English

Quarkonium Polarization and the Long Distance Matrix Elements Hierarchies using Jet Substructure

High Energy Physics - Phenomenology 2017-09-04 v2 Nuclear Theory

Abstract

We investigate the quarkonium production mechanisms in jets at the LHC, using the Fragmenting Jet Functions (FJF) approach. Specifically, we discuss the jet energy dependence of the J/ψJ/\psi production cross section at the LHC. By comparing the cross sections for the different NRQCD production channels (1S0[8]^1S_0^{[8]},3S1[8]^3S_1^{[8]},3PJ[8]^3P_J^{[8]}, and 3S1[1]^3S_1^{[1]}), we find that at fixed values of energy fraction zz carried by the J/ψJ/\psi, if the normalized cross section is a decreasing function of the jet energy, in particular for z>0.5z > 0.5, then the depolarizing 1S0[8]^1S_0^{[8]} must be the dominant channel. This makes the prediction made in [Baumgart et al., JHEP 1411, 003 (2014)] for the FJF's also true for the cross section. We also make comparisons between the long distance matrix elements extracted by various groups. This analysis could potentially shed light on the polarization properties of the J/ψJ/\psi production in high pTp_T region.

Keywords

Cite

@article{arxiv.1707.08629,
  title  = {Quarkonium Polarization and the Long Distance Matrix Elements Hierarchies using Jet Substructure},
  author = {Lin Dai and Prashant Shrivastava},
  journal= {arXiv preprint arXiv:1707.08629},
  year   = {2017}
}

Comments

13 pages, 10 figures

R2 v1 2026-06-22T20:58:33.785Z