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pro vyhledávání: '"cryogenic si detector"'
Autor:
G. Ruggiero, N.D’. Ambrosio, W. De Boer, M.C. Abreu, Kevin M. Smith, Erik H.M. Heijne, L. Jungermann, R. Herzog, Panja-Riina Luukka, X. Rouby, J. Kapturauskas, David Menichelli, Igor Mandić, Esa Tuovinen, Wen-Chang Chen, E. Grigoriev, R. Laiho, Salvatore Buontempo, Marko Mikuz, V. K. Eremin, E. M. Verbitskaya, P. Rato Mendes, Mara Bruzzi, O. Hempel, Alexander Dierlamm, T.O. Niinikosky, S. Heising, E. Wobst, Rita De Masi, Krzysztof Piotrzkowski, V. Kalesinskas, M. Zavrtanik, I. Ilyashenko, F. Hauler, T. Anbinderis, Eugenijus Gaubas, Vladimir Cindro, P. Sousa, P. Anbinderis, Sergio Pagano, J. Härkönen, E. Borchi, P. Sonderegger, J. Vaitkus, Eija Tuominen, Zheng Li, V. Gorbatenko, K. Borer, V. O׳Shea, S. Janos, Otilia Militaru, Klaus Peter Pretzl, Soumen Paul
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 579:775-781
Radiation hardness up to 10 16 n eq /cm 2 is required in the future HEP experiments for most inner detectors. However, 10 16 n eq /cm 2 fluence is well beyond the radiation tolerance of even the most advanced semiconductor detectors fabricated by com