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A Numerical Estimate of the Small-k_T Region in the BFKL Pomeron

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arxiv hep-ph/9511399 v2 pith:2KQZDRFY submitted 1995-11-23 hep-ph

A Numerical Estimate of the Small-k_T Region in the BFKL Pomeron

classification hep-ph
keywords regionbfklsmall-contributionestimatefinallargestate
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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A computer study is performed to estimate the influence of the small-$k_T$ region in the BFKL evolution equation. We consider the small-x region of the deep inelastic structure function $F_2$ and show that the magnitude of the small-$k_T$ region depends on $Q^2$ and $x_B$. We suggest that the width of the $\log k_T^2$-distribution in the final state may serve as an additional footprint of BFKL dynamics. For diffractive dissociation it is shown that the contribution of the infrared region is large - even for large $Q^2$. This contribution becomes smaller only if restrictions on the final state are imposed.

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Cited by 1 Pith paper

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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.