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Parton distributions from high-precision collider data

Richard D. Ball1The Higgs Centre for Theoretical Physics, University of Edinburgh, JCMB, KB, Mayfield Rd, Edinburgh, EH9 3JZ ScotlandValerio Bertone2Department of Physics and Astronomy, VU University, 1081 HV Amsterdam, The NetherlandsStefano Carrazza4Theoretical Physics Department, CERN, 1211 Geneva, SwitzerlandLuigi Del Debbio1The Higgs Centre for Theoretical Physics, University of Edinburgh, JCMB, KB, Mayfield Rd, Edinburgh, EH9 3JZ ScotlandStefano Forte5Tif Lab, Dipartimento di Fisica, Università di Milano, Milano, ItalyP. Groth-Merrild1The Higgs Centre for Theoretical Physics, University of Edinburgh, JCMB, KB, Mayfield Rd, Edinburgh, EH9 3JZ ScotlandAlberto Guffanti7Dipartimento di Fisica, Università di Torino, Turin, ItalyNathan P. Hartland2Department of Physics and Astronomy, VU University, 1081 HV Amsterdam, The NetherlandsZahari Kassabov5Tif Lab, Dipartimento di Fisica, Università di Milano, Milano, ItalyJosé I. Latorre10Center for Quantum Technologies, National University of Singapore, Singapore, SingaporeEmanuele R. Nocera11Rudolf Peierls Centre for Theoretical Physics, 1 Keble Road, University of Oxford, OX1 3NP Oxford, UKJuan Rojo2Department of Physics and Astronomy, VU University, 1081 HV Amsterdam, The NetherlandsLuca Rottoli11Rudolf Peierls Centre for Theoretical Physics, 1 Keble Road, University of Oxford, OX1 3NP Oxford, UKEmma Slade11Rudolf Peierls Centre for Theoretical Physics, 1 Keble Road, University of Oxford, OX1 3NP Oxford, UKMaria Ubiali12Cavendish Laboratory, HEP Group, University of Cambridge, J.J. Thomson Avenue, Cambridge, CB3 0HE UK
2017en
ABI

Аннотация

We present a new set of parton distributions, NNPDF3.1, which updates NNPDF3.0, the first global set of PDFs determined using a methodology validated by a closure test. The update is motivated by recent progress in methodology and available data, and involves both. On the methodological side, we now parametrize and determine the charm PDF alongside the light-quark and gluon ones, thereby increasing from seven to eight the number of independent PDFs. On the data side, we now include the D0 electron and muon W asymmetries from the final Tevatron dataset, the complete LHCb measurements of W and Z production in the forward region at 7 and 8 TeV, and new ATLAS and CMS measurements of inclusive jet and electroweak boson production. We also include for the first time top-quark pair differential distributions and the transverse momentum of the Z bosons from ATLAS and CMS. We investigate the impact of parametrizing charm and provide evidence that the accuracy and stability of the PDFs are thereby improved. We study the impact of the new data by producing a variety of determinations based on reduced datasets. We find that both improvements have a significant impact on the PDFs, with some substantial reductions in uncertainties, but with the new PDFs generally in agreement with the previous set at the one-sigma level. The most significant changes are seen in the light-quark flavor separation, and in increased precision in the a e-mail: stefano.forte

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