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- will integrate with andor (1D) (most important, VLS, fall 2022), rixccd (1D) (not far behind andor), epixm (2D) (least important), opal-replacement, maybe exit-slit-manta
- some 1D will need to be 2D for droplet algorithms
- need to know precisely which shots contribute to the images
- will depend on how precisely camera shuttering is controllable (expect epixm to be precise, others to be imprecise)
- if a camera shutter is not precisely controllable (andor, rixccd) we will use DAQ sequencing which is less efficient use of the beam. have to run in "burst mode". need to check with Matt. georgi wants high efficiency ~90%. Longer exposures improve efficiency, but can introduce problems.
- precisely controllable shutters (e.g. epixm) can be done with readout-groups instead of daq sequences
- will depend on how precisely camera shuttering is controllable (expect epixm to be precise, others to be imprecise)
- typically will want to sum over the high rate detectors, e.g. to get an I-zero, but for ATM need to learn distribution (e.g. RMS)
- not clear how we handle the psana parallelization with integrating detectors
RIX Analysis Algorithms
complex algorithms, calibration constants? (e.g. backgrounds)
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