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Experimental Verifications of the Standard Model with High Energy Colliders
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31 October 2025
SCIENCE / Physics / Particle, Particle and high-energy physics
1 Introduction to the SM and its Experimental foundations - foundations of the EW model, weak interactions, weak bosons, ew unification 1973-1977: neutral currents, charm, tau, bottom, EW effects in e+e- below the Z peak , W & Z observation 1983 - foundations of the QCD model of strong interactions, ep inelastic scattering, e+e- , Rmu, jets and gluons 2 Experimental methods at high energy colliders - LEP/Tevatron/LHC accelerators and detectors - reconstruction of collision events charged tracks, muons, electrons, photons, neutral hadrons, .. particle flow - reconstruction of tau leptons, jets, jet flavour tagging - data analysis methods selections, multivariate discrimination and regression max likelihood fits and CLs for POIs 3 QCD measurements at small momentum transfer - hadron collisions UE, DPS - particle multiplicities and correlations - jet substructure - rapidity gaps 4 QCD measurements at large momentum transfer - multi-jet events and properties - V+jets at hadron colliders - parton density functions - strong coupling measurements 5 high precision EW measurements - summary of Z pole with LEP1/SLC - weak mixing angle at the tevatron & LHC - the W mass LEP, tevatron and LHC - W decay couplings, EW lepton universality - other LU results from B decays - future 6 the Higgs boson sector - Higgs boson discovery and mass measurements - production and decay couplings - total and differential cross sections - trilinear couplings - future prospects 7 the top quark properties - top quark mass measurements - top quark couplings - associated productions - total and differential cross sections - future prospects
8 multiboson interactions - gauge couplings, cancellations - multiboson productions LEP2, LHC - vector boson fusion and scattering - future 9 SM Fits and Beyond SM interpretations - SM global fits - anomalous couplings - EFT interpretations and constraints