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Light-Front Hadron Dynamics and AdS/CFT Correspondence

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arxiv hep-th/0310227 v3 pith:VMF7OCFY submitted 2003-10-24 hep-th hep-ph

Light-Front Hadron Dynamics and AdS/CFT Correspondence

classification hep-th hep-ph
keywords scatteringcorrespondencehadroniclight-frontstatesstringamplitudesangular
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A remarkable consequence of the AdS/CFT correspondence is the nonperturbative derivation of dimensional counting rules for hard scattering processes. Using string/gauge duality we derive the QCD power behavior of light-front Fock-state hadronic wavefunctions for hard scattering in the large-$r$ region of the AdS space from the conformal isometries which determine the scaling of string states as we approach the boundary from the interior of AdS space. The nonperturbative scaling results are obtained for spin-zero and spin-$\half$ hadrons and are extended to include the orbital angular momentum dependence of the constituents in the light-front Fock-expansion. The correspondence with string states is considered for hadronic states of arbitrary orbital angular momentum for a given hadron of spin $\leq 2$. We examine the implications of the color configuration of hadronic Fock-states for the QCD structure of scattering amplitudes at large $N_C$. Quark interchange amplitudes emerge as the dominant large $N_C$ scattering mechanisms for conformal QCD.

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Cited by 2 Pith papers

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  1. Gravitational form factors of the pion in light-front holographic QCD

    hep-ph 2026-07 conditional novelty 5.0

    An effective light-front wave function whose five-dimensional piece comes from holographic QCD yields pion gravitational form factors A(Q^{2}) and D(Q^{2}) that match lattice results after parameter tuning.

  2. Tachyonic AdS/QCD, Determining the Strong Running Coupling and \beta-function in both UV and IR Regions of AdS Space

    hep-ph 2022-06 unverdicted novelty 5.0

    A tachyonic AdS/QCD construction deforms the bulk geometry with a tachyon-dependent dielectric function to produce a unified running coupling from perturbative UV to nonperturbative IR regimes.