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Abramowicz, H; Affolder, A A; Alstaty, M; Anders, J K; Angelidakis, S; Anisenkov, A V; Arce, A T H; Ashkenazi, A; Beddall, A; Bellerive, A; Brochu, F M; Bruni, L S; Burckhart, H; Burka, K; Burmeister, I; Buzykaev, A R; Canale, V; Casado, M P; Cetin, S A; Chouridou, S; Clark, B L; Clarke, R N; Cooper-Sarkar, A M; Cortes-Gonzalez, A; Dang, N P; Deliot, F; Dell'Asta, L; Demilly, A; Deviveiros, P O; Doglioni, C; Duflot, L; Eckardt, C; Edwards, N C; Eigen, G; Ellert, M; Esposito, B; Fawcett, W J; Fiolhais, M C N; Fisher, W C; Gaycken, G; Glaysher, P C F; Hadef, A; Hickling, R; Hill, J C; Hobbs, J; Hrivnac, J; Idrissi, Z; Izen, J M; Kado, M; Karpova, Z M; Karthik, K; Kawagoe, K; Korolkova, E V; Kroseberg, J; Kuehn, S; Ladygin, E; Lampl, W; Law, A T; Lee, S C; Miotto, G Lehmann; Lei, X; Li, S; Martinez, N Lorenzo; Lou, X; Lucotte, A; Maier, T; Manzoni, S; Marzin, A; Sanchez, F J Munoz; Navarro, G; Negrini, M; Olszowska, J; Perini, L; Pilcher, J E; Protopopescu, S; Rizvi, E; Sauvage, G; Schumacher, M; Serin, L; Simioni, E; Slavicek, T; Smith, R W; Sobie, R; Taiblum, N; Tapprogge, S; Tibbetts, M J; Timoshenko, S; Trocmé, B; Trovatelli, M; Tudorache, A; Van Nieuwkoop, J; Varol, T; Viehhauser, G H A; Wessels, M; Wingerter-Seez, I; Wittgen, M; Wyatt, T R; Yakabe, R; Zhang, L; Zhou, B
The European physical journal. C, Particles and fields, 2016, Letnik: 76, Številka: 12Journal Article
The dijet production cross section for jets containing a -hadron ( -jets) has been measured in proton-proton collisions with a centre-of-mass energy of Formula: see text TeV, using the ATLAS detector at the LHC. The data used correspond to an integrated luminosity of Formula: see text. The cross section is measured for events with two identified -jets with a transverse momentum Formula: see text GeV and a minimum separation in the Formula: see text-Formula: see text plane of Formula: see text. At least one of the jets in the event is required to have Formula: see text GeV. The cross section is measured differentially as a function of dijet invariant mass, dijet transverse momentum, boost of the dijet system, and the rapidity difference, azimuthal angle and angular distance between the -jets. The results are compared to different predictions of leading order and next-to-leading order perturbative quantum chromodynamics matrix elements supplemented with models for parton-showers and hadronization.
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