arXiv:1602.01773·v1·High Energy Physics — Phenomenology
High-energy resummation effects in the production of Mueller-Navelet dijet at the LHC
B. Ducloué🇫🇮 · L. Szymanowski🇵🇱 · S. Wallon🇫🇷
Abstract
We study the production of two forward jets with a large interval of rapidity at hadron colliders, which was proposed by Mueller and Navelet as a possible test of the high energy dynamics of QCD, within a complete next-to-leading logarithm framework. We show that using the Brodsky-Lepage-Mackenzie procedure to fix the renormalization scale leads to a very good description of the recent CMS data at the LHC for the azimuthal correlations of the jets. We show that the inclusion of next-to-leading order corrections to the jet vertex significantly reduces the importance of energy-momentum non-conservation which is inherent to the BFKL approach, for an asymmetric jet configuration. Finally, we argue that the double parton scattering contribution is negligible in the kinematics of actual CMS measurements.
Comments: 6 pages, 4 figures. Contribution to the proceedings of the 6th International Conference on Physics Opportunities at an Electron-Ion Collider (POETIC6), September 7-11, 2015, Palaiseau, France. arXiv admin note: substantial text overlap with arXiv:1512.00446