Thermodynamics of soft wall AdS/QCD at finite chemical potential
arXiv:1109.5523 · doi:10.1142/S0217732312501635
Abstract
We study the thermodynamics of soft wall model in AdS/QCD framework. The low temperature phase of QCD is described by thermal AdS and high temperature phase by AdS Black hole solution of five dimensional gravity with negative cosmological constant. The chemical potential is introduced via the solution of U(1) vector field in the bulk. The difference of action densities in two phases is studied and the results are compared with hard wall model. The quark number susceptibility is also calculated in both the models.
revised version, to appear in MPLA
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Cited by in corpus (8)
- Nucleon's axial-vector form factor in the hard-wall AdS/QCD model
- Holographic stability for non- candidates
- Hawking-Page transition in holographic QCD at finite density
- The D4/D8 model and holographic QCD
- Study of confinement/deconfinement transition in AdS/QCD with generalized warp factors
- Thermodynamics of Soft Wall Model in Einstein-Maxwell-Gauss-Bonnet Gravity
- Meson's Correlation Functions in a Nuclear Medium
- RG flow of AC Conductivity in Soft Wall Model of QCD