We extend the lowest-order matching of tree-level matrix elements with parton showers to give a complete description at the next higher perturbative accuracy in αsat both small and large jet resolutions, which has not been achieved so far. This requires the combination of the higher-order resummation of large Sudakov logarithms at small values of the jet resolution variable with the full next-to-leading-order (NLO) matrix-element corrections at large values. As a by-product, this combination naturally leads to a smooth connection of the NLO calculations for different jet multiplicities. In this paper, we focus on the general construction of our method and discuss its application to e+e-and pp collisions. We present first results of the implementation in the Geneva Monte Carlo framework. We employ N-jettiness as the jet resolution variable, combining its next-to-next-to- leading logarithmic resummation with fully exclusive NLO matrix elements, and PYTHIA 8 as the backend for further parton showering and hadronization. For hadronic collisions, we take Drell-Yan production as an example to apply our construction. For e+e-→ jets, taking αs(mZ) = 0:1135 from fits to LEP thrust data, together with the PYTHIA 8 hadronization model, we obtain good agreement with LEP data for a variety of 2-jet observables

Alioli, S., Bauer, C., Berggren, C., Hornig, A., Tackmann, F., Vermilion, C., et al. (2013). Combining higher-order resummation with multiple NLO calculations and parton showers in Geneva. JOURNAL OF HIGH ENERGY PHYSICS, 2013(9) [10.1007/JHEP09(2013)120].

Combining higher-order resummation with multiple NLO calculations and parton showers in Geneva

Alioli, Simone;
2013

Abstract

We extend the lowest-order matching of tree-level matrix elements with parton showers to give a complete description at the next higher perturbative accuracy in αsat both small and large jet resolutions, which has not been achieved so far. This requires the combination of the higher-order resummation of large Sudakov logarithms at small values of the jet resolution variable with the full next-to-leading-order (NLO) matrix-element corrections at large values. As a by-product, this combination naturally leads to a smooth connection of the NLO calculations for different jet multiplicities. In this paper, we focus on the general construction of our method and discuss its application to e+e-and pp collisions. We present first results of the implementation in the Geneva Monte Carlo framework. We employ N-jettiness as the jet resolution variable, combining its next-to-next-to- leading logarithmic resummation with fully exclusive NLO matrix elements, and PYTHIA 8 as the backend for further parton showering and hadronization. For hadronic collisions, we take Drell-Yan production as an example to apply our construction. For e+e-→ jets, taking αs(mZ) = 0:1135 from fits to LEP thrust data, together with the PYTHIA 8 hadronization model, we obtain good agreement with LEP data for a variety of 2-jet observables
Articolo in rivista - Articolo scientifico
Monte Carlo simulations; NLO computations; Nuclear and High Energy Physics
English
2013
2013
9
120
none
Alioli, S., Bauer, C., Berggren, C., Hornig, A., Tackmann, F., Vermilion, C., et al. (2013). Combining higher-order resummation with multiple NLO calculations and parton showers in Geneva. JOURNAL OF HIGH ENERGY PHYSICS, 2013(9) [10.1007/JHEP09(2013)120].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/217779
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