English

Precision boson-jet azimuthal decorrelation at hadron colliders

High Energy Physics - Phenomenology 2024-01-11 v2 Nuclear Theory

Abstract

The azimuthal angular decorrelation of a vector boson and jet is sensitive to QCD radiation, and can be used to probe the quark-gluon plasma in heavy-ion collisions. By using a recoil-free jet definition, the sensitivity to contamination from soft radiation on the measurement is reduced, and the complication of non-global logarithms is eliminated from our theoretical calculation. Specifically we will consider the pTnp_T^n recombination scheme, as well as the nn\to \infty limit, known as the winner-take-all scheme. These jet definitions also significantly simplify the calculation for a track-based measurement, which is preferred due to its superior angular resolution. We present a detailed discussion of the factorization in Soft-Collinear Effective Theory, revealing why the transverse momentum qT\vec q_T is more complicated than the azimuthal angle. We show that potential glauber contributions do not spoil our factorization formalism, at least up to and including order αs3\alpha_s^3. The resummation is carried out using the renormalization group, and all necessary ingredients are collected or calculated. We conclude with a detailed phenomenological study, finding an enhanced matching correction for high jet pTp_T due to the electroweak collinear enhancement of a boson emission off di-jets. We also compare with the Pythia event generator, finding that our observable is very robust to hadronization and the underlying event.

Keywords

Cite

@article{arxiv.2205.05104,
  title  = {Precision boson-jet azimuthal decorrelation at hadron colliders},
  author = {Yang-Ting Chien and Rudi Rahn and Ding Yu Shao and Wouter J. Waalewijn and Bin Wu},
  journal= {arXiv preprint arXiv:2205.05104},
  year   = {2024}
}

Comments

51 pages, 15 figures. Published version

R2 v1 2026-06-24T11:13:32.426Z