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Characterization of irradiated detectors fabricated on p-type silicon substrates for super-LHC

✍ Scribed by M. Miñano; F. Campabadal; C. Escobar; C. García; S. González; C. Lacasta; M. Lozano; S. Martí i García; G. Pellegrini; J.M. Rafí; M. Ullán


Publisher
Elsevier Science
Year
2007
Tongue
English
Weight
592 KB
Volume
583
Category
Article
ISSN
0168-9002

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✦ Synopsis


An upgrade of the large hadron collider (LHC), the Super-LHC (SLHC), towards higher luminosities is currently being discussed as an extension of the LHC physics program. The goal of the SLHC is to operate at a luminosity of 10 35 cm À2 s À1 (10 times larger than that of the LHC one). Thus, the operation of the SLHC implies a need to upgrade the detectors of the LHC experiments. The current tracking system of ATLAS will not cope with that luminosity. New solutions must be investigated to improve the radiation tolerance of the semiconductor detector. p-Type bulk sensors are being considered for the ATLAS tracking system for the SLHC. Microstrip detectors fabricated by CNM-IMB on p-type high-resistivity float zone silicon have been irradiated with neutrons at the TRIGA Mark II reactor in Ljubljana up to a fluence of 10 16 cm À2 (as expected in the innermost region of the ATLAS upgrade) and have been characterized at IFIC Laboratory. The collected charge, after irradiation, has been measured by infrared laser illumination. The leakage current of those sensors is also reported.


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