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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.
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1 ETH Zürich , Zürich , Switzerland; Speaker
2 Syracuse University , Syracuse, NY , USA
3 ETH Zürich , Zürich , Switzerland
4 CERN , Geneva , Switzerland
5 Universität Göttingen , Göttingen , Germany
6 INFN/University of Catania , Catania , Italy
7 MEPHI Institute , Moscow , Russia
8 University of Colorado , Boulder, CO , USA
9 University College London , London , UK
10 LPSC-Grenoble , Grenoble , France
11 IPHC , Strasbourg , France
12 INFN-Lecce , Lecce , Italy
13 Czech Technical University , Prague , Czech Republic
14 Jožef Stefan Institute , Ljubljana , Slovenia
15 INFN/University of Florence , Florence , Italy
16 Universität Karlsruhe , Karlsruhe , Germany
17 University of Bergen , Bergen , Norway
18 Ioffe Institute , St. Petersburg , Russia
19 University of Torino , Torino , Italy
20 The Ohio State University , Columbus, OH , USA
21 University of Bristol , Bristol, UK
22 ITEP , Moscow , Russia
23 University of New Mexico , Albuquerque, NM , USA
24 Universität Bonn , Bonn , Germany
25 INFN-Perugia , Perugia , Italy
26 GSI , Darmstadt , Germany
27 University of Manchester , Manchester , UK
28 University of Tennessee , Knoxville, TN , USA
29 California State University , Sacramento, CA , USA
30 CEA-LIST Technologies Avancees , Saclay , France
31 Rutgers University , Piscataway, NJ , USA
32 University of Toronto , Toronto, ON , Canada