Using the Poisson bracket method, we construct the hydrodynamics of nuclear matter in the chiral limit, which describes the dynamics of all low-energy degrees of freedom, including the fluid-dynamical and pionic ones. The hydrodynamic equations contain, beside five Euler equations of relativistic fluid dynamics, Nf^2-1 second order equations describing propagating pions and Nf^2-1 first order equations describing the advection of the baryonic vector isospin charges. We present hydrodynamic arguments showing that the pion velocity vanishes at the second order phase transition at Nf=2
The role of chiral (pion) dynamics in nuclear matter is reviewed. Contributions to the energy per pa...
We study dense nuclear matter and the chiral phase transition in a SU(2) parity doublet model at zer...
By using a dynamical transport code we show that chirally disoriented domains might survive the hadr...
With the attempts of extending the hydrodynamic framework of heavy-ion collision to proton-proton an...
We introduce a model for the real-time evolution of a relativistic fluid of quarks coupled to non-eq...
We show how hydrodynamics of relativistic system with broken continuous symmetry can be constructed ...
This thesis is a review of six publications in which we make use of relativistic hydrodynamics to so...
In the present paper we develop the essential theoretical tools for the treatment of the dynamics of...
A generic property of a first-order phase transition in equilibrium, and in the limit of large entro...
Résumé- Le comportement de la matière nucléaire pénétrée par un nucléon est étudiée en approximation...
We analyse the extension of Chiral Perturbation Theory to describe a meson gas out of thermal equili...
A generic property of a first-order phase transition in equilibrium, and in the limit of large entro...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
Dynamics of relativistic heavy-ion collisions is investigated on the basis of a simple (1+1)-dimensi...
The Standard Model of particle physics, augmented with neutrino mixing, is at least very nearly the ...
The role of chiral (pion) dynamics in nuclear matter is reviewed. Contributions to the energy per pa...
We study dense nuclear matter and the chiral phase transition in a SU(2) parity doublet model at zer...
By using a dynamical transport code we show that chirally disoriented domains might survive the hadr...
With the attempts of extending the hydrodynamic framework of heavy-ion collision to proton-proton an...
We introduce a model for the real-time evolution of a relativistic fluid of quarks coupled to non-eq...
We show how hydrodynamics of relativistic system with broken continuous symmetry can be constructed ...
This thesis is a review of six publications in which we make use of relativistic hydrodynamics to so...
In the present paper we develop the essential theoretical tools for the treatment of the dynamics of...
A generic property of a first-order phase transition in equilibrium, and in the limit of large entro...
Résumé- Le comportement de la matière nucléaire pénétrée par un nucléon est étudiée en approximation...
We analyse the extension of Chiral Perturbation Theory to describe a meson gas out of thermal equili...
A generic property of a first-order phase transition in equilibrium, and in the limit of large entro...
High-energy nuclear collisions produce a nonequilibrium plasma of quarks and gluons which thermalize...
Dynamics of relativistic heavy-ion collisions is investigated on the basis of a simple (1+1)-dimensi...
The Standard Model of particle physics, augmented with neutrino mixing, is at least very nearly the ...
The role of chiral (pion) dynamics in nuclear matter is reviewed. Contributions to the energy per pa...
We study dense nuclear matter and the chiral phase transition in a SU(2) parity doublet model at zer...
By using a dynamical transport code we show that chirally disoriented domains might survive the hadr...