Proton Calorimetry/Meetings/2017/10/11: Difference between revisions
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** Increasing collimator diameter shows increase in tail on low energy side of peak. | ** Increasing collimator diameter shows increase in tail on low energy side of peak. | ||
** Added cap to collimator: produces very odd energy distribution with second peak at 30MeV. | ** Added cap to collimator: produces very odd energy distribution with second peak at 30MeV. | ||
* Will modify geometry to reduce effect of peak. | |||
'''JS''': | '''JS''': | ||
* | * Running tutorials in Autodesk Inventor. | ||
* | * Investigating CAD import for Geant4. | ||
'''DW''': | '''DW''': | ||
* | * C++ ROOT macro for reading in Lecroy binary data tentatively working. | ||
* | * Will start plotting waveforms in ROOT and calculating ADC spectra. |
Latest revision as of 13:55, 11 October 2017
Minutes for UCL Proton Calorimetry Meeting, 11th October 2017 (D17, Physics & Astronomy, UCL)
Present
Simon Jolly, Ruben Saakyan, Anastasia Basharina-Freshville, Jordan Silverman, Matthieu Hentz, Dan Walker
ABF:
- Included aluminium to calorimeter simulation.
- Results not significantly different.
MH:
- Running Clatterbridge simulations with collimator in nozzle:
- Initial simulations used collimator with "exact fit" but particles still transmit around collimator.
- Adding lip to collimator stops "halo".
- Increasing collimator diameter shows increase in tail on low energy side of peak.
- Added cap to collimator: produces very odd energy distribution with second peak at 30MeV.
- Will modify geometry to reduce effect of peak.
JS:
- Running tutorials in Autodesk Inventor.
- Investigating CAD import for Geant4.
DW:
- C++ ROOT macro for reading in Lecroy binary data tentatively working.
- Will start plotting waveforms in ROOT and calculating ADC spectra.