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
Ключевые слова: LHC, luminosity, magnets dipole, design, design parameters, upgrade
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, magnets quadrupole, quench protection, quench properties, design parameters, heater, hot spots, voltage, experimental results, upgrade
Ogitsu T., Sasaki K., Sugano M., Nakamoto T., Kimura N., Higashi N., Todesco E., Xu Q., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, magnets dipole, model small-scale, LTS, NbTi, mechanical properties, stress effects, strain effects, fabrication, iron yoke, upgrade
Ogitsu T., Sasaki K., Sugano M., Takahashi N., Nakamoto T., Kimura N., Higashi N., Todesco E., Xu Q., Okada R., Musso A., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, luminosity, magnets dipole, irradiation effects, design, design parameters, LTS, NbTi, iron yoke, fabrication, status, upgrade
Ключевые слова: accelerator magnets, high field magnets, persistent current mode, magnetization, FCC, magnets dipole, LTS, Nb3Sn, strands, design parameters, numerical analysis, modeling
Ferracin P., Felice H., Sabbi G., Todesco E., Stenvall A., Marchevsky M., Cheng D.W., Chlachidze G., Salmi T., Perez J.C., Bermudez S.I., Turqueti M., *2 Ambrosio G.
Ключевые слова: accelerator magnets, heater, geometry effects, design, quench protection, temperature distribution, experimental results
Dimarco J., Ambrosio G., Anerella M., Bajas H., Chlachidze G., Borgnolutti F., Bossert R., Cheng D., Dietderich D., Felice H., Holik T., Pan H., Ferracin P., Ghosh A., Godeke A., Hafalia A.R., Marchevsky M., Orris D., Ravaioli E., Sabbi G., Salmi T., Schmalzle J., Stoynev S., Strauss T., Sylvester C., Tartaglia M., Todesco E., Wanderer P., Wang X., Yu M.
Bottura L., Schmidt F., Hagen P., Todesco E., Camillocci M.S., Juchno M., Giovannozzi M., Lamont M., Wenninger J., Maclean E., Garcia R.T., Schaumann M.
Ключевые слова: LHC, modeling, magnets quadrupole, magnets dipole, plans
Ключевые слова: LTS, NbTi, accelerator magnets, numerical analysis, insulation, mechanical properties, deformation, heat treatment, high field magnets
Ключевые слова: LHC, magnets dipole, mechanical properties, luminosity, LTS, NbTi, modeling, cryogenic systems, cryostat, heat exchanger, iron yoke, deformation, design parameters, upgrade, quality control
Bottura L., Feher S., Verweij A., Willering G., Siemko A., Hagen P., Modena M., Todesco E., Auchmann B., Wollmann D., Steckert J., Tock J.-P., Charifoulline Z., Naour S.L., Bednarek M., Romera I.
Ключевые слова: LHC, magnets dipole, training effect, quench current
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
Bottura L., Godeke A., Ferracin P., Dietderich D.R., Gourlay S.A., Wang X., Sabbi G., Todesco E., Marchevsky M., Cheng D.W.
Ключевые слова: accelerator magnets, LTS, Nb3Sn, magnets dipole, design, quench protection, high field magnets
Ключевые слова: LHC, luminosity, magnets quadrupole, LTS, NbTi, design, design parameters, mechanical properties, stress distribution, upgrade
Volpini G., Bellomo G., Sorbi M., Toral F., Fessia P., Todesco E., Alessandria F., Leone A., Paccalini A., Pedrini D., Quadrio M., Todero M., Broggi F., Somaschini L., Uva C.
Ключевые слова: LHC, luminosity, correction coils, LTS, NbTi, design parameters, numerical analysis, hot spots, upgrade
Ambrosio G., Bellomo G., Sorbi M., Felice H., Todesco E., Marchevsky M., Chlachidze G., Salmi T., Marinozzi V.
Ключевые слова: LHC, luminosity, magnets quadrupole, quench protection, LTS, Nb3Sn, design parameters, inductance, dissipative properties, hot spots, heater, upgrade
Ключевые слова: LHC, magnetic systems, modeling, multipole magnets, control systems
Ogitsu T., Sasaki K., Sugano M., Nakamoto T., Kimura N., Higashi N., Todesco E., Idesaki A., Xu Q., Yoshida M., Iio M., Iwasaki R., Ikemoto Y., Okada N., Kawamata H., Enomoto S.
Ключевые слова: LHC, magnets dipole, modeling, LTS, NbTi, design, design parameters, mechanical properties, stress effects, numerical analysis, irradiation effects, coils, fabrication, model small-scale, upgrade
Bottura L., Godeke A., Ambrosio G., Caspi S., Dietderich D., Ferracin P., Wang X., Anerella M., Ghosh A., Wanderer P., Bossert R., Hafalia A. R., Felice H., Bajko M., Cheng D., Marchevsky M., Sabbi G.L., Yu M., Feuvrier J., Chlachidze G., Bajas H., Salmi T., Giloux C., Ravaioli E., Chiuchiolo A., Schmalzle J.*4 Todesco E.
Ключевые слова: test results, LTS, Nb3Sn, magnets quadrupole, quench properties, quench current, mechanical properties, hot spots
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