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  • Performance of the ATLAS Tr...
    Abbott, B.; Aefsky, S.; Ahles, F.; Akimoto, G.; Andrei, V.; Anghinolfi, F.; Anulli, F.; Aperio Bella, L.; Arnault, C.; Barberio, E. L.; Brandenburg, G. W.; Cataneo, F.; Catmore, J. R.; Chelstowska, M. A.; Chen, H.; Chouridou, S.; Christidi, I. A.; Christov, A.; Ciftci, A. K.; Cortiana, G.; Crupi, R.; Davies, E.; Devetak, E.; Dolezal, Z.; Dowell, J. D.; Drees, J.; Fazio, S.; Fiascaris, M.; Fournier, D.; Fraternali, M.; Gauthier, L.; Gornicki, E.; Grivaz, J.-F.; Hansen, J. B.; Hernandez, C. M.; Hill, J. C.; Hirsch, F.; Huth, J.; Ishii, K.; Itoh, Y.; Jakobsen, S.; Kalinin, S.; Kaushik, V.; Kiyamura, H.; Kocnar, A.; Kolesnikov, V.; Kononov, A. I.; Kuzhir, P.; Lassnig, M.; Limper, M.; Liu, C.; Loureiro, K. F.; Lowe, A. J.; Luci, C.; Ludwig, J.; Maccarrone, G.; Massaro, G.; Masubuchi, T.; Morozov, S. V.; Nairz, A. M.; Nechaeva, P. Yu; Negri, A.; Nuncio-Quiroz, A.-E.; Onofre, A.; Paige, F.; Perrino, R.; Pylypchenko, Y.; Ratoff, P. N.; Resende, B.; Richter-Was, E.; Rizvi, E.; Romero Maltrana, D.; Ryabov, Y. F.; Ryder, N. C.; Rzaeva, S.; Salihagic, D.; Schram, M.; Schultes, J.; Shao, Q. T.; Shimizu, S.; Silverstein, S. B.; Sjölin, J.; Sloper, J.; Soldatov, E.; Suruliz, K.; Tatarkhanov, M.; Thoma, S.; Tipton, P.; Toczek, B.; Torró Pastor, E.; Ueno, R.; van der Ster, D.; Verducci, M.; Warsinsky, M.; Watts, S.; Wenig, S.; Williams, E.; Zhang, H.; Zhou, B.; Živković, L.

    The European physical journal. C, Particles and fields, 01/2012, Letnik: 72, Številka: 1
    Journal Article

    Proton–proton collisions at  TeV and heavy ion collisions at  TeV were produced by the LHC and recorded using the ATLAS experiment’s trigger system in 2010. The LHC is designed with a maximum bunch crossing rate of 40 MHz and the ATLAS trigger system is designed to record approximately 200 of these per second. The trigger system selects events by rapidly identifying signatures of muon, electron, photon, tau lepton, jet, and B meson candidates, as well as using global event signatures, such as missing transverse energy. An overview of the ATLAS trigger system, the evolution of the system during 2010 and the performance of the trigger system components and selections based on the 2010 collision data are shown. A brief outline of plans for the trigger system in 2011 is presented.