English

Open Strange Mesons in (magnetized) nuclear matter

High Energy Physics - Phenomenology 2023-11-09 v2

Abstract

We investigate the mass modifications of open strange mesons (vector KK^* and axial vector K1K_1) in (magnetized) isospin asymmetric nuclear matter using quantum chromodynamics sum rule (QCDSR) approach. The in-medium decay widths of KK^* \rightarrow KπK\pi and K1K_1 \rightarrow KπK^*\pi are studied from the mass modifications of K1K_1, KK^* and KK mesons, using a light quark-antiquark pair creation model, namely the 3P0{}^3 P_0 model. The in-medium decay width for K1K_1 \rightarrow KπK^*\pi is compared with the decay widths calculated using a phenomenological Lagrangian. The effects of magnetic fields are also studied on the mass and the partial decay width of the vector KK^* meson decaying to KπK\pi. Within the QCD sum rule approach, the medium effects on the masses of the open strange mesons are calculated from the light quark condensates and the gluon condensates in the hadronic medium. The quark condensates are calculated from the medium modifications of the scalar fields (σ\sigma, ζ\zeta, and δ\delta) in the mean field approximation within a chiral SU(3)SU(3) model, while the scalar gluon condensate is obtained from the medium modification of a scalar dilaton field (χ\chi), which is introduced within the model to imitate the scale invariance breaking of QCD.

Keywords

Cite

@article{arxiv.2302.14493,
  title  = {Open Strange Mesons in (magnetized) nuclear matter},
  author = {Ankit Kumar and Amruta Mishra},
  journal= {arXiv preprint arXiv:2302.14493},
  year   = {2023}
}

Comments

42 pages, 11 figures, minor revisions

R2 v1 2026-06-28T08:51:42.090Z