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.

Radiation tolerance of diamond detectors

Forneris, J;Giudice, A Lo;Olivero, P;Picollo, F;Re, A;Truccato, M;
2022-01-01

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.
2022
2374
1
012172
012176
diamond, detector, radiation tolerance
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; Cind...espandi
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Utilizza questo identificativo per citare o creare un link a questo documento: https://hdl.handle.net/2318/1991991
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