Tracking with CVD diamond radiation sensors at high luminosity colliders

S. Schnetzer, W. Adam, G. Bauer, B. Berdermann, P. Bergonzo, F. Bogani, E. Borchi, A. Brambilla, M. Bruzzi, C. Colledani, J. Conway, W. Dabrowski, J. DaGraca, P. Delpierre, A. Deneuville, W. Dulinski, B. Van Eijk, A. Fallou, F. Fizzotti, F. FoulonM. Friedl, K. K. Gan, E. Gheeraert, E. Grigoriev, G. Hallewell, R. Hall-Wilton, S. Man, F. Hartjes, J. Hrubec, D. Husson, D. Jamieson, H. Kagan, D. Kania, J. Kapion, C. Karl, R. Kass, K. T. Knoepfle, M. Krammer, A. Logiudice, R. Lu, F. F. Manfredi, C. Manfredotti, R. D. Marshall, D. Meier, M. Mishina, A. Oh, L. S. Pan, V. G. Palmieri, M. Pernicka, A. Peitz, S. Pirollo, R. Piano, P. Polesello, S. Prawer, K. Pretzl, M. Procario, V. Re, J. L. Riester, S. Roe, D. Roff, A. Rudge, O. Runolfsson, J. Russ, S. Sciortino, S. V. Somalwar, V. Speziali, H. Stelzer, R. Stone, B. Suter, R. J. Tapper, R. Tesarek, G. B. Thomson, M. Trawick, W. Trischuk, E. Vittone, A. M. Walsh, R. Wedenig, P. Weilhammer, C. White, H. Ziock, M. Zoeller

    Research output: Contribution to journalArticlepeer-review

    12 Scopus citations

    Abstract

    Recent progress on developing diamond-based sensors for vertex detection at high luminosity hadron colliders is described. Measurements of the performance of diamond sensors after irradiation to fluences of up to 5 × 1015 hadrons/cm2 are shown. These indicate that diamond sensors will operate at distances as close as 5 cm from the interaction point at the Large Hadron Collider (LHC) for many years at full luminosity without significant degradation in performance. Measurements of the quality of the signals from diamond sensors as well as spatial uniformity are presented. Test beam results on measurements of diamond-based microstrip and pixels devices are described.

    Original languageBritish English
    Pages (from-to)193-200
    Number of pages8
    JournalIEEE Transactions on Nuclear Science
    Volume46
    Issue number3 PART 1
    DOIs
    StatePublished - 1999

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