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Born-Oppenheimer Renormalization group for High Energy Scattering: the Setup and the Wave Function

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arxiv 2412.05085 v1 pith:VZGNU7PU submitted 2024-12-06 hep-ph hep-thnucl-th

classification hep-phhep-thnucl-th
keywords evolutionhighapproachborn-oppenheimerenergyfrequencyformulationfunction
verification ladder T0 review T1 audit T2 compute T3 formal
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abstract

We develop an approach to QCD evolution based on the sequential Born-Oppenheimer approximations that include higher and higher frequency modes as the evolution parameter is increased. This Born-Oppenheimer renormalization group is a general approach which is valid for the high energy evolution as well as the evolution in transverse resolution scale $Q^2$. In the former case it yields the frequency ordered formulation of high energy evolution, which includes both the eikonal splittings which produce gluons with low longitudinal momentum, and the DGLAP-like splittings which produce partons with high transverse momentum. In this, first paper of the series we lay out the formulation of the approach, and derive the expression for the evolved wave function of a hadronic state. We also discuss the form of the $S$-matrix which is consistent with the frequency ordering.

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  1. One-loop renormalization of quark TMD in the light-cone gauge: CSS evolution

    hep-ph 2025-05 conditional novelty 6.0 of 10

    One-loop renormalization of the quark TMD in the target light-cone gauge with the Mandelstam-Leibbrandt prescription reproduces the CSS evolution equations, with the double log traced to the ML zero-mode in diagrams e...

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