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H Y P A T I A HYbrid Pupil’s Analysis Tool for Interactions in Atlas

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Presentation on theme: "H Y P A T I A HYbrid Pupil’s Analysis Tool for Interactions in Atlas"— Presentation transcript:

1 H Y P A T I A HYbrid Pupil’s Analysis Tool for Interactions in Atlas http://hypatia.phys.uoa.gr/applet

2 HYPATIA HYPATIA of Alexandria First woman mathematician Alexandria, Egypt (370-418 A.D.)

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4 Proton – proton Collisions  Beam energy: 3.5, 4 TeV  2 x 3.5 TeV = 7 or 8 TeV  Some of the particles produced are unstable and decay instantly

5 ATLAS Particle tracks appear as lines on the detectors The length of each track is determined by particle type Each particle leaves a trace only on specific detectors according to its type

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7 HY.P.A.T.I.A. Canvas Displays events in various forms depending on particle type and user preference. Can do zoom, pan, rotate, pick track etc

8 HY.P.A.T.I.A. Track Momenta Displays the quantities that describe each track (type, momentum, charge, φ, θ) Histograms Created automatically from the tracks of the invariant mass table

9 HY.P.A.T.I.A. Invariant Mass Main event analysis window. Displays the user selected tracks from various events. Calculates invariant masses. Creates Histograms. Η → 4ℓ

10 Laboratory Exercise

11 Detection and mass calculation of particles – Real Events Known particles:  Z → μ - + μ + Z → e - + e +  2 tracks, opposite charge, isolated  Invariant mass 91,2 GeV  Small missing energy ETMiss  J/ψ → μ - + μ + J/ψ → e - + e +  2 tracks, opposite charge, not diametrical  Invariant mass 3 GeV  Small missing energy ETMiss<15GeV

12 Laboratory Exercise Detection and mass calculation of particles – Real Events Known particles:  Υ → μ - + μ + Υ → e - + e +  2 tracks, opposite charge  Invariant mass 9,5 GeV  Small missing energy ETMiss  Background events  Usually one lepton (W boson decay)  Leptons from quark decays are in jets (non-isolated tracks)  Cosmic rays : diametrical tracks on both detector views  Large missing energy ETMiss (because of neutrinos)

13 Laboratory Exercise Identification of electrons - muons  e : charged particles, usually isolated that leave a trace in the E/M calorimeter  μ : charged particles that leave a trace in the muon chambers

14 Laboratory Exercise Detection and mass calculation of particles- Histogram

15 Laboratory Exercise – Detection and mass calculation of particles – Dimuon spectrum +???

16 Discover Higgs!

17 Laboratory Exercise “Discover Higgs” H → 2 Z → 4l Z → e - + e + ή Z → μ - + μ +  H  2 e - + 2 e +  H  2 μ - + 2 μ +  Η  e - + e + + μ - + μ +  Isolated tracks  6 GeV pT Cut  Invariant mass of 4 tracks (Z boson pairs)

18 Laboratory Exercise “Discover Higgs” H → 2 γ Photons do not carry charge Photons have 0 mass Photons leave NO tracks Photons deposit energy on the E/M Calorimeter Converted photons γ  e - e + (Invariant mass ≈ 0)

19 Track examples

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28 Laboratory Exercise

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37 Recap

38 So, what are we looking for??  Z → e - + e + orZ → μ - + μ + 91,2 GeV  Y → e - + e + orY → μ - + μ + 9,5 GeV  J/ψ → e - + e + or J/ψ → μ - + μ + 3,1 GeV  Unknown particles→ e - + e + or → μ - + μ +  H → 2 Z → 4l (very few events) ? GeV For all the above enter tracks which have sum of charge=0  H → 2 γ? GeV  Background


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