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Dense-Dilute Duality at work: dipoles of the target

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arxiv hep-ph/0503155 v2 pith:NC6E5EVW submitted 2005-03-16 hep-ph

Dense-Dilute Duality at work: dipoles of the target

classification hep-ph
keywords hep-phoperatorsevolutionexpansiontargetcreationderivativesdipole
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We explore the properties of the QCD high energy evolution in the limit of a dilute target. Using the recently established property of selfduality of the evolution operator (hep-ph/0502119), we show how to properly define the target gluon and dipole creation operators in terms of dual Wilson lines (dual eikonal factors). We explain how to expand these operators in terms of the functional derivatives of the color charge density, in the situation when they act on the eikonal factors of the projectile partons. We explicitly calculate the expansion of the high energy evolution operator to fourth order in the functional derivatives. Our result is infrared and ultraviolet finite, but does not coincide with the formula given in hep-ph/0501088. We resolve this discrepancy by showing that the identification of the dipole creation and annihilation operators used in hep-ph/0501088 is incomplete, and provide the required corrections to these definitions. The use of the corrected operators in the calculational framework of hep-ph/0501088 reproduces our result. We also prove that there is no discrepancy between the expansion of the JIMWLK equation and the dualization of the expansion of the weak field limit.

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  1. Running coupling effects in the anti-collinear resummation in high energy evolution

    hep-ph 2026-07 conditional novelty 6.0

    Running coupling plus anti-collinear resummation in BFKL/JIMWLK slows evolution and cuts the anti-collinear Pomeron intercept, while χ(γ=1) is protected by a cancellation between kernel and DGLAP running.