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Strong Coupling Expansion for the Conformal Pomeron/Odderon Trajectories

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arxiv 1409.2730 v2 pith:OCR7PRQA submitted 2014-09-09 hep-th hep-ph

Strong Coupling Expansion for the Conformal Pomeron/Odderon Trajectories

classification hep-th hep-ph
keywords couplingexpansionpomeronstronglambdaleadingodderonsoperators
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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abstract

From the perspective of AdS/CFT the Pomeron is identified with a Reggeized Graviton, while the Odderons correspond to Reggeized anti-symmetric $AdS_5$ Kalb-Ramond tensor-fields. In this paper, we consider the strong coupling expansion of the dimension of the leading twist operators dual to these Regge trajectories, $\Delta(j)$, to determine its analytic continuation in $j$ beyond the diffusion limit. In particular, we compute the strong coupling expansion of the intercept to order $\lambda^{-3}$, where $\lambda$ is the t'Hooft coupling, for both the Pomeron, which is $C=+1$ crossing-even, and the "Odderons", which are the leading $C=-1$ crossing-odd Regge singularities. We discuss the spectral curves of the class of single-trace operators to which these string modes couple.

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Cited by 2 Pith papers

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  1. Unpolarized GPDs at small $x$ and non-zero skewness

    hep-ph 2025-12 unverdicted novelty 7.0

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  2. On the Two $R$-Factors in the Small-$x$ Shockwave Formalism

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    Replacing the rapidity argument of the dipole amplitude with ln min{1/|x|, 1/|ξ|} and refining initial conditions for non-linear evolution can eliminate two R-factors in small-x shockwave calculations.