Bolometric experiments searching for rare events usually require an extremely low radioactive background to prevent spurious signals from mimicking those of interest, spoiling the sensitivity of the apparatus. In such contexts, radioactive sources cannot be used to produce a known signal to calibrate the measured energy spectrum during data taking. In this paper we present an instrument designed to generate ultra-stable and very precise calibrating pulses, which can be used to stabilize the response of bolometers during data taking. The instrument is characterized by the presence of multi-outputs, a completely programmable pulse width and amplitude and a dedicated daisy-chained optical trigger line. It can be fully controlled and monitored remotely via CAN bus protocol. An energy resolution of the order of 20 eV FWHM at 1 MeV (2 eV FWHM at 10 keV) and a thermal stability of the order of 0.1 ppm/C have been achieved. The device can also provide an adjustable power to compensate the low frequency thermal fluctuations that typically occur in cryogenic experiments.

Alfonso, K., Carniti, P., Cassina, L., Giachero, A., Gotti, C., Pessina, G. (2018). A high precision pulse generation and stabilization system for bolometric experiments. JOURNAL OF INSTRUMENTATION, 13(2) [10.1088/1748-0221/13/02/P02029].

A high precision pulse generation and stabilization system for bolometric experiments

Carniti, P.;Cassina, L.;Giachero, A.;Gotti, C.
;
Pessina, G.
2018

Abstract

Bolometric experiments searching for rare events usually require an extremely low radioactive background to prevent spurious signals from mimicking those of interest, spoiling the sensitivity of the apparatus. In such contexts, radioactive sources cannot be used to produce a known signal to calibrate the measured energy spectrum during data taking. In this paper we present an instrument designed to generate ultra-stable and very precise calibrating pulses, which can be used to stabilize the response of bolometers during data taking. The instrument is characterized by the presence of multi-outputs, a completely programmable pulse width and amplitude and a dedicated daisy-chained optical trigger line. It can be fully controlled and monitored remotely via CAN bus protocol. An energy resolution of the order of 20 eV FWHM at 1 MeV (2 eV FWHM at 10 keV) and a thermal stability of the order of 0.1 ppm/C have been achieved. The device can also provide an adjustable power to compensate the low frequency thermal fluctuations that typically occur in cryogenic experiments.
Articolo in rivista - Articolo scientifico
Analogue electronic circuits; Detector alignment and calibration methods (lasers, sources, particle-beams); Double-beta decay detectors;
Analogue electronic circuits, Detector alignment and calibration methods (lasers, sources, particle-beams), Double-beta decay detectors
English
2018
13
2
P02029
none
Alfonso, K., Carniti, P., Cassina, L., Giachero, A., Gotti, C., Pessina, G. (2018). A high precision pulse generation and stabilization system for bolometric experiments. JOURNAL OF INSTRUMENTATION, 13(2) [10.1088/1748-0221/13/02/P02029].
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/10281/189301
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