Bottura L., Bordini B., Savary F., Fleiter J., Ballarino A., Perez J.C., Prin H., Lackner F., Smekens D., Bermudez S.I., Loffler C., Nilsson E., DeRijk G.
Ключевые слова: high field magnets, LHC, magnets dipole, LTS, Nb3Sn, luminosity, design, design parameters
Ambrosio G., Ferracin P., Wang X., Dimarco J., Sabbi G., Todesco E., Chlachidze G., Bermudez S.I., Holik E., Vallone G.
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, magnets quadrupole, design, design parameters, harmonic coefficients, experimental results, magnetic properties, magnetization
Ключевые слова: LHC, luminosity, magnets quadrupole, quench properties, Rutherford cables, LTS, Nb3Sn, NbTi, comparison, accelerator magnets, thermoelectric properties, modeling, numerical analysis, design parameters, flux density, distribution, temperature distribution, current distribution, quench energy
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, high field magnets, magnets dipole, design, design parameters, test results
Ogitsu T., Sasaki K., Sugano M., Tanaka K., Takahashi N., Nakamoto T., Kimura N., Higashi N., Iida M., Sugawara S., Todesco E., Okada R., Musso A., Okada N., Kawamata H., Enomoto S., Ohata H.
Ключевые слова: LHC, luminosity, coils model, fabrication, test results, magnets dipole, quench properties, LTS, NbTi, design, design parameters, mechanical properties, stress distribution, strain effects, training effect, upgrade
Ключевые слова: LHC, luminosity, quench detection, accelerator magnets, control systems, upgrade
Bottura L., Rossi L., Verweij A., Willering G., Siemko A., Bajko M., Fessia P., Hagen P., Modena M., Todesco E., Tommasini D., Auchmann B., Schmidt R., Rijk G.d., Perez J.C., Naour S.L., Bruning O., Tock J.
Ключевые слова: LHC, dip coating technique, training effect, LTS, NbTi, quench properties
Ключевые слова: LHC, luminosity, MgB2, cables, transient performance, links, quench, ac losses, helium gas, minimum quench energy, hot spots, numerical analysis, thermal stability, experimental results, upgrade
Bottura L., Bordini B., Bajko M., Savary F., Willering G.P., Feuvrier J., Rijk G.d., Bajas H., Karppinen M., Guinchard M., Smekens D., Fiscarelli L., Bermudez S.I., Loffler C., Perez J.-C.
Ferracin P., Scheuerlein C., Savary F., Todesco E., Perez J.C., Prin H., Principe R., Lackner F., Luzieux S., Duret M., Triquet S., Cavanna E., Ohnweiler T., Revilak P., Pozzobon M., Genestier T.
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, coils, prototype, fabrication, status, magnets quadrupole, supporting structure, heat treatment
Bottura L., Bajko M., Hagen P., Savary F., Todesco E., Willering G.P., Charifoulline Z., Prin H., Naour S.L., Charrondiere M., Dib G., D'Angelo G., Ditsch O.
Ключевые слова: LHC, magnets dipole, test long-term operation, quench properties, heater, quench current, training effect
Todesco E., Rijk G.d., Perez J.C., Kirby G.A., Nugteren J.v., Rysti J., Gentini L., Mazet J., Murtomдki J., Scibor K.
Ключевые слова: LHC, magnetic systems, accelerator magnets, coils, geometry effects, design parameters, design, LTS, NbTi, angular dependence, quench protection, winding techniques, plans
Ambrosio G., Ferracin P., Felice H., Pan H., Prestemon S., Cheng D.W., Perez J.C., Guinchard M., Bourcey N., Juchno M., Grosclaude P., Anderssen E., Vallone G., Fichera C.
Ключевые слова: LHC, luminosity, LTS, Nb3Sn, magnets quadrupole, model small-scale, mechanical properties, stress effects, strain effects
Ключевые слова: LHC, luminosity, mechanical properties, stress effects, strain effects, distribution, LTS, Nb3Sn, magnets dipole, tensile tests, elastic behavior
Volpini G., Bellomo G., Sorbi M., Toral F., Fessia P., Todesco E., Alessandria F., Statera M., Leone A., Paccalini A., Pedrini D., Quadrio M., Todero M., Marinozzi V., Musso A., Broggi F., Uva C.
Ключевые слова: LHC, luminosity, correction coils, design, cooling technology, test results, numerical analysis, upgrade
Bottura L., Zlobin A.V., Rossi L., Bordini B., Willering G., Bajko M., Savary F., Fleiter J., Foussat A., Rijk G.d., Perez J.C., Ramos D., Karppinen M., Prin H., Principe R., Lackner F., Smekens D., Fiscarelli L., Bermudez S.I., Tavares S.S., Lцffler C.H., Nilsson E.
Ключевые слова: LHC, luminosity, magnets dipole, LTS, Nb3Sn, design, design parameters, modeling, quench properties, prototype, impregnation, accelerator magnets, upgrade
Ключевые слова: LHC, accelerator magnets, magnets dipole, cable-in-conduit conductor, current leads, design, design parameters, shipboard applications, plans
Ambrosio G., Ferracin P., Felice H., Prestemon S.O., Pan H., Cheng D.W., Perez J.C., Juchno M., Anderssen E., Vallone G.
Ключевые слова: LHC, luminosity, magnets quadrupole, design, modeling, LTS, Nb3Sn, supporting structure, design parameters, numerical analysis, mechanical properties, stress effects
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