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Insertion of STC into TRT at the Department of Physics, Oxford
Credit: CERN

Professor Amanda Cooper-Sarkar

Emeritus Professor

Research theme

  • Fundamental particles and interactions

Sub department

  • Particle Physics

Research groups

  • ATLAS
Amanda.Cooper-Sarkar@physics.ox.ac.uk
Telephone: 01865 (2)73406
Denys Wilkinson Building, room 659
  • About
  • Publications

Performance of the ATLAS muon triggers in Run 2

ArXiv 2004.13447 (2020)

Search for direct production of electroweakinos in final states with missing transverse momentum and a Higgs boson decaying into photons in $pp$ collisions at $\sqrt{s}=13$ TeV with the ATLAS detector

ArXiv 2004.10894 (2020)

Observation of electroweak production of two jets and a $Z$-boson pair

ArXiv 2004.10612 (2020)

Improved constraints on parton distributions using LHCb, ALICE and HERA heavy-flavour measurements and implications for the predictions for prompt atmospheric-neutrino fluxes

Journal of High Energy Physics Springer 2020:4 (2020) 118

Authors:

O Zenaiev, MV Garzelli, K Lipka, S-O Moch, A Cooper-Sarkar, F Olness, A Geiser, G Sigl

Abstract:

The impact of measurements of heavy-flavour production in deep inelastic ep scattering and in pp collisions on parton distribution functions is studied in a QCD analysis at next-to-leading order. Recent combined results of inclusive and heavy-flavour produc- tion cross sections in deep inelastic scattering at HERA are investigated together with heavy-flavour production measurements at the LHC. Differential cross sections of charm- and beauty-hadron production measured by the LHCb collaboration at the centre-of-mass energies of 5, 7 and 13 TeV as well as the recent measurements of the ALICE experiment at the centre-of-mass energies of 5 and 7 TeV are explored. These data impose additional constraints on the gluon and the sea-quark distributions at low partonic fractions x of the proton momentum, down to x ≈ 10−6. The impact of the resulting parton distribution function in the predictions for the prompt atmospheric-neutrino fluxes is studied.

Two-particle azimuthal correlations as a probe of collective behaviour in deep inelastic ep scattering at HERA

Journal of High Energy Physics Springer Verlag 2020 (2020) 70

Authors:

I Abt, L Adamczyk, R Aggarwal, V Aushev, O Behnke, U Behrens, A Bertolin, I Bloch, I Brock, Nh Brook, R Brugnera, A Bruni, Pj Bussey, A Caldwell, M Capua, Cd Catterall, J Chwastowski, J Ciborowski, R Ciesielski, Am Cooper-Sarkar, M Corradi, Rk Dementiev, S Dusini, J Ferrando, S Floerchinger, Brian Foster, E Gallo, D Gangadharan, A Garfagnini, A Geiser, Lk Gladilin, Yu A Golubkov, G Grzelak, C Gwenlan, D Hochman, Nz Jomhari, I Kadenko, S Kananov, U Karshon, P Kaur, R Klanner, U Klein, Ia Korzhavina, H Kowalski, N Kovalchuk, O Kuprash, M Kuze, Bb Levchenko, A Levy, B Loehr

Abstract:

Two-particle azimuthal correlations have been measured in neutral current deep inelastic ep scattering with virtuality Q2> 5 GeV2 at a centre-of-mass energy s√s = 318 GeV recorded with the ZEUS detector at HERA. The correlations of charged particles have been measured in the range of laboratory pseudorapidity −1.5 < η < 2.0 and transverse momentum 0.1 < pT< 5.0 GeV and event multiplicities Nch up to six times larger than the average 〈Nch〉 ≈ 5. The two-particle correlations have been measured in terms of the angular observables cn{2}&³Ù³ó¾±²Ô²õ±è;=&³Ù³ó¾±²Ô²õ±è;〈ã¶ÄˆcosnΔφ〉〉, where n is between 1 and 4 and ∆φ is the relative azimuthal angle between the two particles. Comparisons with available models of deep inelastic scattering, which are tuned to reproduce inclusive particle production, suggest that the measured two-particle correlations are dominated by contributions from multijet production. The correlations observed here do not indicate the kind of collective behaviour recently observed at the highest RHIC and LHC energies in high-multiplicity hadronic collisions.

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