Physics at a 100 TeV pp Collider: Standard Model Processes
2017
Citations Over Time
M. Mangano, Giulia Zanderighi, J. A. Aguilar–Saavedra, S. Alekhin, Simon Badger, C. Bauer, Thomas Becher, Valerio Bertone, Marco Bonvini, S. Boselli, Enrico Bothmann, Radja Boughezal, Matteo Cacciari, C. M. Carloni Calame, Fabrizio Caola, John M. Campbell, Stefano Carrazza, Mauro Chiesa, Leandro Cieri, F. Cimaglia, F. Febres Cordero, Piero Ferrarese, D. d’Enterria, Giancarlo Ferrera, Xavier Garcia i Tormo, Maria Vittoria Garzelli, E. Germann, Valentin Hirschi, Tao Han, Harald Ita, Barbara Jäger, Stefan Kallweit, Alexander Karlberg, Silvan Kuttimalai, Frank Krauss, Andrew J. Larkoski, Jonas M. Lindert, G. Luisoni, Philipp Maierhöfer, Olivier Mattelaer, H. Martı́nez, S. Moch, G. Montagna, M. Moretti, Paolo Nason, O. Nicrosini, S. Michizono, Davide Pagani, Andreas Papaefstathiou, F. Petriello, F. Piccinini, M. Pierini, T. Pierog, Stefano Pozzorini, Emanuele Ré, Tania Robens, Juan Rojo, Richard Ruíz, Kazuki Sakurai, Gavin P. Salam, L. Salfelder, Marek Schönherr, Markus Schulze, S. Schumann, M. Selvaggi, Ambresh Shivaji, Andrzej Siódmok, Peter Skands, Paolo Torrielli, Francesco Tramontano, Ioannis Tsinikos, Brock Tweedie, A. Vicini, Susanne Westhoff, Marco Zaro, D. Zeppenfeld
Abstract
This report summarises the properties of Standard Model processes at the 100 TeV pp collider. We document the production rates and typical distributions for a number of benchmark Standard Model processes, and discuss new dynamical phenomena arising at the highest energies available at this collider. We discuss the intrinsic physics interest in the measurement of these Standard Model processes, as well as their role as backgrounds for New Physics searches.
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