The thermalization of a strongly coupled plasma is examined in the holographic framework through non-local observables: the equal-time two-point correlation function of a large dimension boundary operator, and Wilson loops of different shapes. The evolution of the probes from an initial far-from-equilibrium state to a hydrodynamic regime is found to depend on their size. A hierarchy among the thermalization times of the energy density, the pressures and the large size probes, is identified: the relaxation process is faster at short distances
Understanding hydrodynamization in microscopic models of heavy-ion collisions has been an important ...
In order to analyze the strongly interacting quark gluon plasma in heavy ion colli-sions, we study d...
Finite 't Hooft coupling corrections to multiple physical observables in strongly coupled N=4 supers...
The relaxation of a strongly coupled plasma towards the hydrodynamic regime is studied by analyzing ...
The relaxation towards a thermal state of a boost-invariant strongly coupled non-Abelian plasma is i...
Using a holographic method, we further investigate the relaxation towards the hydrodynamic regime of...
We use gauge/gravity duality to investigate the thermalization of a strongly interacting plasma, tak...
We study holographic thermalization in spacetimes with a chemical potential and a non-trivial dilato...
We investigate jet quenching of virtual gluons and thermalization of a strongly-coupled plasma with ...
In this talk I will describe various features of time-dependent dynamics of strongly coupled plasma ...
AbstractWe study holographic thermalization in spacetimes with a chemical potential and a non-trivia...
We investigate the thermalization time scale in the planar limit of the SU(N) N=4 SYM plasma at stro...
Heavy-ion collisions at BNL's Relativistic Heavy-Ion Collider (RHIC) and CERN's Large Hadron Collide...
Dynamical evolution of thin shells composed by different kinds of degrees of freedom collapsing with...
We extend our previous analysis of holographic heavy ion collisions in non-conformal theories. We pr...
Understanding hydrodynamization in microscopic models of heavy-ion collisions has been an important ...
In order to analyze the strongly interacting quark gluon plasma in heavy ion colli-sions, we study d...
Finite 't Hooft coupling corrections to multiple physical observables in strongly coupled N=4 supers...
The relaxation of a strongly coupled plasma towards the hydrodynamic regime is studied by analyzing ...
The relaxation towards a thermal state of a boost-invariant strongly coupled non-Abelian plasma is i...
Using a holographic method, we further investigate the relaxation towards the hydrodynamic regime of...
We use gauge/gravity duality to investigate the thermalization of a strongly interacting plasma, tak...
We study holographic thermalization in spacetimes with a chemical potential and a non-trivial dilato...
We investigate jet quenching of virtual gluons and thermalization of a strongly-coupled plasma with ...
In this talk I will describe various features of time-dependent dynamics of strongly coupled plasma ...
AbstractWe study holographic thermalization in spacetimes with a chemical potential and a non-trivia...
We investigate the thermalization time scale in the planar limit of the SU(N) N=4 SYM plasma at stro...
Heavy-ion collisions at BNL's Relativistic Heavy-Ion Collider (RHIC) and CERN's Large Hadron Collide...
Dynamical evolution of thin shells composed by different kinds of degrees of freedom collapsing with...
We extend our previous analysis of holographic heavy ion collisions in non-conformal theories. We pr...
Understanding hydrodynamization in microscopic models of heavy-ion collisions has been an important ...
In order to analyze the strongly interacting quark gluon plasma in heavy ion colli-sions, we study d...
Finite 't Hooft coupling corrections to multiple physical observables in strongly coupled N=4 supers...