DocumentCode :
1078247
Title :
Modeling of Charge Transfer Inefficiency in a CCD With High-Speed Column Parallel Readout
Author :
Sopczak, André ; Aoulmit, Salim ; Bekhouche, Khaled ; Bowdery, Chris ; Buttar, Craig ; Damerell, Chris ; Djendaoui, Dahmane ; Dehimi, Lakhdar ; Greenshaw, Tim ; Koziel, Michal ; Maneuski, Dzmitry ; Nomerotski, Andrei ; Stefanov, Konstantin ; Tikkanen, Tuo
Author_Institution :
Lancaster Univ., Lancaster
Volume :
56
Issue :
3
fYear :
2009
fDate :
6/1/2009 12:00:00 AM
Firstpage :
1613
Lastpage :
1617
Abstract :
Charge Coupled Devices (CCDs) have been successfully used in several high energy physics experiments over the past two decades. Their high spatial resolution and thin sensitive layers make them an excellent tool for studying short-lived particles. The Linear Collider Flavour Identification (LCFI) collaboration is developing Column-Parallel CCDs (CPCCDs) for the vertex detector of a future Linear Collider. The CPCCDs can be read out many times faster than standard CCDs, significantly increasing their operating speed. An Analytic Model has been developed for the determination of the charge transfer inefficiency (CTI) of a CPCCD. The CTI values determined with the Analytic Model agree largely with those from a full TCAD simulation. The Analytic Model allows efficient study of the variation of the CTI on parameters like readout frequency, operating temperature and occupancy.
Keywords :
charge exchange; charge-coupled devices; high energy physics instrumentation computing; position sensitive particle detectors; CCD; CPCCD; CTI; Column-Parallel CCD; LCFI; Linear Collider; Linear Collider Flavour Identification; TCAD simulation; Technology Computer Aided Design; charge coupled devices; charge transfer inefficiency; high-speed column parallel readout; spatial resolution; thin sensitive layers; vertex detector; Analytical models; Charge coupled devices; Charge transfer; Collaboration; Computational modeling; Computer simulation; Computer worms; Frequency; Position sensitive particle detectors; Radiation detectors; CCD detectors; Linear Collider vertex detectors; charge coupled devices; charge transfer efficiency; position sensitive detectors; radiation damage;
fLanguage :
English
Journal_Title :
Nuclear Science, IEEE Transactions on
Publisher :
ieee
ISSN :
0018-9499
Type :
jour
DOI :
10.1109/TNS.2009.2020985
Filename :
5075943
Link To Document :
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