Next-to-next-to-leading order event generation for Z-boson pair production matched to parton shower

Генерация событий на уровне вплоть до следующего к следующему ведущего порядка для производства пары Z-бозонов, согласованная с частью ливня частиц
Simone Alioli, Alessandro Broggio, Alessandro Gavardi, Stefan Kallweit, Matthew A. Lim, Riccardo Nagar, Davide Napoletano
2021-05-21

Geneva + Pythia8NNLO QCDZ-boson pair productionparton shower matchingresummed beam-thrust spectrum
We present a novel next-to-next-to-leading order (NNLO) QCD calculation matched to parton shower for the production of a pair of Z bosons decaying to four massless leptons, pp→ℓ+ℓ−ℓ′+ℓ′−+X, at the LHC. Spin correlations, interferences and off-shell effects are included throughout. Our result is based on the resummed beam-thrust spectrum, which we evaluate at next-to-next-to-leading-logarithmic (NNLLT0′) accuracy for the first time for this process, and makes use of the Geneva Monte Carlo framework for the matching to Pythia8 shower and hadronisation models. We compare our predictions with data from the ATLAS and CMS experiments at 13TeV, finding a good agreement.
1
Developed a novel NNLO QCD calculation matched to parton shower for pp → ℓ+ℓ−ℓ′+ℓ′−+X (ZZ → four massless leptons) at the LHC.
2
Implemented matching within the Geneva Monte Carlo framework to the Pythia8 shower and hadronisation models.
3
Included spin correlations, interferences, and off-shell effects throughout the calculation.
4
Predictions show good agreement with ATLAS and CMS 13 TeV data.
5
Used the resummed beam-thrust spectrum evaluated at NNLLT0′ accuracy for this process for the first time.

Z-boson pair production (pp → Z Z → ℓ+ℓ−ℓ′+ℓ′− + X) at the LHC including decays to four massless leptons

Next-to-next-to-leading order (NNLO) QCD prediction matched to a parton shower (including NNLLT0′ resummed beam-thrust spectrum, spin correlations, interferences, off-shell effects) for the Z-boson pair production and comparison to 13 TeV ATLAS and CMS data

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2021-05-21
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Authors
Simone Alioli
Alessandro Broggio
Alessandro Gavardi
Stefan Kallweit
Matthew A. Lim
Riccardo Nagar
Davide Napoletano
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