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QCD transverse-momentum resummation in gluon fusion processes

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NUCLEAR PHYSICS B
卷 845, 期 3, 页码 297-323

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DOI: 10.1016/j.nuclphysb.2010.12.007

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We consider the production of a generic system of non-strongly interacting particles with a high total invariant mass M in hadron collisions. We examine the transverse-momentum (q(T)) distribution of the system in the small-q(T) region (q(T) << M), and we present a study of the perturbative QCD contributions that are enhanced by powers of large logarithmic terms of the type In(M-2/q(T)(2).). These terms can be resummed to all orders in QCD perturbation theory. The partonic production mechanism of the final-state system can be controlled by quark antiquark (q (q) over bar) annihilation and/or by gluon fusion. The resummation formalism for the q (q) over bar annihilation subprocess is well established, and it is usually extrapolated to the gluon fusion subprocess. We point out that this na ve extrapolation is not correct, and we present the all-order resummation formula for the q(T) distribution in gluon fusion processes. The gluon fusion resummation formula has a richer structure than the resummation formula in q (q) over bar annihilation. The additional structure originates from collinear correlations that are a specific feature of the evolution of the colliding hadrons into gluon partonic states. In the q (T) over bar cross section at small values of q (T) over bar, these gluon collinear correlations produce coherent spin correlations between the helicity states of the initial-state gluons and definite azimuthal-angle correlations between the final-state particles of the observed high-mass system. (C) 2010 Elsevier B.V. All rights reserved.

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