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Impact of NNLO QED corrections on lepton-proton scattering at MUSE

Tim Engel, F. Hagelstein, Marco Rocco, Vladyslava Sharkovska, Adrian Signer, Yannick Ulrich

2023The European Physical Journal A10 citationsDOIOpen Access PDF

Abstract

We present the complete next-to-next-to-leading order (NNLO) pure pointlike QED corrections to lepton-proton scattering, including three-photon-exchange contributions, and investigate their impact in the case of the MUSE experiment. These corrections are computed with no approximation regarding the energy of the emitted photons and taking into account lepton-mass effects. We contrast the NNLO QED corrections to known next-to-leading order corrections, where we include the elastic two-photon exchange (TPE) through a simple hadronic model calculation with a dipole ansatz for the proton electromagnetic form factors. We show that, in the low-momentum-transfer region accessed by the MUSE experiment, the improvement due to more sophisticated treatments of the TPE, including inelastic TPE, is of similar if not smaller size than some of the NNLO QED corrections. Hence, the latter have to be included in a precision determination of the low-energy proton structure from scattering data, in particular for electron-proton scattering. For muon-proton scattering, the NNLO QED corrections are considerably smaller.

Topics & Concepts

PhysicsLeptonParticle physicsScatteringProtonMuonPhotonHadronAnsatzMomentum transferNuclear physicsElectronQuantum electrodynamicsQuantum mechanicsParticle physics theoretical and experimental studiesHigh-Energy Particle Collisions ResearchQuantum Chromodynamics and Particle Interactions
Impact of NNLO QED corrections on lepton-proton scattering at MUSE | Litcius