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Jet substructure via dynamical grooming

<!--HTML-->Jet substructure represents a cornerstone in the on-going endeavor to pinpoint the effect of a hot, thermal medium, namely the QGP, on QCD dynamics. In this talk, based on [1], I will present a new set of jet substructure observables and an associated grooming technique, dubbed &quo...

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Detalles Bibliográficos
Autor principal: Soto Ontoso, Alba
Lenguaje:eng
Publicado: 2020
Materias:
Acceso en línea:http://cds.cern.ch/record/2721962
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author Soto Ontoso, Alba
author_facet Soto Ontoso, Alba
author_sort Soto Ontoso, Alba
collection CERN
description <!--HTML-->Jet substructure represents a cornerstone in the on-going endeavor to pinpoint the effect of a hot, thermal medium, namely the QGP, on QCD dynamics. In this talk, based on [1], I will present a new set of jet substructure observables and an associated grooming technique, dubbed "dynamical grooming". This procedure is rooted on identifying the hardest splitting in an angular ordered shower and discarding prior splittings that occur at larger angles. First, I will use p+p collisions to benchmark the method with pQCD calculations through the computation of the Sudakov form factor at modified leading-log accuracy in the context of vetoed showers. I will compare the analytic properties of the dynamically tagged splitting such as its momentum sharing fraction with Monte-Carlo simulations. In addition, the resilience of the method to non-perturbative effects together with its performance on quark/gluon discrimination and boosted W/t/H tagging will be assessed. Finally, predictions for the dynamically groomed $z_{g}$ in heavy-ion collisions at LHC energies will be presented within a probabilistic picture of energy loss. [1] arXiv:1911.00375
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institution Organización Europea para la Investigación Nuclear
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spelling cern-27219622022-11-02T22:22:19Zhttp://cds.cern.ch/record/2721962engSoto Ontoso, AlbaJet substructure via dynamical grooming10th International Conference on Hard and Electromagnetic Probes of High-Energy Nuclear CollisionsConferences<!--HTML-->Jet substructure represents a cornerstone in the on-going endeavor to pinpoint the effect of a hot, thermal medium, namely the QGP, on QCD dynamics. In this talk, based on [1], I will present a new set of jet substructure observables and an associated grooming technique, dubbed "dynamical grooming". This procedure is rooted on identifying the hardest splitting in an angular ordered shower and discarding prior splittings that occur at larger angles. First, I will use p+p collisions to benchmark the method with pQCD calculations through the computation of the Sudakov form factor at modified leading-log accuracy in the context of vetoed showers. I will compare the analytic properties of the dynamically tagged splitting such as its momentum sharing fraction with Monte-Carlo simulations. In addition, the resilience of the method to non-perturbative effects together with its performance on quark/gluon discrimination and boosted W/t/H tagging will be assessed. Finally, predictions for the dynamically groomed $z_{g}$ in heavy-ion collisions at LHC energies will be presented within a probabilistic picture of energy loss. [1] arXiv:1911.00375oai:cds.cern.ch:27219622020
spellingShingle Conferences
Soto Ontoso, Alba
Jet substructure via dynamical grooming
title Jet substructure via dynamical grooming
title_full Jet substructure via dynamical grooming
title_fullStr Jet substructure via dynamical grooming
title_full_unstemmed Jet substructure via dynamical grooming
title_short Jet substructure via dynamical grooming
title_sort jet substructure via dynamical grooming
topic Conferences
url http://cds.cern.ch/record/2721962
work_keys_str_mv AT sotoontosoalba jetsubstructureviadynamicalgrooming
AT sotoontosoalba 10thinternationalconferenceonhardandelectromagneticprobesofhighenergynuclearcollisions