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Nguyen Hoang Vu

Publications and source records attributed to Nguyen Hoang Vu.

4 recordsLinked to original sources

A review on the equation of state of color superconductivity via holography

In this project, we will study a bottom-up holographic model for the color superconductivity (CSC) phase in the Einstein-Gauss-Bonnet (EGB) gravity. We study the color superconductivity phase in the deconfinement phase which is dual to the planar GB-RN-AdS in six-dimensional spacetime and the confinement phase dual to the AdS soliton in Einstein-Gauss-Bonnet gravity and we find the equation of state of the CSC phase with both confinement and deconfinement phase.

hep-th

A note on the Holographic model for color superconductivity in d-dimension without confinement phase

In this note, we will generalize the concept of the holography for the color superconductivity (CSC) phase becomes to d-dimension AdS instead of 6d. The dual field theory live in (d-1)-dimension $SU(N_c)$ and have no confinement phase contradiction with the QCD color superconductivity. And we will try to use holographic model with Einstein-Maxwell gravity in d dimension AdS and we study this phase with $N_c\geq 2$. And after, we will discuss the equation of state of the color superconductivity in $d=4$ case without confinement via holography

hep-th

Remark on the Emergence of Color Superconductivity for Gauge Theories in General Spacetime Dimensions from simple Holographic Models

We generalize the concept of holography for the color superconductivity (CSC) phase by considering $d$-dimensional Anti de Sitter (AdS) space instead of the traditional 6 dimensions. The corresponding dual field theory is an arbitrary confining gauge theory with $SU(N_c)$ symmetry, like quantum chromodynamics (QCD) CSC. We then use a holographic model based on Einstein-Maxwell gravity in $d$-dimensional AdS spacetime to study this phenomenon in both confinement and deconfinement phase, study the confinement$-$deconfinement phase transition and the condition for the $N_c=2$ CSC phase with $d=4$ case, one special case from arXiv:2411.05550

hep-th

Holographic model for color superconductivity in d-dimension bulk without confinement phase

We generalize the concept of holography for the color superconductivity (CSC) phase by considering $d$-dimensional Anti de Sitter (AdS) space instead of the traditional 6 dimensions. The corresponding dual field theory is a gauge theory with $SU(N_c)$ symmetry defined in $(d-1)$-dimensions that, despite lacking a confinement phase, retains characteristics consistent with quantum chromodynamics (QCD) CSC. We then use a holographic model based on Einstein-Maxwell gravity and the standard Maxwell interaction in $d$-dimensional AdS space to investigate this phenomenon for the number of colors $N_c\geq 2$ without confinement phase, identifying the dimensions where the model remains valid for $N_c = 2$.

hep-th