Radiation tolerance of diamond detectors

2022 | journal article. A publication with affiliation to the University of Göttingen.

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​Radiation tolerance of diamond detectors​
Bäni, L.; Artuso, M.; Bachmair, F.; Bartosik, M.; Beck, H.; Bellini, V. & Belyaev, V. et al.​ (2022) 
Journal of Physics. Conference Series2374(1).​ DOI: https://doi.org/10.1088/1742-6596/2374/1/012172 

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Authors
Bäni, L.; Artuso, M.; Bachmair, F.; Bartosik, M.; Beck, H.; Bellini, V.; Belyaev, V.; Bentele, B.; Bergonzo, P.; Bes, A.; Brom, J.-M.; Chiodini, G.; Chren, D.; Cindro, V.; Claus, G.; Collot, J.; Cumalat, J.; Curtoni, S.; Dabrowski, A.; D’Alessandro, R.; Dauvergne, D.; de Boer, W.; Dorfer, C.; Dünser, M.; Eigen, G.; Eremin, V.; Forneris, J.; Gallin-Martel, L.; Gallin-Martel, M.-L.; Gan, K. K.; Gastal, M.; Ghimouz, A.; Goffe, M.; Goldstein, J.; Golubev, A.; Gorišek, A.; Grigoriev, E.; Grosse-Knetter, J.; Grummer, A.; Hiti, B.; Hits, D.; Hoeferkamp, M.; Hofmann, T.; Hosselet, J.; Hügging, F.; Hutson, C.; Jackman, R.; Janssen, J.; Jennings-Moors, R.; Kagan, H.; Kanxheri, K.; Kis, M.; Kramberger, G.; Kuleshov, S.; Lacoste, A.; Lagomarsino, S.; Giudice, A. Lo; Paz, I. López; Lukosi, E.; Maazouzi, C.; Mandić, I.; Marcatili, S.; Marino, A.; Mathieu, C.; Menichelli, M.; Mikuž, M.; Morozzi, A.; Moscatelli, F.; Moss, J.; Mountain, R.; Oh, A.; Olivero, P.; Pakpour-Tabrizi, A.; Passeri, D.; Pernegger, H.; Perrino, R.; Picollo, F.; Pomorski, M.; Porter, A.; Potenza, R.; Quadt, A.; Rarbi, F.; Re, A.; Reichmann, M.; Roe, S.; Rossetto, O.; Becerra, D. A. Sanz; Schmidt, C.; Schnetzer, S.; Sciortino, S.; Scorzoni, A.; Seidel, S.; Servoli, L.; Smith, D. S.; Sopko, B.; Sopko, V.; Spagnolo, S.; Spanier, S.; Stenson, K.; Stone, R.; Stugu, B.; Sutera, C.; Traeger, M.; Trischuk, W.; Truccato, M.; Tuvê, C.; Velthuis, J.; Wagner, S.; Wallny, R.; Wang, J. C.; Welch, J.; Wermes, N.; Wickramasinghe, J.; Yamouni, M.; Zalieckas, J.; Zavrtanik, M.
Abstract
Diamond is used as detector material in high energy physics experiments due to its inherent radiation tolerance. The RD42 collaboration has measured the radiation tolerance of chemical vapour deposition (CVD) diamond against proton, pion, and neutron irradiation. Results of this study are summarized in this article. The radiation tolerance of diamond detectors can be further enhanced by using a 3D electrode geometry. We present preliminary results of a poly-crystalline CVD (pCVD) diamond detector with a 3D electrode geometry after irradiation and compare to planar devices of roughly the same thickness.
Issue Date
2022
Journal
Journal of Physics. Conference Series 
ISSN
1742-6588
eISSN
1742-6596
Language
English

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