Heavy Quarkonium Production in the Regge Limit of Quantum Chromodynamics
D. V. Vasin, V. A. Saleev
We study heavy quarkonium (c , b ) production at
the Tevatron (run I and run II) and LHC energies in the framework of
nonrelativistic quantum chromodynamics at leading order in the
strong-coupling constant as and the relative velocity v
using the quasimulti-Regge kinematics approach.
The fit of the pT-spectra of different S- and P-wave heavy
quarkonium states at the energies of the Tevatron (run I and run II) was performed.
The obtained set of the nonperturbative long-distance matrix
elements was used for prediction of heavy quarkonium production
rates at the energy of LHC collider. The results obtained in the
quasimulti-Regge kinematics approach are compared with
predictions of the collinear parton model.
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