The effect of TMD evolution on the Sivers asymmetry in back-to-back J/ψ+γ and J/ψ+jet production at the Electron-Ion-Collider
Arghya Jana, Asmita Mukherjee, Sangem Rajesh
Abstract
We present an estimate of the Sivers asymmetry in back-to-back J/ψ-photon and J/ψ-jet production in electron-proton collisions in the kinematics of the upcoming Electron-Ion Collider (EIC) in a transverse momentum dependent (TMD) factorization framework, and also incorporating the TMD evolution. We use the non-relativistic Quantum Chromodynamics (NRQCD) model to study the production mechanism of J/ψ. The gluon induced channel dominates, and these are promising probes of the less known gluon Sivers function. We incorporate the TMD evolution in the cross section and Sivers asymmetry in the Collins-Soper-Sterman (CSS) approach and show that the asymmetry is sizable even after the evolution. Although the cross section for J/ψ-jet production depends on the long-distance matrix element (LDME) set chosen, the asymmetry remains largely unaffected. The asymmetry is independent of the LDME at leading order for J/ψ-photon production. Thus, the Sivers asymmetry in both processes is a robust probe of the gluon Sivers function.
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