Transverse nucleon structure and diagnostics of hard parton-parton processes at LHC

Sep, 2010
9 pages
Published in:
  • Phys.Rev.D 83 (2011) 054012
e-Print:
Report number:
  • JLAB-THY-10-1228

Citations per year

2010201420182022202502468101214
Abstract: (arXiv)
We propose a new method to determine at what transverse momenta particle production in high-energy pp collisions is governed by hard parton-parton processes. Using information on the transverse spatial distribution of partons obtained from hard exclusive processes in ep/gamma p scattering, we evaluate the impact parameter distribution of pp collisions with a hard parton-parton process as a function of p_T of the produced parton (jet). We find that the average pp impact parameters in such events depend very weakly on p_T in the range 2 < p_T < few 100 GeV, while they are much smaller than those in minimum-bias inelastic collisions. The impact parameters in turn govern the observable transverse multiplicity in such events (in the direction perpendicular to the trigger particle or jet). Measuring the transverse multiplicity as a function of p_T thus provides an effective tool for determining the minimum p_T for which a given trigger particle originates from a hard parton-parton process. Additional tests of the proposed geometric correlations are possible by measuring the dependence on the trigger rapidity. Various strategies for implementing this method are outlined.
  • 13.85.Ni
  • 13.60.Le
  • 13.87.Ce
  • Quantum chromodynamics
  • generalized parton distributions
  • jets in pp collisions
  • spatial distribution: transverse
  • parton: spatial distribution
  • impact parameter
  • trigger
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