Solving the properties of dense QCD matter is an extremely challenging problem because standard theoretical tools do not work at intermediate densities. The gauge/gravity duality may help to provide answers in this region. I give a brief review of recent progress in this field, focusing on the V-QCD model, which is one of the most sophisticated holographic models of QCD. I discuss predictions for the phase diagram, the equation of state, and properties of baryons. I apply these results to analyze the properties of neutron stars and to quark matter production in neutron star mergers
QCD at finite, flavor independent quark mass is analyzed by using bottom-up holography in the Venezi...
In this thesis, QCD is studied from three different directions, with one overarching theme: holograp...
The holographic models for dense QCD matter work surprisingly well. A general implication seems that...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
The transport properties of dense QCD matter play a crucial role in the physics of neutron stars and...
Determining the phase structure of Quantum Chromodynamics (QCD) and its Equation of State (EOS) at d...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
We use a top-down holographic model for strongly interacting quark matter to study the properties of...
AbstractIn this paper, we calculate analytically the baryonic density and susceptibilities, which ar...
A holographic model of QCD in the limit of large number of colors, $N_c$, and massless fermion flavo...
We present a novel framework for the equation of state of dense and hot Quantum Chromodynamics (QCD)...
The equation of state (EoS) for cold dense matter inside neutron stars is investigated by using holo...
QCD at finite, flavor independent quark mass is analyzed by using bottom-up holography in the Venezi...
In this thesis, QCD is studied from three different directions, with one overarching theme: holograp...
The holographic models for dense QCD matter work surprisingly well. A general implication seems that...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
The transport properties of dense QCD matter play a crucial role in the physics of neutron stars and...
Determining the phase structure of Quantum Chromodynamics (QCD) and its Equation of State (EOS) at d...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
We use a top-down holographic model for strongly interacting quark matter to study the properties of...
AbstractIn this paper, we calculate analytically the baryonic density and susceptibilities, which ar...
A holographic model of QCD in the limit of large number of colors, $N_c$, and massless fermion flavo...
We present a novel framework for the equation of state of dense and hot Quantum Chromodynamics (QCD)...
The equation of state (EoS) for cold dense matter inside neutron stars is investigated by using holo...
QCD at finite, flavor independent quark mass is analyzed by using bottom-up holography in the Venezi...
In this thesis, QCD is studied from three different directions, with one overarching theme: holograp...
The holographic models for dense QCD matter work surprisingly well. A general implication seems that...