arXiv:2401.06404·v1·High Energy Physics — Phenomenology
NNLO QCD predictions of the asymmetry probe of the pair-production process
Abstract
The paper presents for the first time a novel idea of exploiting asymmetry between differential cross sections of the pair-production in proton-proton () collisions for the final states of a charged-lepton pair plus a photon (leptonic decay) and of a neutrino pair plus a photon (invisible decay). Asymmetry between the leptonic and invisible decays of the process is investigated by using fixed-order predictions through inclusion of next-to-next-to-leading (NNLO) radiative corrections in quantum chromodynamics (QCD) perturbation theory. NNLO QCD predictions are presented at various -collision energies as functions of several key observables including transverse momenta and azimuthal-angle separation, regarding the decay products. The predicted distributions for the asymmetry are provided based on realistic fiducial phase-space requirements in line with the related hadron-collider measurements. The predicted distributions are assessed at various -collision energies and in different phase-space regions such as with higher lepton-pair invariant mass or higher neutrino-pair transverse momentum requirements. The asymmetry is shown to be significantly sensitive in different regions of phase space including high- and high- regions. The asymmetry can therefore be translated into an important quantity for probing deviation from the Standard Model (SM) predictions. In this regard, the asymmetry probe is proposed as a sensitive indicator for indirect searches for physics beyond the SM encompassing high-mass resonances and dark-matter sector.
Comments: 25 pages, 10 figures