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arXiv:2011.14114·v2·High Energy Physics — Phenomenology

Infrared Renormalons in Kinematic Distributions for Hadron Collider Processes

Silvia Ferrario Ravasio🇬🇧 · Giovanni Limatola🇮🇹 · Paolo Nason🇮🇹

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Abstract

Infrared renormalons in Quantum Chromodynamics are associated with non-perturbative corrections to short distance observables. Linear renormalons, i.e. such that the associated non-perturbative corrections scale like one inverse power of the hard scale, can affect at a non-negligible level even the very high-energy phenomena studied at the Large Hadron Collider. Using an Abelian model, we study the presence of linear renormalons in the transverse momentum distribution of a neutral vector boson produced in hadronic collisions. We consider a process where the transverse momentum is balanced by a sizable recoil against a coloured final state particle. One may worry that such a colour configuration, not being azimuthally symmetric, could generate unbalanced soft radiation, associated in turn with linear infrared renormalons affecting the transverse momentum distribution of the vector boson. We performed a numerical calculation of the renormalon effects for this process in the so-called large limit. We found no evidence of linear renormalons in the transverse momentum distribution of the in the large transverse-momentum region, irrespective of rapidity cuts.

Comments: 24 pages, 10 figures

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