Andreev N., Zlobin A.V., Ambrosio G., Caspi S., Ferracin P., Lamm M.J., Tartaglia M., Anerella M., Schmalzle J., Wanderer P., Sylvester C., Velev G.V., Dimarco J., Kashikhin V.V., Bossert R., Escallier J., Nobrega F., Felice H., Sabbi G.L., Chlachidze G., Prebys E.
Ключевые слова: LTS, Nb3Sn, accelerator magnets, magnets quadrupole, measurement technique, high field magnets, quality control
Ключевые слова: LTS, Nb3Sn, magnets quadrupole, RRR parameter, stability, quench current, critical caracteristics, critical current, experimental results
Ключевые слова: accelerator magnets, LHC, modeling, experimental results, comparison, magnets dipole, magnets quadrupole, design parameters, high field magnets
Ключевые слова: magnets quadrupole, accelerator magnets, vacuum structure, design, cryogenic systems, cryostat, heat transfer, heat leakage, high field magnets
Ключевые слова: accelerator magnets, irradiation effects, magnets quadrupole, modeling, thermal performance, high field magnets
Pal G., Bhandari R.K., Roy S., Nandi C., Mallik C., Akhter J., Datta A., Sarma P.R., Bhunia U., Bhattacharyya S., Bajirao S., Bhattacharyya T.K., Dey M.K.
Ключевые слова: accelerator magnets, magnets quadrupole, cryogenic systems, cryostat, mechanical properties, stress effects, quench, LTS, NbTi, coils, design, heat loads, quench, high field magnets
Ambrosio G., Lamm M., Caspi S., Ferracin P., Anerella M., Cozzolino J., Schmalzle J., Wanderer P., Felice H., Sabbi G., Kovach P.
Ключевые слова: LHC, magnets quadrupole, supporting structure, design, fabrication, test results, LTS, Nb3Sn
Ключевые слова: magnets quadrupole, measurement technique, magnetic properties, vibration, measurement setup, loop
Zlobin A.V., Ambrosio G., Caspi S., Ferracin P., Tartaglia M., Anerella M., Schmalzle J., Wanderer P., Sylvester C., Hafalia A.R., Bossert R., Nobrega F., Felice H., Prestemon S., Sabbi G.L., Bingham B., Cheng D.W., Chlachidze G., Mumper W.
Ключевые слова: LTS, Nb3Sn, magnets quadrupole, mechanical properties, LHC
Ambrosio G., Andreev N., Anerella M., Barzi E., Bingham B., Bocian D., Bossert R., Caspi S., Chlachidize G., Dietderich D., Escallier J., Felice H., Ferracin P., Ghosh A., Godeke A., Hafalia R., Hannaford R., Jochen G., Kashikhin V.V., Kim M.J., Kovach P., Lamm M., McInturff A., Muratore J., Nobrega F., Novitsky I., Orris D., Prebys E., Prestemon S., Sabbi G.L., Schmalzle J., Sylvester C., Tartaglia M., Turrioni D., Velev G., Wanderer P., Whitson G., Zlobin A.V.
Ключевые слова: LTS, Nb3Sn, magnets quadrupole, LHC, test results, gradient, quench current
Ключевые слова: accelerator magnets, LTS, NbTi, Nb3Sn, LHC, spectrometer, critical caracteristics, current-voltage characteristics, review, Rutherford cables, magnets dipole, bus bar conductor, magnets quadrupole, detector, economic analysis, current leads, HTS, Bi2223, joints, cables, presentation, high field magnets
Schwerg N., Fessia P., Auchmann B., Russenschuck S., Perez J.C., Ramos D., Karppinen M., Kirby G., Sahner T.
Ключевые слова: magnets quadrupole, LHC, LTS, NbTi, design, design parameters
Ferracin P., Ambrosio G., Anerella M., Bingham B., Bossert R., Caspi S., Cheng D.W., Chlachidze G., Felice H., Hafalia A.R., Nobrega F., Prestemon S., Sabbi G.L., Schmalzle J., Sylvester C., Tartaglia M., Wanderer P., Zlobin A.V., Mumper W.
Ключевые слова: magnets quadrupole, LTS, Nb3Sn, design, design parameters, LHC, mechanical properties, stress effects, quench properties, test results
Andreev N., Zlobin A.V., Ambrosio G., Caspi S., Ferracin P., Lamm M.J., Tartaglia M., Anerella M., Schmalzle J., Wanderer P., Velev G.V., Dimarco J., Kashikhin V.V., Bossert R., Escallier J., Nobrega F., Felice H., Sabbi G.L., Chlachidze G., Prebys E.
Ключевые слова: magnets quadrupole, LTS, Nb3Sn, LHC, experimental results, magnetic field dependence, quality control
Barzi E., Andreev N., Yamada R., Zlobin A.V., Lamm M.J., Tartaglia M., Tompkins J.C., Orris D., Kashikhin V.V., Turrioni D., Bossert R., Novitski I., Nobrega F., Kashikhin V.S., Chlachidze G.
Ключевые слова: magnets quadrupole, LTS, Nb3Sn, RRP process, coils model, test results, quench current, training effect, temperature dependence
Sato K., Yoshida K., Tsuchihashi T., Ito H., Yano Y., Kubo T., Kusaka K., Yoshida A., Ohnishi T., Ohtake M., Kakutani N., Nobutoki M.
Ambrosio G., Lamm M., Caspi S., Anerella M., Cozzolino J., Schmalzle J., Wanderer P., Felice H., Sabbi G., Kovach P.
Ключевые слова: LTS, Nb3Sn, magnets quadrupole, mechanical properties, LHC, accelerator magnets, design, modeling, high field magnets
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