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Enlighting the transverse structure of the proton via double parton scattering in photon-induced interactions

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arxiv 2103.13480 v2 pith:6FS2ESUC submitted 2021-03-24 hep-ph nucl-th

Enlighting the transverse structure of the proton via double parton scattering in photon-induced interactions

classification hep-ph nucl-th
keywords protoncontributiondoublegammainformationinteractionspartonphoton
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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In the present paper we address double parton scattering (DPS) in quasi-real photon-proton interactions. By using electromagnetic and hadronic models of the photon light cone wave functions, we compute the so-called effective cross-section, $\sigma_{eff}^{\gamma p}$ which allows us to calculate the DPS contribution to these processes under dedicated assumptions. In particular, for the four-jet photoproduction in HERA kinematics we found a sizeable DPS contribution. We show that if the photon virtuality $Q^2$ could be measured and thus the dependence of $\sigma_{eff}^{\gamma p}$ on such a parameter exposed, information on the transverse distance between partons active in proton could be extracted. To this aim, we set lower limits on the integrated luminosity needed to observe such an effect which would allow the extraction of novel information on the proton structure.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score.

  1. Dissociative associated $J/\psi$ and dimuon production in Ap ultraperipheral collisions via double parton scattering

    hep-ph 2025-10 unverdicted novelty 5.0

    Derives a DPS pocket formula and effective cross section expression for dissociative J/ψ + dimuon production in Ap ultraperipheral collisions, with predictions at LHC and FCC energies.

  2. DPS mechanism for associated $c\bar{c} l^+l^-$ production in $AA$ UPCs as a probe for photon density inside the nucleus

    hep-ph 2021-06 unverdicted novelty 5.0

    Derived an analog pocket formula for DPS c cbar l+l- production in AA UPCs including elastic and inelastic photon contributions and presented differential cross section predictions at LHC energies.