Data analysis at CEA Sample Clauses

Data analysis at CEA. The analogue output voltage of the Magnicon SQUID electronics is amplified and filtered with an SR560 amplifier from Stanford Research Systems. The output is connected to a PCI acquisition card P25M from Innovative Integration. The data are recorded continuously with a sampling frequency of fe = 100 kHz and stored on a solid-state drive., The antialiasing low-pass filter frequency on the SR560 amplifier is 30 kHz. The data are recorded during about two weeks. The spectrum is obtained offline by digital signal processing with Matlab with these following steps: - recording of the pulse timestamp triggering on two thresholds - application of an extended dead-time windowing - construction of the average pulse and the average noise spectrum - determination of the pulse energies and several other pulse parameters - correction of the temperature drift - rejection of the pile-up on the pulse decays - energy spectrum construction Triggering and pulse timestamps The time positions of the pulses are found using two trigger thresholds; positive and negative thresholds are required to trigger the pulses of opposite sign from the two sensors of each gradiometric double-meander circuit. The thresholds are applied on streams filtered by a high-order Butterworth band-pass filter with cut-off frequencies of typically 400 Hz and 700 Hz. Positive and negative thresholds are set with fixed values during the entire recording, the timestamps at which each signal passes above and under the thresholds are recorded and named respectively tstart and tstop (figure 24). A third parameter is stored in the timestamps binary file: the polarity of the signal (+1 or -1) to indicate which threshold is triggered, and 0 is stored if the signal is saturated.
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