Probing Transverse-Momentum Dependent Evolution With Groomed Jets
Abstract
We propose an observable which involves measuring the properties (transverse momentum and energy fraction ) of an identified hadron inside a groomed jet. The jet is identified with an anti-kT/CA algorithm and is groomed by implementing the modified mass drop procedure with an energy cut-off parameter . The transverse momentum of the hadron inside the jet is measured with respect to the groomed jet axis. We obtain a factorization theorem in the framework of Soft Collinear Effective Theory (SCET), to define a Transverse Momentum Dependent Fragmenting Jet Function (TMDFJF). The TMDFJF is factorized into collinear and collinear soft modes by matching onto SCET. We resum large logarithms in , where is the ungroomed jet energy, to NLL accuracy and apply this formalism for computing the shape of the distribution of a pion produced in an collision. We observe that the introduction of grooming makes this observable insensitive to non-global logarithms and particularly sensitive to non-perturbative physics of the transverse momentum dependent evolution at low values of , which can be probed in the variation of the cut-off parameter of the groomer. We discuss how this observable can be used to distinguish between non-perturbative models that describe universal TMD evolution and provide a window into the three dimensional structure of hadrons.
Keywords
Cite
@article{arxiv.1712.07653,
title = {Probing Transverse-Momentum Dependent Evolution With Groomed Jets},
author = {Yiannis Makris and Duff Neill and Varun Vaidya},
journal= {arXiv preprint arXiv:1712.07653},
year = {2019}
}
Comments
23 pages, 4 figures