DocumentCode
1323460
Title
Conception and design criteria of a novel silicon device for the measurement of position and energy of X-rays
Author
Castoldi, A. ; Guazzoni, C. ; Longoni, A. ; Gatti, E. ; Rehak, P. ; Strüder, L.
Author_Institution
Dipt. di Fisica, Milan Univ., Italy
Volume
44
Issue
5
fYear
1997
fDate
10/1/1997 12:00:00 AM
Firstpage
1724
Lastpage
1732
Abstract
In this paper we present the working principle and the design criteria of the Controlled-Drift Detector, a novel device suitable for the simultaneous measurement of energy and two-dimensional position of X-rays. In the Controlled-Drift Detector the pixel structure typical of a charge-coupled device and the fast readout typical of a silicon drift detector are joined. When the radiation is to be detected, suitable potential barriers are generated to prevent the drift of the signal electrons that are confined within a matrix of integration wells. The potential barrier which prevents the drift is selectively removable to allow the fast transport of the confined signal electrons to the readout electrodes by means of a static drift field. In principle such a device can achieve excellent energy resolution and readout times of some tens of microseconds. Three different confining mechanisms that allow control of the drift of the stored electrons are studied, and their advantages and drawbacks are discussed. First prototypes of the Controlled-Drift Detector are currently in production
Keywords
X-ray detection; X-ray imaging; position sensitive particle detectors; silicon radiation detectors; Si; X-ray imaging; X-rays; charge-coupled device; controlled-drift detector; design criteria; fast read-out; high-energy resolution; novel silicon device; pixel structure; potential barriers; readout electrodes; signal electrons; silicon drift detector; static drift field; working principle; Electrodes; Electrons; Energy measurement; Position measurement; Potential well; Radiation detectors; Signal generators; Silicon devices; X-ray detection; X-ray detectors;
fLanguage
English
Journal_Title
Nuclear Science, IEEE Transactions on
Publisher
ieee
ISSN
0018-9499
Type
jour
DOI
10.1109/23.633425
Filename
633425
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