Autor: |
M. Zavrtanik, Val O'Shea, Tapio Lampén, Esa Tuovinen, Zheng Li, Jaakko Härkönen, Teppo Mäenpää, J. Vaitkus, Matti J Kortelainen, S. Väyrynen, Otilia Militaru, Igor Mandić, Vladimir Cindro, V. K. Eremin, Krzysztof Piotrzkowski, Jyrki Räisänen, M. Krause, T. O. Niinikoski, V. Kalesinskas, S. Pirollo, Wen-Chang Chen, Eugenijus Gaubas, Richard Bates, W. De Boer, E. M. Verbitskaya, Craig Buttar, Marko Mikuz, Mara Bruzzi, T. Anbinderis, P. Anbinderis, Panja-Riina Luukka, Eija Tuominen, David Menichelli, A. Furgeri, Erik H.M. Heijne, S. Mueller, Petteri Pusa, I. Ilyashenko, E. Borchi, C. Parkes, X. Rouby, Sandor Czellar |
Rok vydání: |
2009 |
Předmět: |
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Zdroj: |
IEEE Transactions on Nuclear Science. 56:2119-2123 |
ISSN: |
0018-9499 |
DOI: |
10.1109/tns.2009.2013950 |
Popis: |
CERN RD39 Collaboration develops radiation-hard cryogenic silicon detectors. Recently, we have demonstrated improved radiation hardness in novel Current Injected Detectors (CID). For detector characterization, we have applied cryogenic Transient Current Technique (C-TCT). In beam tests, heavily irradiated CID detector showed capability for particle detection. Our results show that the CID detectors are operational at the temperature -50degC after the fluence of 1 times 1016 1 MeV neutron equivalent/cm2. |
Databáze: |
OpenAIRE |
Externí odkaz: |
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