English

Energy evolution and the Bose-Einstein enhancement for double parton densities

High Energy Physics - Phenomenology 2019-03-27 v3

Abstract

In this paper we found that the Bose-Einstein enhancement generates the strong correlations, which increase with energy in the BFKL evolution. This increase leads to the double parton densities ( Φ\Phi), that are much larger than the product of the single parton densities (ϕ\phi). However, numerically, it turns out that the ratio Φ/ϕ2\Lb1/x\Rbδ2\Phi/\phi^2 \propto \Lb 1/x\Rb^{\delta_2} with δ2\bas/\LbNc21\Rb2/31\delta_2 \sim \bas/\Lb N^2_c - 1\Rb^{2/3}\,\,\ll\,\,1 and we do not expect a large correction for the accessible range of energies. However, for Nc=3N_c=3 it tuns out that δ2=0.07ΔBFKL\delta_2 = 0.07 \Delta_{\rm BFKL} where ΔBFKL\Delta_{\rm BFKL} is the intercept of the BFKL Pomeron and we can anticipate an substantial increase for the range of rapidities Y20Y \sim 20.It is shown that all 1/(Nc21)1/(N^2_c -1) corrections to the double parton densities stem from the Bose-Einstein enhancement.

Keywords

Cite

@article{arxiv.1808.04982,
  title  = {Energy evolution and the Bose-Einstein enhancement for double parton densities},
  author = {E. Gotsman and E. Levin},
  journal= {arXiv preprint arXiv:1808.04982},
  year   = {2019}
}

Comments

19pp. 7 figures in pdf files

R2 v1 2026-06-23T03:34:16.247Z