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On the implementation of NLO high energy factorization in single inclusive forward hadron production

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arxiv 1703.04962 v1 pith:FB7DNX7Z submitted 2017-03-15 hep-ph nucl-th

On the implementation of NLO high energy factorization in single inclusive forward hadron production

classification hep-ph nucl-th
keywords calculationscouplingcrosshighproductionconsiderenergyfactorization
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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Single inclusive particle production cross sections in high energy hadron collisions at forward rapidity are an important benchmark process for the CGC picture of small x QCD. Recent calculations of this process have not led to a stable perturbative expansion for this quantity at high transverse momenta. We consider the quark channel production cross section using the new rapidity factorization procedure proposed by Iancu et al. We show that for fixed coupling one does indeed obtain a physically meaningful cross section which is positive and reduces in a controlled way to previous leading order calculations. We also consider a running coupling that depends on the transverse momentum of the produced particle. This gives a stable result which, however, is not fully consistent with previous leading order calculations that use a coordinate space running coupling.

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  1. Simultaneous Color Glass Condensate fit to deep inelastic scattering and forward hadron production at HERA, RHIC, and the LHC

    hep-ph 2026-07 conditional novelty 6.0

    A simultaneous LO CGC/BK fit to HERA DIS and RHIC/LHC forward hadron production reaches χ²/dof≈1, with complementary constraints and RHIC K-factors roughly twice those at the LHC.