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Title A Study of the Radiation Tolerance of CVD Diamond to 70 MeV Protons, Fast Neutrons and 200 MeV Pions
Related titleA Study of the Radiation Tolerance of CVD Diamond to 70 MeV Protons, Fast Neutrons and 200MeV Pions
Author(s)

Bäni, Lukas (Zurich, ETH) ; Alexopoulos, Andreas (CERN) ; Artuso, Marina (Syracuse U.) ; Bachmair, Felix (Zurich, ETH) ; Bartosik, Marcin Ryszard (CERN) ; Beck, Helge Christoph (Gottingen U.) ; Bellini, Vincenzo (Catania U.) ; Belyaev, Vladimir (Moscow Phys. Eng. Inst.) ; Bentele, Benjamin (Colorado U.) ; Bes, Alexandre (LPSC, Grenoble) ; Brom, Jean-Marie (Strasbourg, IPHC) ; Chiodini, Gabriele (INFN, Lecce) ; Chren, Dominik (Prague, Tech. U.) ; Cindro, Vladimir (Stefan Inst., Ljubljana) ; Claus, Gilles (Strasbourg, IPHC) ; Collot, Johann (LPSC, Grenoble) ; Cumalat, John (Colorado U.) ; Curtoni, Sébastien (LPSC, Grenoble) ; Dabrowski, Anne Evelyn (CERN) ; D'Alessandro, Raffaello (Florence U.) ; Dauvergne, Denis (LPSC, Grenoble) ; De Boer, Wim (Karlsruhe U.) ; Dorfer, Christian (Zurich, ETH) ; Dünser, Marc (CERN) ; Eigen, Gerald (Bergen U.) ; Eremin, Vladimir (Ioffe Phys. Tech. Inst.) ; Forneris, Jacopo (Turin U.) ; Gallin-Martel, Laurent (LPSC, Grenoble) ; Gallin-Martel, Marie-Laure (LPSC, Grenoble) ; Gan, Kock Kiam (Ohio State U.) ; Gastal, Martin (CERN) ; Ghimouz, Abderrahman (LPSC, Grenoble) ; Goffe, Mathieu (Strasbourg, IPHC) ; Goldstein, Joel (Bristol U.) ; Golubev, Alexander (Moscow, ITEP) ; Gorišek, Andrej (Stefan Inst., Ljubljana) ; Grigoriev, Eugene (Moscow, ITEP) ; Grosse-Knetter, Jörn (Gottingen U.) ; Grummer, Aidan (New Mexico U.) ; Hiti, Bojan (Stefan Inst., Ljubljana) ; Hits, Dmitry (Zurich, ETH) ; Hoeferkamp, Martin (New Mexico U.) ; Hosselet, Jérôme (Strasbourg, IPHC) ; Hügging, Fabian (Bonn U.) ; Hutson, Chris (Bristol U.) ; Janssen, Jens (Bonn U.) ; Kagan, Harris (Ohio State U.) ; Kanxheri, Keida (INFN, Perugia) ; Kass, Richard (Ohio State U.) ; Kis, Mladen (Darmstadt, GSI) ; Kramberger, Gregor (Stefan Inst., Ljubljana) ; Kuleshov, Sergey (Moscow, ITEP) ; Lacoste, Ana (LPSC, Grenoble) ; Lagomarsino, Stefano (Florence U.) ; Lo Giudice, Alessandro (Turin U.) ; Paz, Ivan López (Manchester U.) ; Lukosi, Eric (U. Tennessee, Knoxville) ; Maazouzi, Chaker (Strasbourg, IPHC) ; Mandíc, Igor (Stefan Inst., Ljubljana) ; Marcatili, Sara (LPSC, Grenoble) ; Marino, Alysia (Colorado U.) ; Mathieu, Cédric (Strasbourg, IPHC) ; Menichelli, Mauro (INFN, Perugia) ; Mikuž, Marko (Stefan Inst., Ljubljana) ; Morozzi, Arianna (INFN, Perugia) ; Moscatelli, Francesco (INFN, Perugia) ; Moss, Joshua (Cal State, Sacramento) ; Mountain, Raymond (Syracuse U.) ; Oh, Alexander (Manchester U.) ; Olivero, Paolo (Turin U.) ; Passeri, Daniele (INFN, Perugia) ; Pernegger, Heinz (CERN) ; Perrino, Roberto (INFN, Lecce) ; Picollo, Federico (Turin U.) ; Pomorski, Michal (LIST, Saclay) ; Potenza, Renato (Catania U.) ; Quadt, Arnulf (Gottingen U.) ; Rarbi, Fatah (LPSC, Grenoble) ; Re, Alessandro (Turin U.) ; Reichmann, Michael (Zurich, ETH) ; Roe, Shaun (CERN) ; Rossetto, Olivier (LPSC, Grenoble) ; Sanz Becerra, Diego Alejandro (Zurich, ETH) ; Schmidt, Christian J (Darmstadt, GSI) ; Schnetzer, Stephen (Rutgers U., Piscataway) ; Sciortino, Silvio (Florence U.) ; Scorzoni, Andrea (INFN, Perugia) ; Seidel, Sally (New Mexico U.) ; Servoli, Leonello (INFN, Perugia) ; Smith, Dale Shane (Ohio State U.) ; Sopko, Bruno (Prague, Tech. U.) ; Sopko, Vit (Prague, Tech. U.) ; Spagnolo, Stefania (INFN, Lecce) ; Spanier, Stefan (U. Tennessee, Knoxville) ; Stenson, Kevin (Colorado U.) ; Stone, Robert (Rutgers U., Piscataway) ; Stugu, Bjarne (Bergen U.) ; Sutera, Concetta (Catania U.) ; Traeger, Michael (Darmstadt, GSI) ; Trischuk, William (Toronto U.) ; Truccato, Marco (Turin U.) ; Tuvè, Cristina (Catania U.) ; Velthuis, Jaap (Bristol U.) ; Wagner, Stephen (Colorado U.) ; Wallny, Rainer (Zurich, ETH) ; Wang, Jianchun (Syracuse U.) ; Wermes, Norbert (Bonn U.) ; Wickramasinghe, Jayashani (New Mexico U.) ; Yamouni, Mahfoud (LPSC, Grenoble) ; Zalieckas, Justas (Bergen U.) ; Zavrtanik, Marko (Stefan Inst., Ljubljana) ; Hara, Kazuhiko (Tsukuba U.) ; Ikegami, Yoichi (KEK, Tsukuba) ; Jinnouchi, Osamu (Tokyo Inst. Tech.) ; Kohriki, Takashi (KEK, Tsukuba) ; Mitsui, Shingo (Tsukuba U.) ; Nagai, Ryo (Tokyo Inst. Tech.) ; Terada, Susumu (KEK, Tsukuba) ; Unno, Yoshinobu (KEK, Tsukuba)

Publication 2020
Number of pages 19
In: Sensors 20 (2020) 6648
DOI 10.3390/s20226648
Subject category Detectors and Experimental Techniques
Accelerator/Facility, Experiment RD42
Abstract We measured the radiation tolerance of commercially available diamonds grown by the Chemical Vapor Deposition process by measuring the charge created by a 120 GeV hadron beam in a 50 μm pitch strip detector fabricated on each diamond sample before and after irradiation. We irradiated one group of samples with 70 MeV protons, a second group of samples with fast reactor neutrons (defined as energy greater than 0.1 MeV), and a third group of samples with 200 MeV pions, in steps, to (8.8±0.9) × 1015 protons/cm2, (1.43±0.14) × 1016 neutrons/cm2, and (6.5±1.4) × 1014 pions/cm2, respectively. By observing the charge induced due to the separation of electron–hole pairs created by the passage of the hadron beam through each sample, on an event-by-event basis, as a function of irradiation fluence, we conclude all datasets can be described by a first-order damage equation and independently calculate the damage constant for 70 MeV protons, fast reactor neutrons, and 200 MeV pions. We find the damage constant for diamond irradiated with 70 MeV protons to be 1.62±0.07(stat)±0.16(syst)× 10−18 cm2/(p μm), the damage constant for diamond irradiated with fast reactor neutrons to be 2.65±0.13(stat)±0.18(syst)× 10−18 cm2/(n μm), and the damage constant for diamond irradiated with 200 MeV pions to be 2.0±0.2(stat)±0.5(syst)× 10−18 cm2/(π μm). The damage constants from this measurement were analyzed together with our previously published 24 GeV proton irradiation and 800 MeV proton irradiation damage constant data to derive the first comprehensive set of relative damage constants for Chemical Vapor Deposition diamond. We find 70 MeV protons are 2.60 ± 0.29 times more damaging than 24 GeV protons, fast reactor neutrons are 4.3 ± 0.4 times more damaging than 24 GeV protons, and 200 MeV pions are 3.2 ± 0.8 more damaging than 24 GeV protons. We also observe the measured data can be described by a universal damage curve for all proton, neutron, and pion irradiations we performed of Chemical Vapor Deposition diamond. Finally, we confirm the spatial uniformity of the collected charge increases with fluence for polycrystalline Chemical Vapor Deposition diamond, and this effect can also be described by a universal curve.
Copyright/License © 2020 by the authors (License: CC-BY-3.0)

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