High-precision dosimetry

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The macro produces two plots. The first plot shows the distribution of the different physics plrocesses when the incident particle interacts with the water cube. The second plot shows the trajectory of the incident particle. [http://www.hep.ucl.ac.uk/pbt/RadiotherapyWorkbook/skins/common/images/DNAProject/dnaphysics/flags.txt Here] you can find the codes for '''flagParticle''' and '''flagProcess'''. These are the resulting plots:   
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The macro produces two plots. The first plot shows the distribution of the different physics plrocesses. The second plot shows the trajectory of the incident particle. [http://www.hep.ucl.ac.uk/pbt/RadiotherapyWorkbook/skins/common/images/DNAProject/dnaphysics/flags.txt Here] you can find the codes for '''flagParticle''' and '''flagProcess'''. These are the resulting plots:   
http://www.hep.ucl.ac.uk/pbt/RadiotherapyWorkbook/skins/common/images/DNAProject/dnaphysics/plot.png
http://www.hep.ucl.ac.uk/pbt/RadiotherapyWorkbook/skins/common/images/DNAProject/dnaphysics/plot.png
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==== <span style="color:#000080"> Visualisation </span> ====
==== <span style="color:#000080"> Visualisation </span> ====
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There is an option to run dna.mac with visualisation (uncomment line /control/execute vis.mac). However, it is very slow and it is not recommended. 
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=== <span style="color:#000080"> dnageometry </span> ===
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==== <span style="color:#000080"> Root file </span> ====
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==== <span style="color:#000080"> Run with different settings </span> ====
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=== <span style="color:#000080"> microbeam </span> ===
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==== <span style="color:#000080"> Root file </span> ====
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==== <span style="color:#000080"> Run with different settings </span> ====

Revision as of 12:41, 1 September 2014

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