AbstractWe investigate the nucleon's rest mass and dispersion relation in the nuclear medium which is holographically described by the thermal charged AdS geometry. With this background, the chiral condensate plays an important role to determine the nucleon's mass in both the vacuum and the nuclear medium. It also significantly modifies the nucleon's dispersion relation. The nucleon's mass in the high density regime increases with density as expected, while in the low density regime it slightly decreases. We further study the splitting of the nucleon's energies caused by the isospin interaction with the nuclear medium
We study inhomogeneous chiral phases in nuclear matter using a hadronic model with the parity double...
9 pages, 1 figure, submitted to Phys. Rev. CWe study the static scalar susceptibility of the nuclear...
We explore nucleon swelling in the nuclear medium and relate it to color transparency. Here we explo...
We investigate the nucleon's rest mass and dispersion relation in the nuclear medium which is hologr...
AbstractWe investigate the nucleon's rest mass and dispersion relation in the nuclear medium which i...
AbstractWe investigate meson's spectrum, decay constant and form factor in a nuclear medium through ...
We investigate meson's spectrum, decay constant and form factor in a nuclear medium through holograp...
We discuss density corrections of the chiral condensate up to a NLO order using the chiral Ward iden...
We summarize our recent work in which we develope the holographic mean field approach to study the d...
We study the energy dispersions of holographic light mesons and their decay constants on dense nucle...
We consider the chiral condensate in the baryonic dense medium using the generalized Sakai-Sugimoto ...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
To study partial restoration of the chiral symmetry at finite density, we investigate the density co...
Abstract. The properties of few-body clusters (mass number A ≤ 4) are modified if they are immersed ...
We review some recent progress in studying the nuclear physics especially nucleon-nucleon (NN) force...
We study inhomogeneous chiral phases in nuclear matter using a hadronic model with the parity double...
9 pages, 1 figure, submitted to Phys. Rev. CWe study the static scalar susceptibility of the nuclear...
We explore nucleon swelling in the nuclear medium and relate it to color transparency. Here we explo...
We investigate the nucleon's rest mass and dispersion relation in the nuclear medium which is hologr...
AbstractWe investigate the nucleon's rest mass and dispersion relation in the nuclear medium which i...
AbstractWe investigate meson's spectrum, decay constant and form factor in a nuclear medium through ...
We investigate meson's spectrum, decay constant and form factor in a nuclear medium through holograp...
We discuss density corrections of the chiral condensate up to a NLO order using the chiral Ward iden...
We summarize our recent work in which we develope the holographic mean field approach to study the d...
We study the energy dispersions of holographic light mesons and their decay constants on dense nucle...
We consider the chiral condensate in the baryonic dense medium using the generalized Sakai-Sugimoto ...
We study dense nuclear and quark matter within a single microscopic approach, namely the holographic...
To study partial restoration of the chiral symmetry at finite density, we investigate the density co...
Abstract. The properties of few-body clusters (mass number A ≤ 4) are modified if they are immersed ...
We review some recent progress in studying the nuclear physics especially nucleon-nucleon (NN) force...
We study inhomogeneous chiral phases in nuclear matter using a hadronic model with the parity double...
9 pages, 1 figure, submitted to Phys. Rev. CWe study the static scalar susceptibility of the nuclear...
We explore nucleon swelling in the nuclear medium and relate it to color transparency. Here we explo...