First neutron and X-ray beam tests on a novel 12-pixel single-crystal diamond mosaic detector are presented and discussed. Preliminary characterization of single-pixel electronic properties, performed with alpha particles, results in charge carrier mobilities >2000 cm2/ Vs and saturation velocities of the order of 10^7 cm/s. Signal stability over time, measured with a 241Am source (37 kBq activity), is longer than 5 h. Tests under an intense X-ray beam (1 Gy/ h dose-rate) show a very good response uniformity (down to about 1% of relative standard deviation from mean value), suggesting a high level of pixel reproducibility at intermediate bias voltages (ranging from 20 to 100 V). Response uniformity reduces at voltages >200 V, due presumably to radiation-assisted detrapping effects. Preliminary results of 12-pixel simultaneous acquisitions of X-ray beam profiles and pulse height spectra under a fast neutron beam (14 MeV) are also presented.

Mosaic diamond detectors for fast neutrons and large ionizing radiation fields

Marco Girolami;Alessandro Bellucci;Paolo Calvani;Marica Rebai;Marco Tardocchi;Daniele M Trucchi
2015

Abstract

First neutron and X-ray beam tests on a novel 12-pixel single-crystal diamond mosaic detector are presented and discussed. Preliminary characterization of single-pixel electronic properties, performed with alpha particles, results in charge carrier mobilities >2000 cm2/ Vs and saturation velocities of the order of 10^7 cm/s. Signal stability over time, measured with a 241Am source (37 kBq activity), is longer than 5 h. Tests under an intense X-ray beam (1 Gy/ h dose-rate) show a very good response uniformity (down to about 1% of relative standard deviation from mean value), suggesting a high level of pixel reproducibility at intermediate bias voltages (ranging from 20 to 100 V). Response uniformity reduces at voltages >200 V, due presumably to radiation-assisted detrapping effects. Preliminary results of 12-pixel simultaneous acquisitions of X-ray beam profiles and pulse height spectra under a fast neutron beam (14 MeV) are also presented.
2015
Istituto di fisica del plasma - IFP - Sede Milano
Istituto di Struttura della Materia - ISM - Sede Roma Tor Vergata
diamond
neutron spectroscopy
particle detectors
X-ray detectors
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/20.500.14243/292482
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