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Last indexation completed on 2025-02-22 11:03:15 UTC

Geant4 extended examples - radioactive decay
Examples in this directory demonstrate the use of some features of the Radioactive-Decay hadronic model in Geant4.
rdecay01
This example allows to display basic features of the radioactive decay of a nuclei: energy spectrum of emitted particles, time of life, activity.
rdecay02
This example illustrates more advanced features of the package: selected decay channels, time window, bias and variance reduction technique.
Activation
Compute and plot time evolution of each nuclide in an hadronic cascade. Compute and plot activity of emerging particles.

  Name Size Date (UTC) Last indexed Description
  Name Size Date (UTC) Last indexed Description
folder Parent directory - 2025-02-22 08:01:08  
folder Activation/ - 2025-02-22 08:01:08

Geant4 - an Object-Oriented Toolkit for Simulation in HEP
Activation
Survey energy deposition and particle's flux from an hadronic cascade, including radioactive decays. The main purpose of the example is to plot evolution of each metastable isomer as a function of time, taking into account the time of exposure in the beam. Also plot the activity of emerging particles. Use PhysicsConstructor objects rather than predefined G4 PhysicsLists.


SEE ALSO: README

folder rdecay01/ - 2025-02-22 08:01:08

Geant4 - an Object-Oriented Toolkit for Simulation in HEP
rdecay01
Survey G4RadioactiveDecay process. See Physics Reference Manual, chapter 36. See also ie.lbl.gov/decay.html">http://ie.lbl.gov/decay.html
1- Geometry construction


SEE ALSO: README

folder rdecay02/ - 2025-02-22 08:01:08

Geant4 - an Object-Oriented Toolkit for Simulation in HEP
rdecay02
Rdecay02 is created to show how to use the G4RadioactiveDecay process to simulate the decays of radioactive isotopes as well as the induced radioactivity resulted from nuclear interactions.


SEE ALSO: README

CMakeLists.txt 168 bytes 2025-02-22 08:01:08 -  
History 1986 bytes 2025-02-22 08:01:08 -  
README 719 bytes 2025-02-22 08:01:08 -