Digital Signal Processing for the GABRIELA Detector Assembly

This paper briefly describes the main ways of digital signal processing. The goal of the digital algorithms is to reduce the dead time of the spectrometry path to tens of nanoseconds without loss of energy and time resolutions. The new kσ-trigger with extrapolation technique is proposed in the paper...

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Veröffentlicht in:Acta Phys.Polon.Supp 2021, Vol.14 (4), p.705
Hauptverfasser: Mukhin, R.S., Yeremin, A.V., Izosimov, I.N., Isaev, A.V., Kuznetsova, A.A., Malyshev, O.N., Popeko, A.G., Popov, Yu.A., Sailaubekov, B., Svirikhin, A.I., Sokol, E.A., Tezekbayeva, M.S., Chelnokov, M.L., Chepigin, V.I., Hauschild, K.
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container_issue 4
container_start_page 705
container_title Acta Phys.Polon.Supp
container_volume 14
creator Mukhin, R.S.
Yeremin, A.V.
Izosimov, I.N.
Isaev, A.V.
Kuznetsova, A.A.
Malyshev, O.N.
Popeko, A.G.
Popov, Yu.A.
Sailaubekov, B.
Svirikhin, A.I.
Sokol, E.A.
Tezekbayeva, M.S.
Chelnokov, M.L.
Chepigin, V.I.
Hauschild, K.
description This paper briefly describes the main ways of digital signal processing. The goal of the digital algorithms is to reduce the dead time of the spectrometry path to tens of nanoseconds without loss of energy and time resolutions. The new kσ-trigger with extrapolation technique is proposed in the paper. The method allows to find overlapped signals almost irrespective of their closeness in time.
doi_str_mv 10.5506/APhysPolBSupp.14.705
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Physics
title Digital Signal Processing for the GABRIELA Detector Assembly
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