We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in cold and dense QCD. This is obtained by including the baryons using simple approximation schemes in the V-QCD model, which also includes the backreaction of the quark matter to the dynamics of pure Yang-Mills. We examine two approaches for homogeneous baryon matter: baryons as a thin layer of noninteracting matter in the holographic bulk, and baryons with a homogeneous bulk gauge field. We find that the second approach exhibits phenomenologically reasonable features. At zero temperature, the vacuum, baryon, and quark matter phases are separated by strongly first order transitions as the chemical potential varies. The equation of state in the...
Large-N-c QCD matter at intermediate baryon density and low temperatures has been conjectured to be ...
We study holographic models of the QCD temperature-chemical potential phase diagram based on the D3/...
Holography provides a powerful tool to model QCD and other strongly coupled gauge dynamics. As examp...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
AbstractIn this paper, we calculate analytically the baryonic density and susceptibilities, which ar...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
We discuss homogeneous baryonic matter in the decompactified limit of the Sakai-Sugimoto model, impr...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
In this review, we provide an up-to-date account of quantitative holographic descriptions of the str...
The transport properties of dense QCD matter play a crucial role in the physics of neutron stars and...
Holographic QCD is based on the AdS/CFT duality and offers new nonperturbative approaches to underst...
We use a top-down holographic model for strongly interacting quark matter to study the properties of...
Large-N-c QCD matter at intermediate baryon density and low temperatures has been conjectured to be ...
We study holographic models of the QCD temperature-chemical potential phase diagram based on the D3/...
Holography provides a powerful tool to model QCD and other strongly coupled gauge dynamics. As examp...
We establish a holographic bottom-up model which covers both the baryonic and quark matter phases in...
Solving the properties of dense QCD matter is an extremely challenging problem because standard theo...
The gauge/gravity duality, combined with information from lattice QCD, nuclear theory, and perturbat...
AbstractIn this paper, we calculate analytically the baryonic density and susceptibilities, which ar...
We use the holographic V-QCD models to analyse the physics of dense QCD and neutron stars. Accommoda...
We discuss homogeneous baryonic matter in the decompactified limit of the Sakai-Sugimoto model, impr...
I review holographic models for (dense and cold) nuclear matter, neutron stars, and their mergers. I...
In this review, we provide an up-to-date account of quantitative holographic descriptions of the str...
The transport properties of dense QCD matter play a crucial role in the physics of neutron stars and...
Holographic QCD is based on the AdS/CFT duality and offers new nonperturbative approaches to underst...
We use a top-down holographic model for strongly interacting quark matter to study the properties of...
Large-N-c QCD matter at intermediate baryon density and low temperatures has been conjectured to be ...
We study holographic models of the QCD temperature-chemical potential phase diagram based on the D3/...
Holography provides a powerful tool to model QCD and other strongly coupled gauge dynamics. As examp...