#This macro file is where the user can set up the different parameters one can modify. /run/initialize ############################################## # # PART1: Set the values for the beam # /gps/particle proton #incoming particles = proton /gps/direction 0 0 1 #oriented along the Z axis /gps/ene/type Mono #monoenergetic /gps/ene/mono 18. MeV #at 18 MeV /gps/pos/type Beam /gps/pos/shape Circle #the beam geometry is a circle /gps/pos/radius 3. mm #of diameter of 3 mm # /setBeamCurrent/beamCurrent 30.E-6 #set the value of beam current in ampere /setTimeOfIrradiation/time 6. # Set the irradiation time (in hours) # # # ############################################## # # PART 2 : Set the values for the Target # /changeTarget/diameter 6. mm /changeTarget/thickness 0.6 mm #control/execute Macro/Material/Target/Ni64_enriched_95.mac # # # ############################################### # # PART 3 : Set the values for the Foil # #/changeFoil/thickness 0.32 mm /changeFoil/thickness 0.32 mm # # # ############################################## # PART 4 : Set the edges of histograms # #Beam data /analysis/setFileName STCyclotron /analysis/h1/set 0 32 12. 19. MeV #energy primary particles when reaching the target (in MeV). By default equal or lower than the beam energy. /analysis/h1/set 1 16 16. 19. MeV #energy primary particles when reaching the foil (in MeV). By default equal or lower than the beam energy. /analysis/h1/set 2 72 0.0 18. MeV #energy spectrum of primaries going out of the target (MeV) /analysis/h1/set 3 32 12. 19. MeV #energy of primary particles when going out of the foil (MeV) /analysis/h1/set 4 30 185. 188. mm #depth of isotope creation in the target. /analysis/h1/set 5 72 0. 18. MeV #energy spectrum of positrons created in the target (MeV) /analysis/h1/set 6 72 0. 18. MeV #energy spectrum of electrons created in the target (MeV) /analysis/h1/set 7 72 0. 18. MeV #energy spectrum of gammas created in the target (MeV) /analysis/h1/set 8 72 0. 18. MeV #energy spectrum of neutrons created in the target (MeV) /analysis/h1/set 9 72 0. 18. MeV #energy spectrum of positrons created in the target via decay (MeV) /analysis/h1/set 10 72 0. 18. MeV #energy spectrum of electrons created in the target via decay (MeV) /analysis/h1/set 11 72 0. 18. MeV #energy spectrum of gammas created in the target via decay (MeV) /analysis/h1/set 12 72 0. 18. MeV #energy spectrum of neutrons created in the target via decay (MeV) /analysis/h1/set 13 72 0. 18. MeV #energy spectrum of nu_e created in the target via decay (MeV) /analysis/h1/set 14 72 0. 18. MeV #energy spectrum of anti_nu_e created in the target via decay (MeV) # # /analysis/h2/setX 0 100 -7.5 7.5 mm #beam intensity before hiting the target (mm) /analysis/h2/setY 0 100 -7.5 7.5 mm #beam intensity before hiting the target (mm) /analysis/h2/setX 1 100 -7.5 7.5 mm #beam intensity before hiting the foil (mm) /analysis/h2/setY 1 100 -7.5 7.5 mm #beam intensity before hiting the foil (mm) /analysis/h2/setX 2 21 14.5 35.5 #radioisotopes produced /analysis/h2/setY 2 30 44.5 74.5 #radioisotopes produced /analysis/h2/setX 3 100 185. 188. mm #depth = f(energy (MeV)) /analysis/h2/setY 3 100 0. 19. MeV #depth = f(energy (MeV)) /analysis/h2/setX 4 100 -7.5 7.5 mm #beam intensity going out from the target (mm) /analysis/h2/setY 4 100 -7.5 7.5 mm #beam intensity going out from the target (mm) /analysis/h2/setX 5 100 -7.5 7.5 mm #beam intensity going out from the foil (mm) /analysis/h2/setY 5 100 -7.5 7.5 mm #beam intensity going out from the foil (mm)