Several proton beams with spread out Bragg peaks

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The water cube is divided into slices using class '''G4PVReplica'''. At each slice the deposited dose and energy for every energy beam is computed. The energy and the dose are scored using classes '''G4UserSteppingAction''' and '''G4UserRunAction'''. The proton beams are simulated using '''G4ParticleGun''' class. There is an option to chose among several '''EM''' and the '''QGSP_BIC_EMY''' physics lists.  
The water cube is divided into slices using class '''G4PVReplica'''. At each slice the deposited dose and energy for every energy beam is computed. The energy and the dose are scored using classes '''G4UserSteppingAction''' and '''G4UserRunAction'''. The proton beams are simulated using '''G4ParticleGun''' class. There is an option to chose among several '''EM''' and the '''QGSP_BIC_EMY''' physics lists.  
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http://www.hep.ucl.ac.uk/pbt/RadiotherapyWorkbook/skins/common/images/ProtonSB/g4_00.png
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This image shows only one proton beam energy. The water box is divided into slices using class '''G4PVReplica'''. Photons are in green, protons are in blue, neutrons are in yellow.
== <span style="color:#000080"> How to run the tutorial </span> ==
== <span style="color:#000080"> How to run the tutorial </span> ==

Latest revision as of 19:06, 3 September 2014

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