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QCD and a Holographic Model of Hadrons
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We propose a five-dimensional framework for modeling low-energy properties of QCD. In the simplest three parameter model we compute masses, decay rates and couplings of the lightest mesons. The model fits experimental data to within 10%. The framework is a holographic version of the QCD sum rules, motivated by the anti-de Sitter/conformal field theory (AdS/CFT) correspondence. The model naturally incorporates properties of QCD dictated by chiral symmetry, which we demonstrate by deriving the Gell-Mann-Oakes-Renner relationship for the pion mass.
Forward citations
Cited by 22 Pith papers
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Tensor meson transition form factors in holographic QCD and the muon $g-2$
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From Confinement to Chaos in AdS/CFT Correspondence via Non-equilibrium Local States
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Holography for QCD(Adj) and QCD(Adj)+F
A holographic model treats QCD(Adj) instanton condensation and adjoint-fermion chiral condensation as BF bound violations, and predicts an order-of-magnitude scale gap when fundamentals are added.
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Condensate phases of nuclear matter from AdS Hardwall models
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Heavy Quarkonium Spectrum and Decay Constants from a Neural-Network-Based Holographic Model
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Properties of Stable Massive Quark Stars in Holography
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Holographic quark masses and radiative decays of heavy vector mesons
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Thermodynamics of the Isospectral family of holographic vector mesons
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Entanglement Entropy and Complexity of Multicomponent Universe from Holography
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The nucleon structure from an AdS/QCD model in the Veneziano limit
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Holographic entanglement entropy and complexity for the cosmological braneworld model
Time-dependent holographic entanglement entropy and complexity are computed perturbatively for braneworld FLRW universes with radiation, matter, and exotic matter by using time-dependent brane positions in black brane...
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