Proton Calorimetry/Meetings/2016/11/02: Difference between revisions
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* Newer fit works over larger range, improving errors on fit, but results in slightly larger energy resolution. | * Newer fit works over larger range, improving errors on fit, but results in slightly larger energy resolution. | ||
* Will look at other spectra before moving onto waveform data. | * Will look at other spectra before moving onto waveform data. | ||
'''LK''': | '''LK''': |
Latest revision as of 19:36, 2 November 2016
Minutes for UCL Proton Calorimetry Meeting, 5th November 2016 (D17, Physics & Astronomy, UCL)
Present
Simon Jolly, Ruben Saakyan, Laurent Kelleter, Andreas Christou, Matthieu Hentz, Adam Knoetze
RS:
- Dates for next Clatterbridge run set: 24th/25th November.
- Planning for next run:
- Same measurements as last run but with our divider rather than Hamamatsu active divider:
- Our divider contains no active components (transistors etc.) to linearise response of PMT: may be reason for high rate distortion.
- Additional capacitive resistance in active divider means higher resistance for high rates.
- Measure high rate and linearity: retake wheel measurement.
- Record Caen ADC, Caen waveform and scope waveform.
- Take both scintillator blocks: start with new block, try old block if we have time.
- Same measurements as last run but with our divider rather than Hamamatsu active divider:
- Check with Anastasia about potential questions for next run.
AK:
- Converted all data from LeCroy scope format on plus1.
- Can’t easily find peaks as all waveforms concatenated together with continuous timebase.
- Looking at ROOT, Geant4 tutorials and detector emulator manual.
- Will start looking at producing periodic pulses from detector emulator.
- Aim is to produce replica of PMT output signal for proton light pulse with realistic noise variation.
MH:
- Looking at energy deposition with proton pencil beam tutorials on PBT Wiki.
- Comparing energy deposition in scintillator and water: seeing nice Bragg Peaks!
- Will redo simulations using 60MeV pencil beam and check match to Clatterbridge data. Also replot with finer energy and position resolution.
- Next step is to start integrating Clatterbridge beamline simulation and characterise the effect of adding in each component.
AC:
- Looking at improving fitting of Caen ADC spectrum.
- Improved quality of fit by increasing convolution number: reduces Chi2 by about half, but doubles time to produce fit.
- Newer fit works over larger range, improving errors on fit, but results in slightly larger energy resolution.
- Will look at other spectra before moving onto waveform data.
LK:
- Running simulations in Geant4 of segmented calorimeter.
- Reading out photon production for individual scintillator slices in response to single protons.
- Seeing both Bragg Peak and effects of quenching!
- Possible bug in Geant4: total energy deposition in scintillator + wrapping more than initial energy.
- Will fix scintillator and wrapping thickness and add more layers for higher energy.
SJ:
- Date of next visit to Clatterbridge fixed for 24th/25th November.
- Have heard back from Liviu Penescu at MedAustron: still waiting on possible dates to visit for experimental runs. Liviu to confirm availability of collimators and mounting.
- Also need to arrange PSI visit: Ros Perrin/Tony Lomax lung phantom with UCL scintillator.
- Requested that future talks uploaded to wikiData presentations directory contain some description of the data they show and include useful info in filename.