Difference between revisions of "Mlr Summ TF"
Line 37: | Line 37: | ||
− | + | Starting the clas12 Moller simulation with a simple configuration, most components downstream with respect to the drift chambers are taken out of the gcard file. The remaining components, the Drift Chamber (DC), the Solenoid, and the Magnetic Components (CAD) are all that remain as shown below. The Torus field is held at zero Tesla, and the Solenoid field strength is increased from 0 to it's max of 5T. | |
− | |||
+ | [[File:ChangingRates_S1_PhiThetaHits_Full.png|700 px|frame|center|alt=Moller Electron Energy vs Angle Theta in Lab Frame|'''Figure 2:''' With the Torus strength at zero Telsa, the solenoid is varied to show the hits within the DC moving off the faces of R1. These hits consist of primary Moller electrons, as well as secondary electrons and photons created by the Moller electrons.]] | ||
+ | |||
+ | |||
+ | As the Solenoid field strength increases, the Moller electrons are forced to into a helical path of decreasing radius, effectively "rotating" off the DC face. However, as the field reaches maximum, there are still particles which are found at higher values of <math>/theta</math> that would have been expected to have remained after the effects of the Solenoid. | ||
[[File:HitMakeUp.png]] | [[File:HitMakeUp.png]] |
Revision as of 22:43, 30 August 2018
VanWasshenova_Thesis#Mlr_Summ_TF
Moller Summary
Scattering Xsect
https://wiki.iac.isu.edu/index.php/Converting_to_barns
Weight the E-vs-Theta plot with Xsect
Baseline
Moller events using an lH2 target geometry No Raster
DC hits -vs- Solenoid
With the Torus at zero Magnetic field the solenoid is changed to show how Moller electrons move off the faces of R1 DC.
Starting the clas12 Moller simulation with a simple configuration, most components downstream with respect to the drift chambers are taken out of the gcard file. The remaining components, the Drift Chamber (DC), the Solenoid, and the Magnetic Components (CAD) are all that remain as shown below. The Torus field is held at zero Tesla, and the Solenoid field strength is increased from 0 to it's max of 5T.
As the Solenoid field strength increases, the Moller electrons are forced to into a helical path of decreasing radius, effectively "rotating" off the DC face. However, as the field reaches maximum, there are still particles which are found at higher values of that would have been expected to have remained after the effects of the Solenoid.
Without Magnet Components
With Only S1R1 DC
What are the particles in the R1S1 only plot and where are they from
Moller Electron Events(1st hits)
Photons Hits in R1
Tomography
Moller events using an dual polarized target geometry with Raster
Photon Hits in R1 when Raster size has radius of 0.2 cm
Moller rate -vs- length of a single taerget
0.5 cm radius -vs- Z
Target is a one 0.5 cm radius cylinder of length Z.
By how much does the moller rate change at full field ?