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Application of AdS/CFT in Nuclear Physics

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arxiv 1403.2501 v1 pith:ODKPSIRK submitted 2014-03-11 hep-th

classification hep-th
keywords modelnuclearsomecalculatedualityenergiesexcitedgauge-gravity
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We review some recent progress in studying the nuclear physics especially nucleon-nucleon (NN) force within the gauge-gravity duality, in context of noncritical string theory. Our main focus is on the holographic QCD model based on the $AdS_6$ background. We explain the noncritical holography model and obtain the vector-meson spectrum and pion decay constant. Also, we study the NN interaction in this frame and calculate the nucleon-meson coupling constants. A further topic covered is a toy model for calculating the light nuclei potential. In particular, we calculate the light nuclei binding energies and also excited energies of some available excited states. We compare our results with the results of other nuclear models and also with the experimental data. Moreover, we describe some other issues which are studied using the gauge-gravity duality.

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  1. Deuteron gravitational form factors, generalized parton distributions, and charge density in the framework of the soft-wall AdS/QCD model

    hep-ph 2024-12 conditional novelty 4.0 of 10

    The deuteron is modeled as a twist-6 vector field in thermal soft-wall AdS/QCD, yielding gravitational form factors, GPDs, and charge densities whose temperature dependence is governed by a modified dilaton parameter.

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