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      Measurement of Upsilon production in 7 TeV pp collisions at ATLAS

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          Abstract

          Using 1.8 fb-1 of pp collisions at a center-of-mass energy of 7 TeV recorded by the ATLAS detector at the Large Hadron Collider, we present measurements of the production cross sections of Upsilon(1S,2S,3S) mesons. Upsilon mesons are reconstructed using the di-muon decay mode. Total production cross sections for p_T<70 GeV and in the rapidity interval |Upsilon|<2.25 are measured to be 8.01+-0.02+-0.36+-0.31 nb, 2.05+-0.01+-0.12+-0.08 nb, 0.92+-0.01+-0.07+-0.04 nb respectively, with uncertainties separated into statistical, systematic, and luminosity measurement effects. In addition, differential cross section times di-muon branching fractions for Upsilon(1S), Upsilon(2S), and Upsilon(3S) as a function of Upsilon transverse momentum p_T and rapidity are presented. These cross sections are obtained assuming unpolarized production. If the production polarization is fully transverse or longitudinal with no azimuthal dependence in the helicity frame the cross section may vary by approximately +-20%. If a non-trivial azimuthal dependence is considered, integrated cross sections may be significantly enhanced by a factor of two or more. We compare our results to several theoretical models of Upsilon meson production, finding that none provide an accurate description of our data over the full range of Upsilon transverse momenta accessible with this dataset.

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          Towards a solution of the charmonium production controversy: k_t-factorization versus color octet mechanism

          The cross section of \chi_{cJ} hadroproduction is calculated in the k_t-factorization approach. We find a significant contribution of the \chi_{c1} state due to non-applicability of the Landau-Yang theorem because of off-shell gluons. The results are in agreement with data and, in contrast to the collinear factorization, show a dominance of the color singlet part and a strong suppression of the color octet contribution. Our results could therefore lead to a solution of the longstanding controversy between the color singlet model and the color octet mechanism.
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            Author and article information

            Journal
            30 November 2012
            2013-03-22
            Article
            10.1103/PhysRevD.87.052004
            1211.7255
            4f3b3d23-888a-4292-9a13-abad8d612a99

            http://arxiv.org/licenses/nonexclusive-distrib/1.0/

            History
            Custom metadata
            CERN-PH-EP-2012-295
            Phys. Rev. D 87, 052004 (2013)
            19 pages plus author list (32 pages total), 19 figures, 3 tables, submitted to Phys. Rev. D. All figures, including auxiliary figures are available at http://atlas.web.cern.ch/Atlas/GROUPS/PHYSICS/PAPERS/BPHY-2011-06/ Revision corresponds to published version
            hep-ex

            High energy & Particle physics
            High energy & Particle physics

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