Direct photon production in Pb–Pb collisions at sNN=2.76 TeV

Publication date

2016-03-01

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ALICE Collaboration

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Abstract

Direct photon production at mid-rapidity in Pb–Pb collisions at View the MathML sourcesNN=2.76 TeV was studied in the transverse momentum range 0.9<pT<14 GeV/c0.9<pT<14 GeV/c. Photons were detected with the highly segmented electromagnetic calorimeter PHOS and via conversions in the ALICE detector material with the e+e−e+e− pair reconstructed in the central tracking system. The results of the two methods were combined and direct photon spectra were measured for the 0–20%, 20–40%, and 40–80% centrality classes. For all three classes, agreement was found with perturbative QCD calculations for pT≳5 GeV/cpT≳5 GeV/c. Direct photon spectra down to pT≈1 GeV/cpT≈1 GeV/c could be extracted for the 20–40% and 0–20% centrality classes. The significance of the direct photon signal for 0.9<pT<2.1 GeV/c0.9<pT<2.1 GeV/c is 2.6σ for the 0–20% class. The spectrum in this pTpT range and centrality class can be described by an exponential with an inverse slope parameter of (297±12stat±41syst) MeV(297±12stat±41syst) MeV. State-of-the-art models for photon production in heavy-ion collisions agree with the data within uncertainties.

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ALICE Collaboration 2016, 'Direct photon production in Pb–Pb collisions at sNN=2.76 TeV', Physics Letters B, vol. 754, pp. 235-248. https://doi.org/10.1016/j.physletb.2016.01.020