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Light-by-light scattering in ultraperipheral heavy-ion collisions at low diphoton masses

Mariola Kłusek-GawendaInstitute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, PL-31-342 Kraków, PolandR. McNultySchool of Physics, University College Dublin, Dublin 4, IrelandR. SchickerPhysikalisches Institut, Ruprecht-Karls-Universität Heidelberg, Heidelberg D69120, GermanyAntoni SzczurekInstitute of Nuclear Physics Polish Academy of Sciences, Radzikowskiego 152, PL-31-342 Kraków, Poland
2019en
ABI

Аннотация

We present a study of photon-photon scattering in the mass range ${W}_{\ensuremath{\gamma}\ensuremath{\gamma}}<5\text{ }\text{ }\mathrm{GeV}$. We extend earlier calculations of this cross section for ${W}_{\ensuremath{\gamma}\ensuremath{\gamma}}>5\text{ }\text{ }\mathrm{GeV}$ into the low mass range where photoproduction of the pseudoscalar resonances $\ensuremath{\eta}$, ${\ensuremath{\eta}}^{\ensuremath{'}}(958)$ contributes to two-photon final states. We present the elementary photon-photon cross section as a function of diphoton mass ${M}_{\ensuremath{\gamma}\ensuremath{\gamma}}$ arising from lepton and quark loop diagrams, and the visible cross section obtained with the gamma-gamma decay branching fractions of the resonances $\ensuremath{\eta}$, ${\ensuremath{\eta}}^{\ensuremath{'}}(958)$, ${\ensuremath{\eta}}_{c}(1S)$, ${\ensuremath{\eta}}_{c}(2S)$, ${\ensuremath{\chi}}_{c0}(1P)$. We derive the corresponding cross sections in ultraperipheral Pb-Pb collisions at $\sqrt{{s}_{NN}}=5.02\text{ }\text{ }\mathrm{TeV}$ by folding the elementary cross section with the heavy-ion photon fluxes. We consider the dominating background of the two photon final state which arises from gamma decays of photoproduced ${\ensuremath{\pi}}^{0}$-pairs. Such ${\ensuremath{\pi}}^{0}$-pairs contribute to the background when only two of the four decay photons are within the experimental acceptance, while the other two photons escape undetected. We reduce this background by applying cuts on asymmetries of transverse momenta of the two photons and indicate how the background can be further suppressed using a multivariate sideband analysis. We present the cross section for the signal and the background at midrapidity $|\ensuremath{\eta}|<0.9$, and in the forward rapidity range $2.0<\ensuremath{\eta}<4.5$.

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