Calorimeters in Particle Physics - PowerPoint PPT Presentation

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Calorimeters in Particle Physics

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Distinguish between different particles. Sometimes in combination with tracking etc... Calorimeters 'destroy' (i.e.stop) the particle to measure their energy ... – PowerPoint PPT presentation

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Title: Calorimeters in Particle Physics


1
Calorimeters in Particle Physics
  • What do they do?
  • Measure the ENERGY of particles
  • Electromagnetic Energy
  • Electrons, positrons, photons
  • Hadronic Energy
  • Charged pions, protons
  • Particle ID
  • Distinguish between different particles
  • Sometimes in combination with tracking etc
  • Why?
  • Measure particles coming out of Interaction
  • Reconstruct what happened
  • Remember the first lab on Monday particle
    search

2
Calorimeters versus Tracking
  • Tracking makes precision measurement of position
    of CHARGED particle trajectory
  • Reconstruct displaced vertex
  • Particle ID like in b-quark tagging
  • Measure momentum charge in combination with
    magnetic field
  • Radius of curvature
  • Calorimeters measure amount of electromagnetic
    and hadronic ENERGY
  • Measure of E,P are complimentary
  • e.g. No track .AND. EM energy ? photon

3
The life of a particle in a detector
vertex
momentum
ID
em energy
h energy
Muon ID,p
e
g
p
m
n
precision
normal
Particle ID
electromagnetic
hadronic
Muon Tracking
Tracking
Calorimeters
4
Calorimeters are after tracking
Tracking measures particles as the traverse the
medium (e.g. gas, thin silicon) without
disturbing the particle. Calorimeters
destroy (i.e.stop) the particle to measure
their energy - some exceptions are neutrinos
and muons.
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7
Real top-quark event
8
Electromagnetic Calorimeter
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10
Electromagnetic Shower
11
Longitudinal Profile
12
How to build a good em calorimeter
  • Large number X0 with small chance of hadron
    interacting
  • Want to stop em particles NOT hadrons
  • small radiation length (X0)
  • Large interaction length (lh)
  • Want to get good sampling of particles in shower
    to get good statistical sampling of energy.
  • Stacked plates of High z absorber (e.g. Pb, U,
    Fe) and detectors (e.g. scintillator, Liquid
    Argon)
  • Certain crystals (e.g. Pb, CsI)

13
Examples
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18
Energy Resolution
19
Energy Resolution
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21
Reconstruct particles
p0 ? g g
22
Reconstructed Z Boson Mass
23
Reconstruct the event
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