18–25 mars 2017
Fuseau horaire Europe/Paris

Session

Standard Model measurements

S2
19 mars 2017, 17:00

Documents de présentation

Aucun document.

  1. Didar Dobur (University of Ghent Belgium)
    19/03/2017 17:00
    Theory
    Ordinary
  2. M. Pavol Bartos (Comenius University)
    19/03/2017 17:20
    Experiment
    Ordinary
  3. Dr Liang HAN (University of Science and Technology of China (USTC))
    19/03/2017 17:40
    Experiment
    Ordinary
    The talk will present the latest D0 Z-->mumu forward-backward asymmetry and sin2thetaW measurement, and the W mass, the weak mixing angle and the top mass results of Tevatron.
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  4. Dr Aram Apyan (Fermi National Accelerator Laboratory)
    19/03/2017 18:00
    Experiment
    Ordinary
    We report on the status of the precision measurements of electroweak parameters with W and Z bosons at the LHC. The effective electroweak mixing angle sin^{2}_{\theta} is extracted by measuring the forward-backward asymmetry in di-lepton events near the Z boson mass region. Measurements of differential W and Z boson production cross-sections and their ratios are also reported. These...
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  5. Mme Senka Duric (University of Wisconsin-Madison)
    19/03/2017 18:40
    Experiment
    Ordinary
    We present the most recent measurements involving diboson production inclusively or in association with jets (VBS), with data collected by the ATLAS and CMS during Run I & II.
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  6. Dr Gavin Salam (CERN)
    19/03/2017 19:00
    Theory
    Ordinary
    The photon distribution inside the proton affects a wide variety of LHC processes. In the past couple of years it emerged that our limited understanding of this distribution was the dominant uncertainty in a number of searches and certain precision Higgs predictions, notably Higgs boson production in association with a $W$ boson. This talk shows how the photon distribution can be related...
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  7. Dr Aldo Antognini (Paul Scherrer Insitute)
    19/03/2017 19:20
    Experiment
    Ordinary
    We have measured several 2S-2P transitions in muonic hydrogen ($\mu$p), muonic deuterium ($\mu$d) and muonic helium ions ($\mu^3$He, $\mu^4$He). From muonic hydrogen we extracted a proton charge radius 20 times more precise than obtained from electron-proton scattering and hydrogen high-precision laser spectroscopy but at a variance of $7\sigma$ from these values. This discrepancy is...
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