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Improving ResBos for the precision needs of the LHC

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arxiv 2311.09916 v1 pith:OU4HJXIQ submitted 2023-11-16 hep-ph hep-ex

Improving ResBos for the precision needs of the LHC

classification hep-ph hep-ex
keywords resbosbosoncodefunctionnon-perturbativeprecisionrapidityaccuracy
verification ladder T0 review T1 audit T2 compute T3 formal T4 reserved
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The resummation calculation (ResBos) is a widely used tool for the simulation of single vector boson production at colliders. In this work, we develop a significant improvement over the ResBos code by increasing the accuracy from NNLL+NLO to N${}^3$LL+NNLO and release the ResBos v2.0 code. Furthermore, we propose a new non-perturbative function that includes information about the rapidity of the system (IFY). The IFY functional form was fitted to data from fixed target experiments, the Tevatron, and the LHC. We find that the non-perturbative function has mild rapidity dependence based on the results of the fit. Finally, we investigate the effects that this increased precision has on the measurement of the $W$ boson by CDF and impacts on future LHC measurements.

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Cited by 3 Pith papers

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    The STAR W+/W- cross section ratio is minimally affected by fiducial constraints and pT resummation, providing robust discrimination between ar d(x) and ar u(x) PDF models at x ~ 0.1 via L2 sensitivity and reweighting.

  3. QCD for electroweak precision measurements: Foundations

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    QCD collinear factorization, DGLAP evolution, and QT resummation, developed via DIS and Drell-Yan, form the calculational foundation for precision electroweak observables and new-physics searches.