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  • CMS structural equilibrium ...
    Arce, P.; Barcala, J.M.; Calvo, E.; Ferrando, A.; Josa, M.I.; Molinero, A.; Navarrete, J.; Oller, J.C.; Brochero, J.; Calderón, A.; Fernández, M.G.; Gómez, G.; González-Sánchez, F.J.; Martínez-Rivero, C.; Matorras, F.; Rodrigo, T.; Scodellaro, L.; Sobrón, M.; Vila, I.; Virto, A.L.; Fernández, J.; Raics, P.; Szabó, Zs; Trócsnyi, Z.; Ujvári, B.; Zilizi, Gy; Béni, N.; Christian, G.; Imrek, J.; Molnár, J.; Novak, D.; Pálinkás, J.; Székely, G.; Szillási, Z.; Bencze, G.L.; Vesztergombi, G.; Benettoni, M.; Gasparini, F.; Montecassiano, F.; Rampazzo, M.; Zago, M.; Benvenuti, A.; Reithler, H.; Ruiz-Árbol, P.; Jiang, C.

    Nuclear instruments & methods in physics research. Section A, Accelerators, spectrometers, detectors and associated equipment, 05/2012, Letnik: 675
    Journal Article

    A study of the time required for the CMS detector to reach structural equilibrium once the magnetic field is ramped to its operational value of 3.8T is presented. In addition, the results from a stability monitoring at 3.8T over an eight-month period are given.