English

Effect of Asymmetric Nuclear Medium on the Valence Quark Structure of the Kaons

High Energy Physics - Phenomenology 2024-10-29 v1

Abstract

The role of asymmetric nuclear medium on the properties of kaon is investigated at zero and finite temperature employing a hybrid approach integrating the light cone quark model (LCQM) and the chiral SU(3) quark mean field (CQMF) model. The in-medium quark masses are calculated within the CQMF model and are used as inputs to study the medium modifications in the kaon properties. In particular, we have analysed the impact of baryonic density, isospin asymmetry and temperature on the weak decay constant, distribution amplitudes (DAs) and parton quark distributions (PDFs) of valence quark structure of kaons. The effects of isospin asymmetry on the kaon doublet K=(K+K0)K =\left(\begin{array}{c} K^{+} \\ K^{0} \end{array} \right) and antikaon doublet Kˉ\bar{K}= (K,Kˉ0K^-, \bar{K}^0) are also studied. In order to compare with future experiments, we have also evolved the in-medium DAs and PDFs of kaons to Q2=16Q^2=16 GeV2^2. As compared to the temperature and isospin asymmetry, change in baryonic density of the nuclear medium makes more significant changes to the DAs and PDFs of kaons.

Keywords

Cite

@article{arxiv.2410.20181,
  title  = {Effect of Asymmetric Nuclear Medium on the Valence Quark Structure of the Kaons},
  author = {Dhananjay Singh and Satyajit Puhan and Navpreet Kaur and Manpreet Kaur and Arvind Kumar and Suneel Dutt and Harleen Dahiya},
  journal= {arXiv preprint arXiv:2410.20181},
  year   = {2024}
}

Comments

33 pages, 16 figures