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    In: Journal of High Energy Physics, Springer Science and Business Media LLC, Vol. 2023, No. 6 ( 2023-06-27)
    Abstract: Exclusive production of dielectron pairs, γγ → e + e − , is studied using $$ {\mathcal{L}}_{\textrm{int}} $$ L int = 1 . 72 nb − 1 of data from ultraperipheral collisions of lead nuclei at $$ \sqrt{s_{\textrm{NN}}} $$ s NN = 5 . 02 TeV recorded by the ATLAS detector at the LHC. The process of interest proceeds via photon–photon interactions in the strong electromagnetic fields of relativistic lead nuclei. Dielectron production is measured in the fiducial region defined by following requirements: electron transverse momentum $$ {p}_{\textrm{T}}^e $$ p T e 〉 2 . 5 GeV, absolute electron pseudorapidity |η e | 〈 2 . 5, dielectron invariant mass m ee 〉 5 GeV, and dielectron transverse momentum $$ {p}_{\textrm{T}}^{ee} $$ p T ee 〈 2 GeV. Differential cross-sections are measured as a function of m ee , average $$ {p}_{\textrm{T}}^e $$ p T e , absolute dielectron rapidity | y ee |, and scattering angle in the dielectron rest frame, |cos θ * |, in the inclusive sample, and also with a requirement of no activity in the forward direction. The total integrated fiducial cross-section is measured to be $$ 215\pm 1{\left(\textrm{stat}.\right)}_{-20}^{+23}\left(\textrm{syst}.\right)\pm 4\left(\textrm{lumi}.\right) $$ 215 ± 1 stat . − 20 + 23 syst . ± 4 lumi . μ b. Within experimental uncertainties the measured integrated cross-section is in good agreement with the QED predictions from the Monte Carlo programs S tarlight and S uper C hic , confirming the broad features of the initial photon fluxes. The differential cross-sections show systematic differences from these predictions which are more pronounced at high |y ee | and | cos θ * | values.
    Type of Medium: Online Resource
    ISSN: 1029-8479
    Language: English
    Publisher: Springer Science and Business Media LLC
    Publication Date: 2023
    detail.hit.zdb_id: 2027350-2
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