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Phys. Rev. D 77, 085009 (2008) [41 pages]

Fully unintegrated parton correlation functions and factorization in lowest-order hard scattering

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J. C. Collins1, T. C. Rogers1, and A. M. Staśto1,2
1Department of Physics, Pennsylvania State University, University Park, Pennsylvania 16802, USA
2H. Niewodniczański Institute of Nuclear Physics, Kraków, Poland

Received 22 August 2007; published 14 April 2008

Motivated by the need to correct the potentially large kinematic errors in approximations used in the standard formulation of perturbative QCD, we reformulate deeply inelastic lepton-proton scattering in terms of gauge-invariant, universal parton correlation functions which depend on all components of parton four-momentum. Currently, different hard QCD processes are described by very different perturbative formalisms, each relying on its own set of kinematical approximations. In this paper we show how to set up formalism that avoids approximations on final-state momenta, and thus has a very general domain of applicability. The use of exact kinematics introduces a number of significant conceptual shifts already at leading order, and tightly constrains the formalism. We show how to define parton correlation functions that generalize the concepts of parton density, fragmentation function, and soft factor. After setting up a general subtraction formalism, we obtain a factorization theorem. To avoid complications with Ward identities, the full derivation is restricted to Abelian gauge theories; even so, the resulting structure is highly suggestive of a similar treatment for non-Abelian gauge theories.

© 2008 The American Physical Society

URL:
http://link.aps.org/doi/10.1103/PhysRevD.77.085009
DOI:
10.1103/PhysRevD.77.085009
PACS:
12.38.Bx, 13.85.Hd, 13.60.Hb, 11.15.Bt