1 / 13

CLIC Higgs talks at ECFA LC 2013

CLIC Higgs talks at ECFA LC 2013. Booked:. Higgs decay to b, c, and gluons @ 1.4 TeV (update). Tomáš Laštovička IoP Prague LCD-WG Analysis Meeting, April 9 th , 2013. Summary of changes.

Télécharger la présentation

CLIC Higgs talks at ECFA LC 2013

An Image/Link below is provided (as is) to download presentation Download Policy: Content on the Website is provided to you AS IS for your information and personal use and may not be sold / licensed / shared on other websites without getting consent from its author. Content is provided to you AS IS for your information and personal use only. Download presentation by click this link. While downloading, if for some reason you are not able to download a presentation, the publisher may have deleted the file from their server. During download, if you can't get a presentation, the file might be deleted by the publisher.

E N D

Presentation Transcript


  1. CLIC Higgs talks at ECFA LC 2013 • Booked:

  2. Higgs decay to b, c, and gluons @ 1.4 TeV(update) Tomáš Laštovička IoP Prague LCD-WG Analysis Meeting, April 9th, 2013

  3. Summary of changes • Dominant background sample ee → qqvv (2096) with 126 GeV Higgs was replaced by 2201 sample with mH = 12 TeV. • ee → qqlv(2159) sample added. • 4Q background samples (qqqqνν, qqqq, qqqqll) from HHνν analysis added. • Neural net input variables added: ymin, ymax , pT of jets

  4. Data samples • 126 GeV Higgs, 1.4 TeV, full sim/rec CLIC_SiD, γγ overlay, 1500 fb–1

  5. Results Update UPDATED (BR: 56.1 %) (BR: 2.83 %) (BR: 8.38 %)

  6. Results Update UPDATED

  7. Next steps • Isolated lepton finder, requires to re-LCFI all samples. • Data samples • Increase statistics of • ee→ qqvv, ee → qq, ee → qqlv • No events available for • ee → qqll • Address e-γ and γ-γ backgrounds. • Simultaneous determination of cc and gg. • Whole NN classifier rather than cut and count. • Investigate limits of the classification. • Repeat the 3 TeV Higgs decay analysis with the 126 GeV Higgs? • Re-simulate 2025 in the SiD framework

  8. slides from the last presentation Backups

  9. Analysis Chain • Adapted from 3 TeV Higgs branching ratio analysis + experience from hhνν and some minor improvements SelectedPandoraPFOCollection with FastJetkT, R = 1.0 and exclusive 2 jets • Channel separation and jet true flavour tag • From quarks originating from initial Higgs • LCFI Flavour Tagging • Neural nets retrained on a fraction of qqνν sample • No significant improvement in analysis results (b-tag) when compared to 3 TeV flavour tag nets.

  10. Neural Net Inputs • Current inputs Invariant mass and total energy of jets Distance of jets in η – ϕ plane Number of leptons and number of photons Acoplanarity Sums of jet flavour tags (b-, c-, c(b)- and b(l)) max(|ηi|) • Additional (implemented but not used at the moment) • Event invariant mass, ymin, ymax, pTmax, pTmin, ETmiss, Σ|ηi|, isolated leptons, etc… Highest NN input significance

  11. Control Plots (for the b-channel signal) Disclaimer: does not include full set of SM backgrounds.

  12. Control Plots II (linear scale, normalized to 1)

  13. Neural Net Classification h → bb h → cc h → gg • b-channel (BR: 56.1 %) : is nice and easy • Note the linear histogram scale and good hνν inter-channel separation due to flavour tag. • c-channel (BR: 2.83 %) : is the most difficult one • gluons (BR: 8.38 %) : has sizeable background from hνν Disclaimer: does not include full set of SM backgrounds.

More Related