Start: 07:26 O(100kHz)
Start: 07:33 O(kHz)
Start: 07:39 O(kHz)
Start: 07:44 O(kHz)
Start: 08:30 WET measurement of PMMA slabs also used for TOF-CT (GSI)
coarse run (to find Bragg range
Start: 08:55 WET measurement of PMMA slabs also used for TOF-CT (GSI)
reference run (with Arduino Spill Start/Stop logic) fringes in Bragg peak (trigger not optimal (maybe too much latency with Arduino))--> next measurement with "Accumalte Charge" instead of "Spill Start/Stop"
Start: 09:14 WET measurement of PMMA slabs also used for TOF-CT (GSI)
reference run "Accumalte Charge"
Start: 09:38 WET measurement of PMMA slabs also used for TOF-CT (GSI)
1cm PMMA "Accumalte Charge"
PMMA was activated. Had to wait ~10-15min after measurement
Start: 10:06 WET measurement of PMMA slabs also used for TOF-CT (GSI)
2cm PMMA "Accumalte Charge"
Start: 10:30 WET measurement of PMMA slabs also used for TOF-CT (GSI)
3cm PMMA "Accumalte Charge"
Start: 11:00 WET measurement of PMMA slabs also used for TOF-CT (GSI)
4cm PMMA "Accumalte Charge"
Start: 11:24 WET measurement of PMMA slabs also used for TOF-CT (GSI)
5cm PMMA "Accumalte Charge"
Start: 11:44 WET measurement of PMMA slabs also used for TOF-CT (GSI)
5cm PMMA. higher energy for Felix Feichtinger "Accumalte Charge"
coarse run
Start: 12:00 WET measurement of PMMA slabs also used for TOF-CT (GSI)
more detailed measurement
Start: 13:58
Alignment run without phantom
Start: 14:04
Reference run without phantom
Start: 15:19
1 cm Alu stair phantom on rotary table (0deg--> always 1cm Al in beam)
Start: 16:40
1 cm Alu stair phantom on rotary table (90deg--> 0.2-1cm Alu)
Start: 18:00
1 cm Alu stair phantom on rotary table (90deg)
Start: 19:28
1 cm Alu stair phantom on rotary table (0deg)