Conditional entropy of glueball states
arXiv:1609.01258 · doi:10.1016/j.physletb.2016.12.007
Abstract
The conditional entropy of glueball states is calculated using a holographic description. Glueball states are represented by a supergravity dual picture, consisting of a 5-dimensional graviton-dilaton action of a dynamical holographic AdS/QCD model. The conditional entropy is studied as a function of the glueball spin and of the mass, providing information about the stability of the glueball states.
6 pages, 4 figures
References in corpus (7)
- Big-Bang Nucleosynthesis
- Linear Confinement and AdS/QCD
- Is f0(1710) a glueball?
- Stability of the graviton Bose-Einstein condensate in the brane-world
- Holographic glueball structure
- Information-Entropic for Travelling Solitons in Lorentz and CPT Breaking Systems
- Cyclically deformed defects and topological mass constraints
Cited by in corpus (12)
- AdS/QCD duality and the quarkonia holographic information entropy
- Extended quantum portrait of MGD black holes and information entropy
- The nuclear configurational entropy impact parameter dependence in the Color-Glass Condensate
- Fine-tuning the Color-Glass Condensate with the nuclear configurational entropy
- Nucleons and higher spin baryon resonances: an AdS/QCD configurational entropic incursion
- Pion family in AdS/QCD: the next generation from configurational entropy
- Information-entropic analysis of Korteweg--de Vries solitons in the quark-gluon plasma
- Configurational entropy of tachyon kinks on unstable Dp-branes
- Configuration entropy in the soft wall AdS/QCD model and the Wien law
- Nuclear configurational entropy of the energy-energy correlation in annihilation processes
- Configurational Entropy of Optical Bright Similariton in Tapered Graded-Index Waveguide
- Analyzing lump-type solutions in scalar field models through configurational information measure