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Extending the MINLO method

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arxiv 1512.02663 v3 pith:MWMKFG4K submitted 2015-12-08 hep-ph

classification hep-ph
keywords minloconsideraccuracyexplicitextendingmethodmultiplicityprocesses
verification ladder T0 review T1 audit T2 compute T3 formal

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We consider improving POWHEG+MINLO simulations, so as to also render them NLO accurate in the description of observables receiving contributions from events with lower parton multiplicity than present in their underlying NLO calculation. On a conceptual level we follow the strategy of the so-called MINLO' programs. Whereas the existing MINLO' framework requires explicit analytic input from higher order resummation, here we derive an effective numerical approximation to these ingredients, by imposing unitarity. This offers a way of extending the MINLO' method to more complex processes, complementary to the known route which uses explicit computations of high-accuracy resummation inputs. Specifically, we have focused on Higgs-plus-two-jet production (HJJ) and related processes. We also consider how one can cover three units of multiplicity at NLO accuracy, i.e. we consider how the HJJ-MINLO simulation may yield NLO accuracy for inclusive H, HJ, and HJJ quantities. We perform a feasibility study assessing the potential of these ideas.

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  1. MiNNLO$_{\text{PS}}$: A new method to match NNLO QCD to parton showers

    hep-ph 2019-08 conditional novelty 8.0 of 10

    MiNNLOPS matches NNLO QCD to parton showers without reweighting or merging scales, preserving leading-logarithmic shower accuracy for transverse-momentum-ordered showers.

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