In the quenched dynamical holographic QCD model, the chiral and deconfinement transitions separate in the (T, mu) plane, producing a chiral critical endpoint and a quarkyonic window.
Elliptic Flow, Kasner Universe and Holographic Dual of RHIC Fireball
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abstract
We consider a holographic dual of hydrodynamics of N=4 SYM plasma that undergoes non-isotropic three-dimensional expansion relevant to RHIC fireball. Our model is a natural extension of the Bjorken's one-dimensional expansion, and it describes an elliptic flow whose v2 and eccentricity are given in terms of anisotropy parameters. Holographic renormalization shows that absence of conformal anomaly in the SYM theory constrains our local rest frame to be a Kasner spacetime. We show that the Kasner spcetime provides a simple description of the anisotropically expanding fluid within a well-controled approximation. We also find that the dual geometry determines some of the hydrodynamic quantities in terms of the initial condition and the fundamental constants.
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Quarkyonic phase from quenched dynamical holographic QCD model
In the quenched dynamical holographic QCD model, the chiral and deconfinement transitions separate in the (T, mu) plane, producing a chiral critical endpoint and a quarkyonic window.