DocumentCode :
819991
Title :
Test of scintillator readout with single photon avalanche photodiodes
Author :
Finocchiaro, P. ; Campisi, A. ; Corso, D. ; Cosentino, L. ; Fallica, G. ; Lombardo, S. ; Mazzillo, M. ; Musumeci, F. ; Piazza, A. ; Privitera, G. ; Privitera, S. ; Rimini, E. ; Sanfilippo, D. ; Sciacca, E. ; Scordino, A. ; Tudisco, S.
Author_Institution :
Lab. Nazionali del Sud, Ist. Nazionale di Fisica Nucl., Catania
Volume :
52
Issue :
6
fYear :
2005
Firstpage :
3040
Lastpage :
3046
Abstract :
We outline the possible applications of newly developed single photon avalanche detectors (SPAD) operating at low voltage and fabricated in silicon planar technology, reporting on tests done with scintillators. We envisage the integration of large arrays of identical sensors, employing a common read-out mode in order to achieve a high resolution and high sensitivity solid state photomultiplier. The applications of such a device would be many, particularly if we consider that we are also working on the production of microoptical components, perfectly suited for the lossless coupling of these photosensors to several light sources (lasers, ordinary and scintillating fibers, scintillators, optical devices), by exploiting the promising deep lithography with ions (DLI) technology. Crossed time-of-flight and charge measurements between SPADs and usual photomultipliers, coupled to scintillators, have allowed to compare their relative performance. Specific issues regarding the SPAD and the scintillating fiber readout are presented, also in view of possible applications in the field of particle/radiation tracking systems
Keywords :
avalanche photodiodes; gamma-ray detection; ion beam lithography; particle track visualisation; photodetectors; photomultipliers; readout electronics; silicon radiation detectors; solid scintillation detectors; SPAD; charge measurements; common read-out mode; deep lithography with ions technology; identical sensors; integration; lasers; light sources; microoptical components; optical devices; particle tracking systems; photodetectors; photosensors; radiation tracking systems; scintillating fibers; scintillator readout; silicon planar technology; single photon avalanche photodiodes; solid state photomultiplier; time-of-flight measurement; Avalanche photodiodes; Detectors; Low voltage; Optical fiber devices; Optoelectronic and photonic sensors; Photomultipliers; Sensor arrays; Silicon; Solid state circuits; Testing; Avalanche photodiodes; photodetectors; photomultipliers; scintillation detectors; timing;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2005.862912
Filename :
1589318
Link To Document :
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