We discuss nuclear matter and the transition to quark matter in the decompactified limit of the Sakai-Sugimoto model. Nuclear matter is included through instantons on the flavor branes of the model. Our approximation is based on the flat-space solution, but we allow for a dynamical instanton width and deformation and compute the energetically preferred number of instanton layers in the bulk as a function of the baryon chemical potential. We determine the regions in parameter space where the binding energy of nuclear matter is like in QCD, and compute the phase diagram in the plane of temperature and chemical potential
We construct the nuclear and quark matter equations of state at zero temperature in an effective qua...
We present a holographic model of QCD with a first order chiral restoration phase transition with ch...
We investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the decon...
We discuss nuclear matter and the transition to quark matter in the decompactified limit of the Saka...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
We discuss homogeneous baryonic matter in the decompactified limit of the Sakai-Sugimoto model, impr...
We study the phase structure of the Witten-Sakai-Sugimoto model in the plane of temperature and bary...
We study light quark interactions in the instanton liquid at finite quark/baryon number density anal...
Abstract. As a part of the attempt to address dense baryonic matter, we first review holographic app...
We present arguments suggesting that large size overlapping instantons are the driving mechanism of ...
We discuss nuclear physics in the Witten-Sakai-Sugimoto model, in the limit of large number Nc of co...
As a part of the attempt to address dense baryonic matter, we first review holographic approaches to...
Holographic QCD at finite baryon number density and zero temperature is studied within the five-dime...
Nuclear matter at large number of colors is necessarily in a solid phase. In particular holographic...
We study cold and dense nuclear matter by using the gauge/gravity duality. To this end, we use the W...
We construct the nuclear and quark matter equations of state at zero temperature in an effective qua...
We present a holographic model of QCD with a first order chiral restoration phase transition with ch...
We investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the decon...
We discuss nuclear matter and the transition to quark matter in the decompactified limit of the Saka...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
We discuss homogeneous baryonic matter in the decompactified limit of the Sakai-Sugimoto model, impr...
We study the phase structure of the Witten-Sakai-Sugimoto model in the plane of temperature and bary...
We study light quark interactions in the instanton liquid at finite quark/baryon number density anal...
Abstract. As a part of the attempt to address dense baryonic matter, we first review holographic app...
We present arguments suggesting that large size overlapping instantons are the driving mechanism of ...
We discuss nuclear physics in the Witten-Sakai-Sugimoto model, in the limit of large number Nc of co...
As a part of the attempt to address dense baryonic matter, we first review holographic approaches to...
Holographic QCD at finite baryon number density and zero temperature is studied within the five-dime...
Nuclear matter at large number of colors is necessarily in a solid phase. In particular holographic...
We study cold and dense nuclear matter by using the gauge/gravity duality. To this end, we use the W...
We construct the nuclear and quark matter equations of state at zero temperature in an effective qua...
We present a holographic model of QCD with a first order chiral restoration phase transition with ch...
We investigate instantons in finite temperature QCD via Witten's holographic QCD. To study the decon...