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Geant4/examples/extended/electromagnetic/TestEm17/README

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Differences between /examples/extended/electromagnetic/TestEm17/README (Version 11.3.0) and /examples/extended/electromagnetic/TestEm17/README (Version 6.2.p1)


  1 ----------------------------------------------    
  2                                                   
  3      =========================================    
  4      Geant4 - an Object-Oriented Toolkit for S    
  5      =========================================    
  6                                                   
  7                             TestEm17              
  8                             --------              
  9         This example is intended to check impl    
 10         of muon interactions: ionization, dire    
 11   pair production, bremsstrahlung, and mu-nucl    
 12   It allows to compute differential cross sect    
 13   energy transfered to secondaries), total cro    
 14   with analytic calculations.                     
 15                                                   
 16  1- GEOMETRY DEFINITION                           
 17                                                   
 18   It is a single box of homogeneous medium.       
 19   Two parameters define the geometry :            
 20   - the material of the box,                      
 21   - the (full) size of the box.                   
 22                                                   
 23   The default geometry (1 m of Iron) is constr    
 24   DetectorConstruction, but the above paramete    
 25   interactively via the commands defined in De    
 26                                                   
 27  2- PHYSICS LIST                                  
 28                                                   
 29   The Physics List of the example uses the mai    
 30         (builder) called "local", which includ    
 31         processes under study. As an alternati    
 32         and "emstandard_opt4" constructors may    
 33                                                   
 34         Default energy range for EM processes     
 35         is from 100*eV to 1000*PeV.               
 36                                                   
 37         Optionally "muNucl" builder may be add    
 38         inelastic interaction.                    
 39                                                   
 40  3- AN EVENT : THE PRIMARY GENERATOR              
 41                                                   
 42   The primary kinematic consists of a single p    
 43   of the box. The type of the particle and its    
 44   PrimaryGeneratorAction (mu+ 10 TeV), and can    
 45   build-in commands of ParticleGun class (see     
 46   this example).                                  
 47                                                   
 48  4- PHYSICS                                       
 49                                                   
 50   The incident particle is a muon. During the     
 51   particles are killed.                           
 52                                                   
 53   The number of interactions are plotted as a     
 54   transfered to the secondaries.                  
 55   The total number of interactions is recorded    
 56         section computed from this.               
 57                                                   
 58         At RunAction::EndOfRun(..), the above     
 59         calculations. The functions computing     
 60   provided by the G4 MEPhI group, and implemen    
 61                                                   
 62  5- HISTOGRAMS                                    
 63                                                   
 64   The test contains built-in 1D histograms for    
 65         Monte Carlo simulation, which are mana    
 66         and its Messenger:                        
 67                                                   
 68         1 Relative muon transferred energy dis    
 69             (log10(eps/Emu kin) for knock-on e    
 70         2  -"- direct (e+,e-) pair production     
 71         3  -"- bremsstrahlung by muons            
 72         4  -"- nuclear interaction by muons       
 73         5  ionistion for hadrons                  
 74         6  (e+,e-) pair production by hadrons     
 75         7  bremsstrahlung by hadrons              
 76   8  direct mu+,mu- pair production by muons      
 77                                                   
 78   The histos can be activated individually wit    
 79   /testem/histo/setHisto id nbBins  valMin val    
 80           min and max values of log10(eps/Emu     
 81                                                   
 82   At EndOfRun the corresponding histos for ana    
 83   automatically created and filled (histo 11 t    
 84                                                   
 85   One can control the name and the type of the    
 86   the command:                                    
 87   /testem/histo/setFileName  name  (default te    
 88                                                   
 89  6- VISUALIZATION                                 
 90                                                   
 91   The Visualization Manager is set in the main    
 92   The initialisation of the drawing is done vi    
 93   /vis/... in the macro vis.mac. To get visual    
 94   > /control/execute vis.mac                      
 95                                                   
 96   The detector has a default view which is a l    
 97   box.                                            
 98                                                   
 99   The tracks are drawn at the end of event, an    
100                                                   
101  7- HOW TO START ?                                
102                                                   
103   execute TestEm17 in 'batch' mode from macro     
104     % TestEm17   allproc.mac                      
105                                                   
106   execute TestEm17 in 'interactive mode' with     
107     % TestEm17                                    
108     Idle> control/execute vis.mac                 
109     ....                                          
110     Idle> type your commands                      
111     ....                                          
112     Idle> exit