Scalar and Tensor Glueballs as Gravitons
arXiv:1710.09225 · doi:10.1140/epja/i2018-12600-9
Abstract
The bottom-up approach of the AdS/CFT correspondence leads to the study of field equations in an background and from their solutions to the determination of the hadronic mass spectrum. We extend the study to the equations of gravitons and determine from them the glueball spectrum. We propose an original presentation of the results which facilitates the comparison of the various models with the spectrum obtained by lattice QCD. This comparison allows to draw some phenomenological conclusions.
9 pages , 5 figures
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- Proton and neutron form factors from deformed gravity/gauge duality
- Fluctuation and Dissipation from a Deformed String/Gauge Duality Model
- Scalar spectrum in a graviton soft wall model
- Fluctuation and dissipation within a deformed holographic model with backreaction
- Double parton correlations in mesons within AdS/QCD soft-wall models: a first comparison with lattice data
- Fermionic and bosonic fluctuation-dissipation theorem from a deformed AdS holographic model at finite temperature and chemical potential
- Odd-spin glueballs, AdS/QCD and information entropy
- AdS/QCD oddball masses and Odderon Regge trajectory from a twist-five operator approach
- Glueballs at high temperature within the Hard-Wall holographic model
- Fermionic DIS from a deformed string/gauge correspondence model