Tommasini D., Arbelaez D.*11, Auchmann B., Bajas H., Bajko M., Ballarino A., Barzi E.*10, Bellomo G., Benedikt M., Bermudez S.I., Bordini B., Bottura L., Brower L.*11, Buzio M., Caiffi B., Caspi S.*11, Dhalle M., Durante M., DeRijk G., Fabbricatore P., Farinon S., Ferracin P., Gao P., Gourlay S.*11, Juchno M.*11, Kashikhin V.*10, Lackner F., Lorin C., Marchevsky M.*11, Marinozzi V., Martinez T., Munilla J., Novitski I.*10, Ogitsu T., Ortwein R., Perez J.C., Petrone C., Prestemon S.*11, Prioli M., Rifflet J., Rochepault E., Russenschuck S., Salmi T., Savary F., Schoerling D., Segreti M., Senatore C., Sorbi M., Stenvall A., Todesco E., Toral F., Verweij A.P., Wessel S., Wolf F., Zlobin A.V.*10
Ferracin P., Willering G., Rijk G.d., Perez J.C., Manil P., Guinchard M., Rochepault E., Rondeaux F., Bourcey N., Rifflet J., Grosclaude P.
Ключевые слова: LHC, luminosity, magnets dipole, LTS, Nb3Sn, PIT process, RRP process, coils racetrack, test results, design, design parameters, fabrication, loads, training effect, quench current, mechanical properties, stress effects, test results
Bottura L., Ferracin P., Bordini B., Willering G., Bajko M., Rifflet J.M., Feuvrier J., Rijk G.d., Bajas H., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Bourcey N., Duda M., Petrone C., Grosclaude P., Mangiarotti F.
Ключевые слова: LTS, Nb3Sn, Rutherford cables, magnets dipole, cooling technology, quench protection, high field magnets, training effect, hot spots, test results
Ferracin P., Rijk G., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Bourcey N., Gauthier R., Pincot F.O., Rifflet J., Grosclaude P., Peray N., Ferradas J., Zurita A.C.
Ключевые слова: LTS, Nb3Sn, magnets dipole, fabrication, high field magnets, coils
Bruzzone P., Bottura L., Ferracin P., Portone A., Sabbi G., Minervini J., Cau F., Prestemon S., Testoni P., Rijk G.d., Ravaioli E., Rochepault E.
Ключевые слова: cables, cable-in-conduit conductor, Rutherford cables, coils insert, high field tests, design, measurement technique, EDIPO, quench protection, LTS, Nb3Sn, magnets dipole
Volpini G., Fabbricatore P., Dhalle M., Bottura L., Ogitsu T., Farinon S., Verweij A.P., Ferracin P., Senatore C., Wessel S., Bellomo G., Sorbi M., Bordini B., Toral F., Bajko M., Savary F., Todesco E., Tommasini D., Auchmann B., Russenschuck S., Stenvall A., Ballarino A., Lorin C., Rijk G.d., Bajas H., Salmi T., Schoerling D., Buzio M., Lackner F., Durante M., Segreti M., Rochepault E., Martinez T., Bermudez S.I., Gao P., Marinozzi V., Benedikt M., Perez J., Rifflet J., Munilla J., Ortwein R., Prioli M., Wolf F.
Ключевые слова: FCC, magnets dipole, LTS, Nb3Sn, coils racetrack, model small-scale, design parameters
Ключевые слова: design parameters, numerical analysis, mechanical properties, quench protection, LTS, Nb3Sn, high field magnets, FCC, coils racetrack, coils model, magnets, design
Ferracin P., Rijk G.d., Perez J.C., Manil P., Rochepault E., Rondeaux F., Bourcey N., Gauthier R., Rifflet J., Tavares S.S., Maury G.
Ключевые слова: LTS, Nb3Sn, magnets dipole, fabrication, deformation, heat treatment, impregnation
Ferracin P., Ambrosio G., Anerella M., Ballarino A., Bajas H., Bajko M., Bordini B., Bossert R., Cheng D.W., Dietderich D.R., Chlachidze G., Cooley L., Felice H., Ghosh A., Hafalia R., Holik E., Bermudez S.I., Fessia P., Grosclaude P., Guinchard M., Juchno M., Krave S., Lackner F., Marchevsky M., Marinozzi V., Nobrega F., Oberli L., Pan H., Perez J.C., Prin H., Rysti J., Rochepault E., Sabbi G., Salmi T., Schmalzle J., Sorbi M., Tavares S.S., Todesco E., Wanderer P., Wang X., Yu M.
Ключевые слова: LTS, Nb3Sn, strands, cables, magnets quadrupole, LHC, luminosity, design, design parameters, fabrication, quench protection
Ferracin P., Ambrosio G., Anerella M., Ballarino A., Bajas H., Bajko M., Bordini B., Bossert R., Cheng D.W., Dietderich D.R., Chlachidze G., Cooley L., Felice H., Ghosh A., Hafalia R., Holik E., Bermudez S.I., Fessia P., Grosclaude P., Guinchard M., Juchno M., Krave S., Lackner F., Marchevsky M., Marinozzi V., Nobrega F., Oberli L., Pan H., Perez J.C., Prin H., Rysti J., Rochepault E., Sabbi G., Salmi T., Schmalzle J., Sorbi M., Tavares S.S., Todesco E., Wanderer P., Wang X., Yu M.
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, magnets quadrupole, strands, cables, design parameters, current, quench protection
Ambrosio G., Ferracin P., Dietderich D.R., Anerella M., Schmalzle J., Ghosh A.K., Bossert R., Cheng D., Pong I., Sabbi G.L., Yu M., Holik E.F., Nobrega A., Rochepault E., Krave S., Bermudez S.I., Cavanna E., Perez J.D.
Ключевые слова: LTS, Nb3Sn, coils, magnets quadrupole, fabrication, LHC, luminosity, Rutherford cables, RRP process, PIT process, winding configurations, impregnation, displacements
Ambrosio G., Dietderich D., Ferracin P., Ghosh A., Schmalzle J., Bossert R., Hagen P., Todesco E., Cheng D., Ballarino A., Yu M., Perez J.C., Rochepault E., Bermudez S.I., Holik E., Cavanna E.
Ключевые слова: LHC, luminosity, accelerator magnets, LTS, Nb3Sn, magnets quadrupole, termination, design, coils, Rutherford cables, design parameters, design
Ferracin P., Rijk G.d., Perez J.C., Manil P., Durante M., Rochepault E., Rondeaux F., Gauthier R., Tavares S.S., *1 Garcia J.E., Rifflet J.-M.
Ключевые слова: LTS, Nb3Sn, coils pancake, fabrication, magnets dipole, accelerator magnets, coils wind-and-react, impregnation, winding techniques, heat treatment
Bottura L., Ferracin P., Bordini B., Bajko M., Feuvrier J., Rijk G.d., Bajas H., Perez J.C., Rochepault E., Chiuchiolo A., Juchno M., Rysti J., Sarasola X., Grosclaude P.
Ключевые слова: LTS, Nb3Sn, strands, cables, design parameters, coils racetrack, coils model, test results, magnets dipole, training effect, quench properties, inductance, quench current, high field magnets
Ambrosio G., Ferracin P., Dietderich D.R., Anerella M., Ghosh A., Schmalzle J., Bordini B., Felice H., Cheng D., Ballarino A., Pong I., Yu M., Holik E.F., Bonasia A., Perez J.C., Rochepault E., Bermudez S.I., Fajardo L.G.
Ключевые слова: LTS, Nb3Sn, Rutherford cables, heat treatment, geometry effects, fabrication, experimental results
Ferracin P., Ambrosio G., Anerella M., Ballarino A., Bajas H., Bajko M., Bordini B., Bossert R., Cheng D.W., Dietderich D.R., Chlachidze G., Cooley L., Felice H., Ghosh A., Hafalia R., Holik E., Bermudez S.I., Fessia P., Grosclaude P., Guinchard M., Juchno M., Krave S., Lackner F., Marchevsky M., Marinozzi V., Nobrega F., Oberli L., Pan H., Perez J.C., Prin H., Rysti J., Rochepault E., Sabbi G., Salmi T., Schmalzle J., Sorbi M., Tavares S.S., Todesco E., Wanderer P., Wang X., Yu M.
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, strands, critical caracteristics, current-voltage characteristics, quench current, cables, coils, design, fabrication, mechanical properties, supporting structure
Godeke A., Caspi S., Dietderich D., Gourlay S., Wang X., Felice H., Marchevsky M., Prestemon S., Rochepault E., Brouwer L., Hafalia A., Lipton T.M.
Godeke A., Caspi S., Gourlay S., Dietderich D.R., Wang X., Felice H., Marchevsky M., Prestemon S., Rochepault E., Hafalia A., Brouwer L.N., Lipton T.
Ключевые слова: ion sources, LTS, NbTi, magnetic systems, multipole magnets, coils solenoidal, design
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