Heavy Vector and Axial-Vector Mesons in Asymmetric Strange Hadronic Matter
Arvind Kumar, Rahul Chhabra

TL;DR
This paper investigates how the properties of heavy vector and axial-vector mesons change in strange hadronic matter with varying density and strangeness, using chiral SU(3) models and QCD sum rules, with implications for heavy-ion collision experiments.
Contribution
It introduces a combined approach using chiral SU(3) models and QCD sum rules to evaluate in-medium modifications of meson properties in strange hadronic matter.
Findings
Masses and decay constants are significantly affected by isospin asymmetry.
Strangeness fraction influences the in-medium properties of mesons.
Results may impact interpretation of heavy-ion collision experimental data.
Abstract
We calculate the effects of finite density of isospin asymmetric strange hadronic matter, for different strangeness fractions, on the in-medium properties of vector and axial-vector mesons using chiral hadronic SU(3) model and QCD sum rules. We focus on the evaluation of in-medium mass-shift and shift of decay constant of above vector and axial vector mesons. In QCD sum rule approach the properties e.g. masses and decay constants of vector and axial vector mesons are written in terms of quark and gluon condensates. These quarks and gluon condensates are evaluated in the present work using chiral SU(3) model through the medium modification of scalar-isoscalar fields and , the scalar-isovector field and scalar dilaton field in strange hadronic…
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Taxonomy
TopicsHigh-Energy Particle Collisions Research · Cosmology and Gravitation Theories · High-pressure geophysics and materials
