Difference between revisions of "LB RunGroupC Vertex"
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=== Extended target in Z. Vy shift analysis === | === Extended target in Z. Vy shift analysis === | ||
+ | |||
+ | All Histograms below were created by simply making the target longer along the Z axis. Each case uses vertex points for X and Y ranging from -1cm to 1cm | ||
+ | |||
+ | {|border="5" | ||
+ | ! || 05cm Z Target || 1cm Z Target|| 2cm Z Target || 3cm Z Target || 4cm Z Target || 5cm Z Target || 6cm Z Target | ||
+ | |- | ||
+ | || X Resolution (cm) || 0.2696 || 0.2588 || 0.2734 | ||
+ | |- | ||
+ | || Y Resolution (cm) || 0.6234 || 0.6851 || 0.6927 | ||
+ | |- | ||
+ | || Z Resolution (cm) || 1.136 || 1.361 || 1.381 | ||
+ | |- | ||
+ | || Generated Vx (cm) || [[File:3cm ZRaster 1cm XRaster GenX sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster GenX sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster sol GenPartx.png|200px]] | ||
+ | |- | ||
+ | || Generated Vy (cm) || [[File:3cm ZRaster 1cm XRaster GenY sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster GenY sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster GenParty.png|200px]] | ||
+ | |- | ||
+ | || Generated Vz (cm) || [[File:3cm ZRaster 1cm XRaster GenZ sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster GenZ sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster GenPartz sol.png|200px]] | ||
+ | |- | ||
+ | || Reconstructed Vx (cm) || [[File:3cm ZRaster 1cm XRaster EventX sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster EventX sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster Eventx.png|200px]] | ||
+ | |- | ||
+ | || Reconstructed Vy (cm) || [[File:3cm ZRaster 1cm XRaster EventY sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster EventY sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster Eventy.png|200px]] | ||
+ | |- | ||
+ | || Reconstructed Vz (cm) || [[File:3cm ZRaster 1cm XRaster EventZ sol.png|200px]] || [[File:3cm ZRaster 1cm YRaster EventZ sol.png|200px]] || [[File:3cm ZRaster 1cm XYRaster eventz.png|200px]] | ||
+ | |- | ||
+ | || Vx Difference (cm) || [[File:XZRaster_VxDifference_1mmbins.png|200px]] || [[File:YZRaster_VxDifference_1mmbins.png|200px]] || [[ File:XYZRaster_VxDifference_1mmbins.png|200px]] | ||
+ | |- | ||
+ | || Vy Difference (cm) || [[File:XZRaster_VyDifference_1mmbins.png|200px]] || [[File:YZRaster_VyDifference_1mmbins.png|200px]] || [[File:XYZRaster_VyDifference_1mmbins.png|200px]] | ||
+ | |- | ||
+ | || Vz Difference (cm) || [[File:XZRaster_VzDifference_1mmbins.png|200px]] || [[File:YZRaster_VzDifference_1mmbins.png|200px]] || [[File:XYZRaster_VzDifference_1mmbins.png|200px]] | ||
+ | |}<br> | ||
=Elastic electron proton GEMC 2.4 & Coatjava 2.4= | =Elastic electron proton GEMC 2.4 & Coatjava 2.4= |
Revision as of 17:30, 25 July 2016
Vertex Reconstruction studies
Inclusive electron GEMC 2.4 & Coatjava 2.4
Summary
Set all histogram ranges to -6,6 cm and bin sizes of 0.1 cm
Point target X,Y,Z=0 cm
No Rastering | |
---|---|
Vx Difference | |
Vy Difference | |
Vz Difference | |
X Resolution (cm) | 0.2362 |
Y Resolution(cm) | 0.09809 |
Z Resolution (cm) | 0.05435 |
These histograms raise some questions. To begin I created a LUND file with 6 GeV incident electrons at 25 degrees in theta and 0 degrees in phi. All of the vertex positions were set to 0. I then ran GEMC 2.4 using the command line ~/src/CLAS/GEMC/source/gemc -USE_GUI=0 -INPUT_GEN_FILE="LUND,No_Raster.LUND" -N=75000 eg12_sol_No_Raster.gcard
which created an output file called eg12_sol_75k_No_Raster.ev. After that the reconstruction command line used was
~/src/CLAS/coatjava-2.4/bin/clas12-reconstruction -i eg12_sol_75k_No_Raster.ev-config GEOM::new=true -config MAG::torus=-1.0 -config MAG::solenoid=1.0 -o eg12_sol_75k_No_Raster_rec.evio -s DCHB:DCTB:EC:FTOF:EB -config DATA::mc=true -config DCTB::useRaster=true
After the reconstruction a root file was created using
~/src/CLAS/evio2root/bin/evio2root eg12_sol_75k_No_Raster_rec.evio eg12_sol_75k_No_Raster_rec.root 75000
A plot was then created to show the X Vertex and Y Vertex Differences
The first question is why is there a shift in the Y Difference. What would make X more centered around 0? The next question is when rastering begins, why do the resolutions in the X Vertices remain unchanged while the resolutions in the Y Vertices change?
Point in 2-D but extended target in 1-D
Two vertex variables are fixed at zero and the third vertex variable is altered
Extended target -3 < Z < 3 cm
Extended target in Z. Vy shift analysis
All Histograms below were created by simply making the target longer along the Z axis. Each case uses vertex points for X and Y ranging from -1cm to 1cm
Elastic electron proton GEMC 2.4 & Coatjava 2.4
References
https://clasweb.jlab.org/wiki/index.php/TF_EG12_Vertex#Z_resolution_With_micro-megas