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Measurement of the Υ(1S) production cross-section in pp collisions at √s=7 TeV in ATLAS

Title: Measurement of the Υ(1S) production cross-section in pp collisions at √s=7 TeV in ATLAS
Authors: ATLAS Collaboration; Aad, G.; Barreiro Alonso, Fernando; Cantero, J.; De la Torre, H.; Peso Malagón, José del; Glasman Kuguel, Claudia Beatriz; Labarga Echeverría, Luis Alfonso; Lagouri, T.; Llorente Merino, J.; March, Luis; Nebot, Eduardo; Rodier, Stephane; Terrón Cuadrado, Juan
Contributors: Departamento de Física de Materiales; Facultad de Ciencias
Publisher Information: CERN; Elsevier
Publication Year: 2016
Collection: Universidad Autónoma de Madrid (UAM): Biblos-e Archivo
Subject Terms: Física
Description: Artículo escrito por un elevado número de autores, solo se referencian el que aparece en primer lugar, el nombre del grupo de colaboración, si le hubiere, y los autores pertenecientes a la UAM ; A measurement of the cross-section for Υ (1S)→μ+μ− production in proton–proton collisions at centre of mass energy of 7 TeV is presented. The cross-section is measured as a function of the Υ (1S) transverse momentum in two bins of rapidity, |yΥ (1S)| < 1.2 and 1.2 < |yΥ (1S)| < 2.4. The measurement requires that both muons have transverse momentum pμ T > 4 GeV and pseudorapidity |ημ| < 2.5 in order to reduce theoretical uncertainties on the acceptance, which depend on the poorly known polarisation. The results are based on an integrated luminosity of 1.13 pb−1, collected with the ATLAS detector at the Large Hadron Collider. The cross-section measurement is compared to theoretical predictions: it agrees to within a factor of two with a prediction based on the NRQCD model including colour-singlet and colour-octet matrix elements as implemented in PYTHIA while it disagrees by up to a factor of ten with the next-to-leading order prediction based on the colour-singlet model ; We thank CERN for the very successful operation of the LHC, as well as the support staff from our institutions without whom ATLAS could not be operated efficiently. We also wish to thank Pierre Artoisenet, John Campbell and Torbjorn Sjostrand for their help with the theoretical predictions. We acknowledge the support of ANPCyT, Argentina; YerPhI, Armenia; ARC, Australia; BMWF, Austria; ANAS, Azerbaijan; SSTC, Belarus; CNPq and FAPESP, Brazil; NSERC, NRC and CFI, Canada; CERN; CONICYT, Chile; CAS, MOST and NSFC, China; COLCIENCIAS, Colombia; MSMT CR, MPO CR and VSC CR, Czech Republic; DNRF, DNSRC and Lundbeck Foundation, Denmark; ARTEMIS, European Union; IN2P3–CNRS, CEA-DSM/IRFU, France; GNAS, Georgia; BMBF, DFG, HGF, MPG and AvH Foundation, Germany; GSRT, Greece; ISF, MINERVA, GIF, DIP and Benoziyo Center, Israel; INFN, Italy; MEXT and ...
Document Type: article in journal/newspaper
File Description: application/pdf
Language: English
Relation: Physics Letters, Section B: Nuclear, Elementary Particle and High-Energy Physics; http://dx.doi.org/10.1016/j.physletb.2011.09.092; info:eu-repo/grantAgreement/EC/FP7/303482; https://hdl.handle.net/10486/670666; 27; 705
DOI: 10.1016/j.physletb.2011.09.092
Availability: https://hdl.handle.net/10486/670666; https://doi.org/10.1016/j.physletb.2011.09.092
Rights: © 2011 CERN ; Reconocimiento – NoComercial – SinObraDerivada ; open access
Accession Number: edsbas.DEB49EFD
Database: BASE