Title :
Spectrometric Performances of Monocrystalline Artificial Diamond Detectors Operated at High Temperature
Author :
Angelone, M. ; Fonnesu, N. ; Pillon, M. ; Prestopino, G. ; Sarto, F. ; Milani, E. ; Marinelli, Marco ; Verona, C. ; Verona-Rinati, G.
Author_Institution :
Assoc. Euratom-ENEA sulla Fusione, ENEA C.R. Frascati, Frascati, Italy
Abstract :
This paper reports about the performances of single crystal diamond (SCD) detectors operated at high temperature (up to 200 °C) and irradiated with alpha particles. Two different types of SCD detectors were studied: (a) SCD of commercial type; (b) SCD produced at Rome “Tor Vergata” University and characterized by a layered structure. The first measurement of the response function vs. temperature of commercial SCD detector irradiated with 14 MeV neutrons and heated up to 140 C is also reported. The measurements pointed out the superior performance of diamond with respect to other detectors (e.g., silicon) when operated at high temperature. However, the present work also pointed out that a diamond detector assembled to operate at room temperature can suffer from mechanical stress when operated at high temperature. The results indicate that, with a proper design, diamond detectors can be suitable for operation at high temperature.
Keywords :
diamond; neutron detection; semiconductor counters; solid scintillation detectors; Rome Tor Vergata University; alpha particles; commercial SCD detector; electron volt energy 14 MeV; layered structure; mechanical stress; monocrystalline artificial diamond detectors; neutron detectors; neutron spectrometry; response function; single crystal diamond detectors; spectrometric performances; temperature 293 K to 298 K; Current measurement; Dark current; Detectors; Diamond-like carbon; Neutrons; Plasma temperature; Temperature measurement; Artificial single crystal diamond; high temperature detectors; neutron detectors; neutron spectrometry; radiation detector;
Journal_Title :
Nuclear Science, IEEE Transactions on
DOI :
10.1109/TNS.2012.2210735