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Twist-2 matching of transverse momentum dependent distributions

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Gutiérrez Reyes, Daniel and Scimemi, Ignazio and Vladimirov, Alexey A. (2017) Twist-2 matching of transverse momentum dependent distributions. Physics letters B, 769 . pp. 84-89. ISSN 0370-2693

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Official URL: http://dx.doi.org/10.1016/j.physletb.2017.03.031


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Abstract

We systematically study the large-qT (or small-b) matching of transverse momentum dependent (TMD) distributions to the twist-2 integrated parton distributions. Performing operator product expansion for a generic TMD operator at the next-to-leading order (NLO) we found the complete set of TMD distributions that match twist-2. These are unpolarized, helicity, transversity, pretzelosity and linearly polarized gluon distributions. The NLO matching coefficients for these distributions are presented. The pretzelosity matching coefficient is zero at the presented order, however, it is evident that it is non-zero in the following orders. This result offers a natural explanation of the small value of pretzelosity found in phenomenological fits. We also demonstrate that the cancellation of rapidity divergences by the leading order soft factor imposes the necessary requirement on the Lorentz structure of TMD operators, which is supported only by the TMD distributions of leading dynamical twist. Additionally, this requirement puts restrictions on the gamma(5)-definition in the dimensional regularization. (C) 2017 The Authors. Published by Elsevier B.V. This is an open access article under the CC BY license.


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©Elsevier Science BV.
We acknowledge some very profitable discussions with V. Braun, M.G.A. Buffing, M. Diehl, M.G. Echevarria, T. Kasemets as well as, S. Moch for discussions on the definition of γ5. D.G.R. and I.S. are supported by the Spanish MECD grant FPA2014-53375-C2-2-P and FPA2016-75654-C2-2-P. D.G.R. and I.S. are also sponsored by the group UPARCOS.

Uncontrolled Keywords:Parton distributions; Renormalization; Regularization; Evolution; Helicity
Subjects:Sciences > Physics > Physics-Mathematical models
Sciences > Physics > Mathematical physics
ID Code:44472
Deposited On:07 Sep 2017 18:35
Last Modified:10 Dec 2018 15:09

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