Valence quark properties of charged kaons in symmetric nuclear matter
Published in EPJP.
R. Pandey, S. Puhan, N. Kaur, A. Kumar, S. Dutt, and H. Dahiya
Eur. Phys. J. Plus 140 (2025)
May 01, 2025
Abstract
We calculate the leading twist valence quark transverse momentum parton distribution functions (TMDs) and generalized parton distributions (GPDs) of the charged kaons in an isospin symmetric nuclear matter at zero temperature by employing the light-cone quark model. The medium modifications of the unpolarized TMDs and GPDs have been carried out by taking inputs from the chiral SU(3) quark mean field model. The electromagnetic form factors (EMFFs) and charge radii have been calculated from the unpolarized GPDs for both the vacuum and in-medium cases. We have also calculated the variation of average transverse and longitudinal momenta for the active quark at high baryonic density. These results are found to be in good agreement with the available experimental data as well as with other model predictions.
Summary
Calculates leading-twist TMDs and GPDs of charged kaons in symmetric nuclear matter using LCQM with chiral SU(3) CQMF model inputs. Derives in-medium EMFFs, charge radii, and average momenta in good agreement with data.
Authors: R. Pandey, S. Puhan, N. Kaur, A. Kumar, S. Dutt, and H. Dahiya
Published in: Eur. Phys. J. Plus 140 (2025)

