Holographic vector mesons in a dilaton background
arXiv:1708.05833 · doi:10.1088/1742-6596/1024/1/012003
Abstract
Within a holographic framework, we consider vector mesons riding on a gravity-dilaton background. The latter one is determined directly from a Schrödinger equivalent potential which delivers a proper meson Regge trajectory. The mapping on the dilaton potential yields a thermodynamic phase structure with a first-order transition.
Contribution to FAIRness 2017 - FAIR next generation scientists - 5th Edition Workshop (May 28, 2017 to June 3, 2017 in Sitges, Spain)
References in corpus (12)
- Linear Confinement and AdS/QCD
- Exploring improved holographic theories for QCD: Part II
- Mimicking the QCD equation of state with a dual black hole
- Mass spectra and Regge trajectories of light mesons in the relativistic quark model
- A holographic critical point
- The melting and abundance of open charm hadrons
- An AdS/QCD model from tachyon condensation: II
- Chiral phase structure of three flavor QCD at vanishing baryon number density
- Chiral Phase Transition and Meson Melting from AdS/QCD
- A Dynamical Three-Field AdS/QCD Model
- Holographically emulating sequential versus instantaneous disappearance of vector mesons in a hot environment
- Extended soft wall model with background related to features of QCD thermodynamics
Cited by in corpus (4)
- Holographic vector meson melting in a thermal gravity-dilaton background related to QCD
- A quantum information perspective on meson melting
- Quarkonia formation in a holographic gravity-dilaton background describing QCD thermodynamics
- Holographic bottomonium formation in a cooling strong-interaction medium at finite baryon density