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Direct Photons in Nuclear Collisions at FAIR Energies

Abstract

Using the extrapolation of existing data estimations of prompt photon production at FAIR energies have been made. At y=yc.m.y=y_{c.m.} the rapidity density of prompt photons with pt>p_{t}> 1.5 GeV/c per central Au+Au event at 25 AGeV is estimated as 104\sim 10^{-4} . With the planed beam intensity 10910^{9} per second and 1% interaction probability, for 10% of most central events one can expect the prompt photon rate 102\sim 10^{2} photons per second. Direct photons from the hadron scenario of ion collisions generated by the Hadron-String-Dynamics (HSD) transport approach with implemented meson scatterings πρπγ,ππργ\pi\rho\to\pi\gamma, \pi\pi\to\rho\gamma have been analyzed. Photons from short-living resonances (e.g. ωπ0γ\omega \to \pi^{0} \gamma) decaying during the dense phase of the collision should be considered as direct photons. They contribute significantly in the direct photon spectrum at pt=0.51p_{t}=0.5 - 1 GeV/c. At the FAIR energy 25 AGeV in Au+Au central collisions the HSD generator predicts, as a lower estimate, γdirect/γπ0\gamma_{direct}/\gamma_{\pi^{0}} \simeq 0.5% in the region pt=0.51p_{t}=0.5 - 1 GeV/c. At pt=1.52p_{t}=1.5 - 2 GeV/c γprompt/γπ0\gamma_{prompt}/\gamma_{\pi^{0}} \simeq 2%. Thermal direct photons have been evaluated with the Bjorken Hydro-Dynamics (BHD) model. The BHD spectra differ strongly from the HSD predictions. The direct photon spectrum is very sensitive to the initial temperature parameter T0T_{0} of the model. The 10 MeV increase in the T0T_{0} value leads to \sim 2 times higher photon yield.Comment: 9 pages, 5 figures, Talk at the session of Russian Academy of Sciences, ITEP, Moscow, 26 - 30 November 200

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    Last time updated on 03/01/2020