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TMD factorization for dijet and heavy-meson pair in DIS

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arxiv 2008.07531 v4 pith:5463PK3A submitted 2020-08-17 hep-ph nucl-exnucl-th

TMD factorization for dijet and heavy-meson pair in DIS

classification hep-ph nucl-exnucl-th
keywords factorizationfunctionsoftmomentumpairprocessestransverseaddition
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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We study a transverse momentum dependent (TMD) factorization framework for the processes of di-jet and heavy meson pair production in deep-inelastic-scattering in an electron-proton collider, considering the measurement of the transverse momentum imbalance of the two hard probes in the Breit frame. For the factorization theorem we employ soft-collinear and boosted-heavy-quark effective field theories. The factorized cross-section for both processes is sensitive to gluon unpolarized and linearly polarized TMD distributions and requires the introduction of a new soft function. We calculate the new soft function here at one loop, regulating rapidity divergences with the $\delta$-regulator. In addition, using a factorization consistency relation and a universality argument regarding the heavy-quark jet function, we obtain the anomalous dimension of the new soft function at two loops.

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Forward citations

Cited by 3 Pith papers

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    Derives Lindblad evolution for color dipole in QCD plasma and demonstrates quasi-factorization of Wigner distribution violated by color decoherence factor controlled by theta_qqbar/theta_c ratio.

  3. Probing Saturation Effect in Heavy Meson Pair Correlation in Forward $pA$ Collisions

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    Heavy meson pair correlations in forward pA collisions are computed in the CGC framework with Sudakov resummation, reproducing LHCb data and showing a mass hierarchy in R_pA that strengthens at higher rapidity.