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Boglione, M.; Gonzalez-Hernandez, J. O.; Taghavi, R.
Old Dominion University Research Foundation, Norfolk, VA (United States). Funding organisation: USDOE (United States)2017
Old Dominion University Research Foundation, Norfolk, VA (United States). Funding organisation: USDOE (United States)2017
AbstractAbstract
[en] Here, we study the transverse momentum distributions of single inclusive hadron production in e+e- annihilation processes. Although the only available experimental data are scarce and quite old, we find that the fundamental features of transverse momentum dependent (TMD) evolution, historically addressed in Drell–Yan processes and, more recently, in Semi-inclusive deep inelastic scattering processes, are visible in e+e- annihilations as well. Interesting effects related to its non-perturbative regime can be observed. We test two different parameterizations for the p⊥ dependence of the cross section: the usual Gaussian distribution and a power-law model. We find the latter to be more appropriate in describing this particular set of experimental data, over a relatively large range of p⊥ values. We use this model to map some of the features of the data within the framework of TMD evolution, and discuss the caveats of this and other possible interpretations, related to the one-dimensional nature of the available experimental data.
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Source
OSTIID--1422205; FG02-97ER41028; AC05-06OR23177; Available from https://www.osti.gov/pages/biblio/1364662; DOE Accepted Manuscript full text, or the publishers Best Available Version will be available free of charge after the embargo period; Country of input: United States
Record Type
Journal Article
Literature Type
Numerical Data
Journal
Physics Letters. Section B; ISSN 0370-2693;
; v. 772(C); p. 78-86

Country of publication
COLLISIONS, DATA, ELECTRON COLLISIONS, ELEMENTARY PARTICLES, FIELD THEORIES, FUNCTIONS, INELASTIC SCATTERING, INFORMATION, INTERACTIONS, LEPTON-BARYON INTERACTIONS, LEPTON-HADRON INTERACTIONS, LEPTON-NUCLEON INTERACTIONS, LINEAR MOMENTUM, NUMERICAL DATA, PARTICLE INTERACTIONS, POSITRON COLLISIONS, QUANTUM FIELD THEORY, SCATTERING
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