The temperature evolution of the chiral condensates in a gas made of pions, kaons and etas is studied within the framework of SU(2) and SU(3) Chiral Perturbation Theory. We describe the temperature dependence of the quark condensates by using the meson meson scattering phase shifts in a second order virial expansion. We find that the SU(3) formalism yields an extrapolated melting temperature for the non-strange condensates which is lower by about 0-30 MeV than within SU(2). In addition our results show that the strange condensate melting is slower than that of the non-strange, due to the different strange and non-strange quark masses
We investigate the existence of bound states of baryons in a kaon condensate using chiral mean field...
We apply the chiral SU(3) quark mean field model to study the properties of strange hadronic matter ...
We summarize recent developments in our understanding of low-mass quark-antiquark excitations in had...
The SU(2) and SU(3) chiral phase transitions in a gas made of pions, kaons, and etas are studied wit...
The evolution of the chiral condensate with the temperature is studied using SU(3) Chiral Perturbati...
We study the temperature evolution of the [(q) over bar q] condensate below the chiral phase transit...
We present a model independent study of the chiral condensate evolution in a hadronic gas, in terms ...
We present a model independent study of the chiral condensate evolution in a hadronic gas, in terms ...
We analyze the properties of four-quark condensates and scalar susceptibilities in the meson gas, wi...
The SU(3) extension of the linear sigma model is employed to elucidate the effect of including stran...
We analyse the extension of Chiral Perturbation Theory to describe a meson gas out of thermal equili...
We analyze quark condensates and chiral (scalar) susceptibilities including isospin-breaking effects...
Thermal pion fluctuations, in principle, can completely disorder the phase of the quark condensate a...
© The Author(s) 2021 We use recently derived Ward identities and lattice data for the light- and st...
We show that melting the quark mass, the scalar $\sigma $ mass and the quark condensate leads unique...
We investigate the existence of bound states of baryons in a kaon condensate using chiral mean field...
We apply the chiral SU(3) quark mean field model to study the properties of strange hadronic matter ...
We summarize recent developments in our understanding of low-mass quark-antiquark excitations in had...
The SU(2) and SU(3) chiral phase transitions in a gas made of pions, kaons, and etas are studied wit...
The evolution of the chiral condensate with the temperature is studied using SU(3) Chiral Perturbati...
We study the temperature evolution of the [(q) over bar q] condensate below the chiral phase transit...
We present a model independent study of the chiral condensate evolution in a hadronic gas, in terms ...
We present a model independent study of the chiral condensate evolution in a hadronic gas, in terms ...
We analyze the properties of four-quark condensates and scalar susceptibilities in the meson gas, wi...
The SU(3) extension of the linear sigma model is employed to elucidate the effect of including stran...
We analyse the extension of Chiral Perturbation Theory to describe a meson gas out of thermal equili...
We analyze quark condensates and chiral (scalar) susceptibilities including isospin-breaking effects...
Thermal pion fluctuations, in principle, can completely disorder the phase of the quark condensate a...
© The Author(s) 2021 We use recently derived Ward identities and lattice data for the light- and st...
We show that melting the quark mass, the scalar $\sigma $ mass and the quark condensate leads unique...
We investigate the existence of bound states of baryons in a kaon condensate using chiral mean field...
We apply the chiral SU(3) quark mean field model to study the properties of strange hadronic matter ...
We summarize recent developments in our understanding of low-mass quark-antiquark excitations in had...