberg O.A.
Ключевые слова: MgB2, bulk, high pressure processing, rings, cylinders, rods, Jc/B curves, temperature dependence, microstructure, doping effect, fabrication, critical caracteristics
Ключевые слова: HTS, YBCO, REBCO, Roebel conductors, ac losses, critical current, magnetic field dependence, coated conductors, power equipment, critical caracteristics
Ключевые слова: HTS, coated conductors, Roebel conductors, assembled conductors, critical current, critical caracteristics, self-field effect, transport currents, Bi2223, tapes, comparison, critical current, angular dependence, critical caracteristics, magnetic field dependence, experimental results, power equipment
Schlachter S.I., Heller R., Schmidt C., Frank A., Ringsdorf B., Goldacker W.(wilfried.goldacker@itp.fzk.de).), Weiss K.-P., S.Schuller
Goldacker W., Schlachter S.I., Heller R., Schmidt C., Frank A., Schacherer C., Schwarz M., Weiss K., Kling A., Jung A.
Ключевые слова: HTS, Roebel conductors, interstrand contact resistances, ac losses, YBCO, REBCO, coated conductors, critical current, magnetic field dependence, FCL resistive, current limiting characteristics, comparison, coils pancake, mechanical properties, bending process, stress effects, strain effects, current-voltage characteristics, presentation, power equipment, critical caracteristics
Goldacker W., Schlachter S.I., Heller R., Schmidt C., Frank A., Ringsdorf B., Weiss K.-P., Schuller S.
Gawalek W., Habisreuther T., Litzkendorf D., Prikhna T.A., Moshchil V.E., Sverdun V.B., Sergienko N.V., Schmidt C., Savchuk Y.M., Wendt M., Melnikov V.S., Dellith J., Nagorny P., Dittrich U.
Ключевые слова: HTS, REBCO, Roebel conductors, ac losses, experimental results, coated conductors, power equipment
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