Positivity bounds on gluon TMDs for hadrons of spin $\le$ 1
Abstract
We consider the transverse momentum dependent gluon distribution functions (called gluon TMDs) by studying the light-front gluon-gluon correlator, extending the results for unpolarized and vector polarized targets to also include tensor polarized targets -- the latter type of polarization is relevant for targets of spin . The light-front correlator includes process-dependent gauge links to guarantee color gauge invariance. As from the experimental side the gluon TMDs are largely unknown, we present positivity bounds for combinations of leading-twist gluon distributions that may be used to estimate their maximal contribution to observables. Since the gluonic content of hadrons is particularly relevant in the small- kinematic region, we also study these bounds in the small- limit for the dipole-type gauge link structure using matrix elements of a single Wilson loop.
Keywords
Cite
@article{arxiv.1709.07827,
title = {Positivity bounds on gluon TMDs for hadrons of spin $\le$ 1},
author = {Sabrina Cotogno and Tom van Daal and Piet J. Mulders},
journal= {arXiv preprint arXiv:1709.07827},
year = {2018}
}
Comments
10 pages