Heavy Vector and Axial-Vector Mesons in Hot and Dense Asymmetric Strange Hadronic Matter
arXiv:1509.08247 · doi:10.1103/PhysRevC.92.035208
Abstract
We calculate the effects of finite density and temperature 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 in decay constant of above vector and axial-vector mesons. In QCD sum rule approach, the properties, e.g., the masses and decay constants of vector and axial-vector mesons are written in terms of quark and gluon condensates. These quark and gluon condensates are evaluated in the present work within chiral SU(3) model, through the medium modification of, scalar-isoscalar fields and , the scalar-isovector field and scalar dilaton field , in the strange hadronic medium which includes both nucleons as well as hyperons. As we shall see in detail, the masses and decay constants of heavy vector and axial-vector mesons are affected significantly due to isospin asymmetry and strangeness fraction of the medium and these modifications may influence the experimental observables produced in heavy ion collision experiments. The results of present investigations of in-medium properties of vector and axial-vector mesons at finite density and temperature of strange hadronic medium may be helpful for understanding the experimental data from heavy-ion collision experiments in-particular for the Compressed Baryonic Matter (CBM) experiment of FAIR facility at GSI, Germany.
36 pages and 9 figures. arXiv admin note: substantial text overlap with arXiv:1506.02115
References in corpus (15)
- J/psi Production vs Centrality, Transverse Momentum, and Rapidity in Au+Au Collisions at sqrt(s_NN) = 200 GeV
- Open charm in nuclear matter at finite temperature
- QCD sum rules for D and B mesons in nuclear matter
- Interaction of vector mesons with baryons and nuclei
- J/Psi mass shift in nuclear matter
- and masses in isospin asymmetric hot nuclear matter - a QCD sum rule approach
- Four-Quark Condensates in Nucleon QCD Sum Rules
- Isospin dependent kaon and antikaon optical potentials in dense hadronic matter
- Kaons and antikaons in asymmetric nuclear matter
- More about the and mesons in nuclear matter
- Bottom-strange mesons in hyperonic matter
- Wilson coefficients and four-quark condensates in QCD sum rules for medium modifications of mesons
- In-Medium Modifications of Scalar Charm Mesons in Nuclear Matter
- Heavy-quark expansion for D and B mesons in nuclear matter
- Temperature dependence of Quark and Gluon condensate In The Dyson-Schwinger Equations At Finite Temperature
Cited by in corpus (11)
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- Charmonium decay widths in magnetized matter
- Analysis of pseudoscalar and scalar mesons and charmonium decay width in hot magnetized asymmetric nuclear matter
- In-medium properties of pseudoscalar and mesons
- meson mass and decay width in strange hadronic matter
- Heavy vector and axial-vector mesons in hot magnetized asymmetric nuclear matter
- Masses and decay widths of scalar and mesons in strange hadronic medium
- Dirac sea effects on Heavy Quarkonia decay widths in magnetized matter -- a field theoretic model of composite hadrons