We study cold and dense nuclear matter by using the gauge/gravity duality. To this end, we use the Witten–Sakai–Sugimoto model and the V-QCD models with an approach where the nuclear matter is taken to be spatially homogeneous. We focus on the “popcorn” transitions, which are phase transitions in the nuclear matter phases induced by changes in the layer structure of the configuration on the gravity side. We demonstrate that the equation of state for the homogeneous nuclear matter becomes approximately conformal at high densities, and compare our results to other approaches
We study the presence of thermodynamic instabilities in a nuclear medium at finite temperature and d...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
If a first-order phase transition separates nuclear and quark matter at large baryon density, an int...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
We study the nuclear symmetry energy of dense matter using holographic QCD. To this end, we consider...
We study nuclear symmetry energy of dense matter using holographic QCD. We calculate it in a various...
We discuss nuclear matter and the transition to quark matter in the decompactified limit of the Saka...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
AbstractWe discuss the coupled variations of the gravitational, strong and electroweak coupling cons...
We construct an effective chiral Lagrangian for hadrons implemented by the conformal invariance and ...
We study asymmetric dense matter in holographic QCD.We construct asymmetric dense matter by consider...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
We present a holographic model of QCD with a first order chiral restoration phase transition with ch...
We study the presence of thermodynamic instabilities in a nuclear medium at finite temperature and d...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
If a first-order phase transition separates nuclear and quark matter at large baryon density, an int...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
We study the nuclear symmetry energy of dense matter using holographic QCD. To this end, we consider...
We study nuclear symmetry energy of dense matter using holographic QCD. We calculate it in a various...
We discuss nuclear matter and the transition to quark matter in the decompactified limit of the Saka...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
AbstractWe discuss the coupled variations of the gravitational, strong and electroweak coupling cons...
We construct an effective chiral Lagrangian for hadrons implemented by the conformal invariance and ...
We study asymmetric dense matter in holographic QCD.We construct asymmetric dense matter by consider...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
We present a holographic model of QCD with a first order chiral restoration phase transition with ch...
We study the presence of thermodynamic instabilities in a nuclear medium at finite temperature and d...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
If a first-order phase transition separates nuclear and quark matter at large baryon density, an int...