Energy-Energy Correlators in Z-Tagged Jets in pp Collisions
João Barata, Zhong-Bo Kang, Xoán Mayo López, Jani Penttala, Yiyu Zhou
Abstract
We present predictions for the collinear energy-energy correlator (EEC) measured inside Z-tagged jets in proton-proton collisions across the confinement transition. Our framework combines transverse-momentum-dependent factorization for back-to-back Z+jet production with an exclusive differential EEC jet function incorporating perturbative evolution and flavor-dependent non-perturbative fragmentation. The EEC jet function is evaluated at NLL accuracy, with separate quark and gluon non-perturbative scales constrained by existing e+e- and inclusive-jet data. We provide predictions for forward Z+jet production at s=8~TeV and 13~TeV in the jet transverse-momentum intervals (20, 30), (30, 50) and (50, 100) \, GeV. The EEC distributions as functions of zχ exhibit finite plateaus at small zχ, while the corresponding angular distributions display the characteristic turnover associated with the confinement transition. A flavor decomposition shows that this transition becomes increasingly dominated by quark-initiated jets as the jet transverse momentum increases. Forward Z-tagged jets therefore provide a clean probe of non-perturbative quark fragmentation and offer a direct test of whether the characteristic confinement scale extracted from e+e- collisions remains universal in a hadronic environment.
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