English

Reggeon Field Theory for Large Pomeron Loops

High Energy Physics - Phenomenology 2015-06-18 v1 High Energy Physics - Theory

Abstract

We analyze the range of applicability of the high energy Reggeon Field Theory HRFTH_{RFT} derived in [1]. We show that this theory is valid as long as at any intermediate value of rapidity η\eta throughout the evolution at least one of the colliding objects is dilute. Importantly, at some values of η\eta the dilute object could be the projectile, while at others it could be the target, so that HRFTH_{RFT} does not reduce to either HJIMWLKH_{JIMWLK} or HKLWMIJH_{KLWMIJ}. When both objects are dense, corrections to the evolution not accounted for in [1] become important. The same limitation applies to other approaches to high energy evolution available today, such as for example [3] and [4]. We also show that, in its regime of applicability HRFTH_{RFT} can be simplified. We derive the simpler version of HRFTH_{RFT} and in the large NcN_c limit rewrite it in terms of the Reggeon creation and annihilation operators. The resulting HRFTH_{RFT} is explicitly self dual and provides the generalization of the Pomeron calculus developed in [4] by including higher Reggeons in the evolution. It is applicable for description of `large' Pomeron loops, namely Reggeon graphs where all the splittings occur close in rapidity to one dilute object (projectile), while all the merging close to the other one (target). Additionally we derive, in the same regime expressions for single and double inclusive gluon production (where the gluons are not separated by a large rapidity interval) in terms of the Reggeon degrees of freedom.

Keywords

Cite

@article{arxiv.1401.7431,
  title  = {Reggeon Field Theory for Large Pomeron Loops},
  author = {Tolga Altinoluk and Alex Kovner and Eugene Levin and Michael Lublinsky},
  journal= {arXiv preprint arXiv:1401.7431},
  year   = {2015}
}

Comments

38 pages, 4 figures

R2 v1 2026-06-22T02:56:52.785Z