English

Prompt photon - jet angular correlations at central rapidities in p+A collisions

High Energy Physics - Phenomenology 2018-01-31 v3

Abstract

Photon-jet azimuthal correlations in proton-nucleus collisions are a promising tool for gaining information on the gluon distribution of the nucleus in the regime of non-linear color fields. We compute such correlations from the process g+Aqqˉγg+A\to q \bar{q} \gamma in the rapidity regime where both the projectile and target light-cone momentum fractions are small. By integrating over the phase space of the quark which emits the photon, subject to the restriction that the photon picks up most of the transverse momentum (to pass an isolation cut), we effectively obtain a g+Aqγg+A\to q \gamma process. For nearly back-to-back photon-jet configurations we find that it dominates over the leading order process q+Aqγq+A\to q \gamma by two less powers of Q/QSQ_\perp / Q_S, where Q\boldsymbol{Q}_\perp and QSQ_S denote the net photon-jet pair momentum and the saturation scale of the nucleus, respectively. We determine the transverse momentum dependent gluon distributions involved in g+Aqγg+A\to q \gamma and the scale where they are evaluated. Finally, we provide analytic expressions for cosnϕ\langle\cos n\phi\rangle moments, where ϕ\phi is the angle between Q\boldsymbol{Q}_\perp and the average photon-jet transverse momentum P~\tilde{\boldsymbol{P}}_\perp, and first qualitative estimates of their transverse momentum dependence.

Keywords

Cite

@article{arxiv.1710.01991,
  title  = {Prompt photon - jet angular correlations at central rapidities in p+A collisions},
  author = {Sanjin Benić and Adrian Dumitru},
  journal= {arXiv preprint arXiv:1710.01991},
  year   = {2018}
}

Comments

v3: more elaborated discussions on photon isolation cut, a few new references, results unchanged, accepted for publication in PRD

R2 v1 2026-06-22T22:04:36.190Z