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Pomeron and Odderon Regge Trajectories from a Dynamical Holographic Model

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arxiv 1601.05114 v3 pith:K3N54PEM submitted 2016-01-19 hep-ph hep-th

classification hep-phhep-th
keywords dynamicalstatesevenmodelodderonpomeronreggetrajectories
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abstract

In this work we use gauge/string dualities and a dynamical model that takes into account dynamical corrections to the metric of the anti de Sitter space due to a quadratic dilaton field and calculate the masses of even and odd spin glueball states with $P=C=+1$, and $P=C=-1$, respectively. Then we construct the corresponding Regge trajectories which are associated with the pomeron for even states with $P=C=+1$, and with the odderon for odd states with $P=C=-1$. We compare our results with those coming from experimental data as well as other models.

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  1. Nucleon spectra and wave functions from holographic models with dual Einstein-dilaton and Starobinsky-dilaton gravities

    hep-th 2026-07 conditional novelty 4.0 of 10

    Adding a fitted λ parameter and Starobinsky αR² corrections lets holographic Einstein-dilaton models reproduce the nucleon radial-excitation spectrum with errors as low as 0.29%.

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