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geant4/examples/extended/field/field01/field01.in
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2016-12-09 12:35:28 +01:00

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#
# Macro file for the initialization phase of field01
#
# It creates the default geometry (simple absorber cylinder )
#
/tracking/verbose 1
/run/verbose 1
#
# ****** Start of initialisation of classes for field propagation
# Change the type of stepper used to integrate the ODE of motion
#
#/field/setStepperType 45
#
# Recommended - new in Geant4 10.3-beta:
# 15 - Dormand Prince 745 : well-known and very efficient embedded method
# Highly recommended in literature, e.g. Hairer,
# Numerical Recipes
# Used in several RK programs (e.g. DOPRI5 code)
#
# Good choices for reasonably smooth fields - available since Geant4 1.0
# 8 - Cash Karp RKF 45 : 'embedded' RK method - 4th/5th faster, robust
# ( uses difference of 4th & 5th order for error estimate )
#
# Default - good choice for unknown fields
# 4 - ClassicalRK4 : original Runge-Kutta method, very robust but slower )
# ( obtains error estimate by doing 2 half steps )
#
# Good choices for non-smooth fields:
# 3 - SimpleHeum : low order, with error obtained from half-steps
# 23 - BogackiShampine23 : lower order embedded method (new in 10.3-beta)
#
#
# Control the mininum step size for integration in field
#
/field/setMinStep 0.1 mm
#
# Initialise the field classes - parameters, stepper, ...
#
/field/update
#
# ****** Initialisation of classes for field propagation is done
#
/run/initialize
#
# /run/particle/dumpCutValues
#
/gun/particle e-
#
# /gun/particle proton
# /gun/particle chargedgeantino
#
/gun/energy 500.0 MeV
/run/beamOn 1
#
/gun/energy 250.0 MeV
/run/beamOn 1
#
/gun/energy 200.0 MeV
/run/beamOn 1
#
/gun/energy 100.0 MeV
/run/beamOn 1
#
/gun/energy 50.0 MeV
/run/beamOn 1
#
# Change the value of the B-field
#
/field/update
/field/setFieldZ 1.0 kG
#
#
#
/gun/energy 500.0 MeV
/tracking/verbose 1
/run/beamOn 1
/tracking/verbose 0
/run/printProgress 10
/run/beamOn 100