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Transverse momentum resummation for Higgs boson produced via bbar b fusion at hadron colliders

Alexander Belyaev et al JHEP04(2006)004   doi: 10.1088/1126-6708/2006/04/004  Help

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Alexander Belyaev1, Pavel M. Nadolsky2 and Chien-Peng Yuan1
1 Department of Physics and Astronomy, Michigan State University, East Lansing, MI 48824, U.S.A.
2 High Energy Physics Division, Argonne National Laboratory, Argonne, IL 60439-4815, U.S.A.
E-mail: belyaev@pa.msu.edu

Abstract. We study the impact of initial-state multiple parton radiation on transverse momentum (qT) distribution of Higgs boson produced via bottom quark fusion at hadron colliders. The shape of the resulting qT distribution is affected by the bottom-quark mass corrections and by the strong kinematical behavior of the bottom-quark parton density. We account for both features in the full range of qT. To do this, we formulate the resummation calculation in a general-mass factorization (S-ACOT) scheme and introduce a correction in the resummed-term to account for the effect from large-qT kinematics of Higgs boson. The results of this resummation are compared to fixed-order and PYTHIA predictions.

Key words: Heavy Quarks Physics; Higgs Physics; NLO Computations; QCD

E-print number: hep-ph/0509100
Cited: by
Refers: to

Received 7 October 2005, accepted for publication 15 March 2006
Published 3 April 2006

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