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Antonio Vagnerini

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DOI: 10.1007/jhep05(2022)039
2022
Cited 9 times
A sensitivity study of VBS and diboson WW to dimension-6 EFT operators at the LHC
We present a parton-level study of electro-weak production of vector-boson pairs at the Large Hadron Collider, establishing the sensitivity to a set of dimension-six operators in the Standard Model Effective Field Theory (SMEFT). Different final states are statistically combined, and we discuss how the orthogonality and interdependence of different analyses must be considered to obtain the most stringent constraints. The main novelties of our study are the inclusion of SMEFT effects in non-resonant diagrams and in irreducible QCD backgrounds, and an exhaustive template analysis of optimal observables for each operator and process considered. We also assess for the first time the sensitivity of vector-boson-scattering searches in semileptonic final states.
DOI: 10.48550/arxiv.2303.18215
2023
A sensitivity study of triboson production processes to dimension-6 EFT operators at the LHC
We present the first parton-level study of anomalous effects in triboson production in both fully and semi-leptonic channels in proton-proton collisions at 13 TeV at the Large Hadron Collider (LHC). The sensitivity to anomalies induced by a minimal set of bosonic dimension-6 operators from the Warsaw basis is evaluated with specific analyses for each final state. A likelihood-based strategy is employed to assess the most sensitive kinematic observables per channel, where the contribution of Effective Field Theory operators is parameterized at either the linear or quadratic level. The impact of the mutual interference terms of pairs of operators on the sensitivity is also examined. This benchmark study explores the complementarity and overlap in sensitivity between different triboson measurements and paves the way for future analyses at the LHC experiments. The statistical combination of the considered final states allows setting stringent bounds on five bosonic Wilson coefficients.
DOI: 10.1007/jhep08(2023)158
2023
A sensitivity study of triboson production processes to dimension-6 EFT operators at the LHC
A bstract We present the first parton-level study of anomalous effects in triboson production in both fully and semi-leptonic channels in proton-proton collisions at 13 TeV at the Large Hadron Collider (LHC). The sensitivity to anomalies induced by a minimal set of bosonic dimension-6 operators from the Warsaw basis is evaluated with specific analyses for each final state. A likelihood-based strategy is employed to assess the most sensitive kinematic observables per channel, where the contribution of Effective Field Theory operators is parameterized at either the linear or quadratic level. The impact of the mutual interference terms of pairs of operators on the sensitivity is also examined. This benchmark study explores the complementarity and overlap in sensitivity between different triboson measurements and paves the way for future analyses at the LHC experiments. The statistical combination of the considered final states allows setting stringent bounds on five bosonic Wilson coefficients.
2018
Searches for neutral BSM Higgs bosons in fermionic decays in CMS
DOI: 10.22323/1.339.0011
2019
Searches for BSM (neutral) Higgs bosons in fermionic decays in CMS
An overview of neutral BSM direct Higgs searches in fermionic decays performed at CMS was presented. The first part focuses on BSM Higgs resonant searches interpreted within the Higgs-Two-Doublet Model (H2DM) framework and in particular the Minimal Supersymmetric Standard Model (MSSM). The second part illustrates the searches for NMSSM light pseudoscalars stemming from SM-like Higgs bosons with four fermions in the final state.
2020
Search for Higgs bosons in the final state with b-quarks in the semi-leptonic channel with the CMS 2017 data