We present an evaluation of the maximum throughput of ARDESIA-16 at varying Input Count Rates using three different Digital Pulse Processors: XGLab's DANTE, XIA LLC's FalconX8, and a modified version of CAEN S.p.A.'s DT5560SE digitizer. We will cover performance metrics such as Output Count Rate and energy resolution, defined as the FWHM of the Mn-Kα peak. These measurements are specifically optimized to achieve a reasonable compromise between a satisfactory energy resolution and a high count rate with low dead time.The aim of this work is to study the performance of ARDESIA-16 with various Digital Pulse Processors at high input rates in order to cope with the quest for ultra-high-rate detectors required by next-generations synchrotron beamlines.

Evaluation of the Maximum Throughput of ARDESIA-16 with Different Digital Pulse Processors

Pedretti, B.;Ticchi, G.;Di Vita, D.;Borghi, G.;Carminati, M.;Abba, A.;Fiorini, C. E.
2023-01-01

Abstract

We present an evaluation of the maximum throughput of ARDESIA-16 at varying Input Count Rates using three different Digital Pulse Processors: XGLab's DANTE, XIA LLC's FalconX8, and a modified version of CAEN S.p.A.'s DT5560SE digitizer. We will cover performance metrics such as Output Count Rate and energy resolution, defined as the FWHM of the Mn-Kα peak. These measurements are specifically optimized to achieve a reasonable compromise between a satisfactory energy resolution and a high count rate with low dead time.The aim of this work is to study the performance of ARDESIA-16 with various Digital Pulse Processors at high input rates in order to cope with the quest for ultra-high-rate detectors required by next-generations synchrotron beamlines.
2023
979-8-3503-3866-9
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/11311/1259708
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