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Diamond Detector Technology: Status and Perspectives
The radiation tolerance of chemical vapor deposition (CVD) diamond against different particle species and energies has been studied in beam tests and is presented. We also present beam test results on signal size as a function of incident particle rate in charged particle detectors based on un-irrad...
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Publicado: |
2018
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Materias: | |
Acceso en línea: | https://dx.doi.org/10.21175/RadJ.2018.02.020 http://cds.cern.ch/record/2782906 |
_version_ | 1780972023427629056 |
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author | Hits, D. Alexopoulos, A. Artuso, M. Bachmair, F. Bäni, L. Bartosik, M. Beacham, J. Beck, H. Bellini, V. Belyaev, V. Bentele, B. Bergonzo, P. Bes, A. Brom, J-M. Bruzzi, M. Chiodini, G. Chren, D. Cindro, V. Claus, G. Collot, J. Cumalat, J. Dabrowski, A. D'Alessandro, R. Dauvergne, D. de Boer, W. Dick, S. Dorfer, C. Dunser, M. Eremin, V. Forcolin, G. Forneris, J. Gallin-Martel, L. Gallin-Martel, M-L. Gan, K.K. Gastal, M. Giroletti, C. Goffe, M. Goldstein, J. Golubev, A. Gorišek, A. Grigoriev, E. Grosse-Knetter, J. Grummer, A. Guthoff, M. Haughton, I. Hiti, B. Hoeferkamp, M. Hofmann, T. Hosslet, J. Hostachy, J-Y. Hügging, F. Hutton, C. Janssen, J. Kagan, H. Kanxheri, K. Kasieczka, G. Kass, R. Kis, M. Kramberger, G. Kuleshov, S. Lacoste, A. Lagomarsino, S. Giudice, A. Lo Lukosi, E. Maazouzi, C. Mandic, I. Mathieu, C. Menichelli, M. Mikuž, M. Morozzi, A. Moss, J. Mountain, R. Murphy, S. Muškinja, M. Oh, A. Olivero, P. Passeri, D. Pernegger, H. Perrino, R. Picollo, F. Pomorski, M. Potenza, R. Quadt, A. Re, A. Reichmann, M. Riley, G. Roe, S. Sanz, D. Scaringella, M. Schaefer, D. Schmidt, C.J. Schnetzer, S. Sciortino, S. Scorzoni, A. Seidel, S. Smith, D.S. Servoli, L. Sopko, B. Sopko, V. Spagnolo, S. Spanier, S. Stenson, K. Stone, R. Sutera, C. Taylor, A. Tannenwald, B. Traeger, M. Tromson, D. Trischuk, W. Tuve, C. Velthuis, J. Venturi, N. Vittone, E. Wagner, S. Wallny, R. Wang, J.C. Weingarten, J. Weiss, C. Wermes, N. Yamouni, M. Zavrtanik, M. |
author_facet | Hits, D. Alexopoulos, A. Artuso, M. Bachmair, F. Bäni, L. Bartosik, M. Beacham, J. Beck, H. Bellini, V. Belyaev, V. Bentele, B. Bergonzo, P. Bes, A. Brom, J-M. Bruzzi, M. Chiodini, G. Chren, D. Cindro, V. Claus, G. Collot, J. Cumalat, J. Dabrowski, A. D'Alessandro, R. Dauvergne, D. de Boer, W. Dick, S. Dorfer, C. Dunser, M. Eremin, V. Forcolin, G. Forneris, J. Gallin-Martel, L. Gallin-Martel, M-L. Gan, K.K. Gastal, M. Giroletti, C. Goffe, M. Goldstein, J. Golubev, A. Gorišek, A. Grigoriev, E. Grosse-Knetter, J. Grummer, A. Guthoff, M. Haughton, I. Hiti, B. Hoeferkamp, M. Hofmann, T. Hosslet, J. Hostachy, J-Y. Hügging, F. Hutton, C. Janssen, J. Kagan, H. Kanxheri, K. Kasieczka, G. Kass, R. Kis, M. Kramberger, G. Kuleshov, S. Lacoste, A. Lagomarsino, S. Giudice, A. Lo Lukosi, E. Maazouzi, C. Mandic, I. Mathieu, C. Menichelli, M. Mikuž, M. Morozzi, A. Moss, J. Mountain, R. Murphy, S. Muškinja, M. Oh, A. Olivero, P. Passeri, D. Pernegger, H. Perrino, R. Picollo, F. Pomorski, M. Potenza, R. Quadt, A. Re, A. Reichmann, M. Riley, G. Roe, S. Sanz, D. Scaringella, M. Schaefer, D. Schmidt, C.J. Schnetzer, S. Sciortino, S. Scorzoni, A. Seidel, S. Smith, D.S. Servoli, L. Sopko, B. Sopko, V. Spagnolo, S. Spanier, S. Stenson, K. Stone, R. Sutera, C. Taylor, A. Tannenwald, B. Traeger, M. Tromson, D. Trischuk, W. Tuve, C. Velthuis, J. Venturi, N. Vittone, E. Wagner, S. Wallny, R. Wang, J.C. Weingarten, J. Weiss, C. Wermes, N. Yamouni, M. Zavrtanik, M. |
author_sort | Hits, D. |
collection | CERN |
description | The radiation tolerance of chemical vapor deposition (CVD) diamond against different particle species and energies has been studied in beam tests and is presented. We also present beam test results on signal size as a function of incident particle rate in charged particle detectors based on un-irradiated and irradiated poly-crystalline CVD diamond over a range of particle fluxes from 2 kHz/cm$^2$ to 20 MHz/cm$^2$. The pulse height of the sensors was measured using readout electronics with a peaking time of 6 ns. In addition, the functionality of poly-crystalline CVD diamond 3D devices is demonstrated in beam tests and 3D diamond detectors are shown to be a promising technology for applications in future high rate/high intensity experiments. |
id | cern-2782906 |
institution | Organización Europea para la Investigación Nuclear |
publishDate | 2018 |
record_format | invenio |
spelling | cern-27829062021-10-01T22:20:37Zdoi:10.21175/RadJ.2018.02.020http://cds.cern.ch/record/2782906Hits, D.Alexopoulos, A.Artuso, M.Bachmair, F.Bäni, L.Bartosik, M.Beacham, J.Beck, H.Bellini, V.Belyaev, V.Bentele, B.Bergonzo, P.Bes, A.Brom, J-M.Bruzzi, M.Chiodini, G.Chren, D.Cindro, V.Claus, G.Collot, J.Cumalat, J.Dabrowski, A.D'Alessandro, R.Dauvergne, D.de Boer, W.Dick, S.Dorfer, C.Dunser, M.Eremin, V.Forcolin, G.Forneris, J.Gallin-Martel, L.Gallin-Martel, M-L.Gan, K.K.Gastal, M.Giroletti, C.Goffe, M.Goldstein, J.Golubev, A.Gorišek, A.Grigoriev, E.Grosse-Knetter, J.Grummer, A.Guthoff, M.Haughton, I.Hiti, B.Hoeferkamp, M.Hofmann, T.Hosslet, J.Hostachy, J-Y.Hügging, F.Hutton, C.Janssen, J.Kagan, H.Kanxheri, K.Kasieczka, G.Kass, R.Kis, M.Kramberger, G.Kuleshov, S.Lacoste, A.Lagomarsino, S.Giudice, A. LoLukosi, E.Maazouzi, C.Mandic, I.Mathieu, C.Menichelli, M.Mikuž, M.Morozzi, A.Moss, J.Mountain, R.Murphy, S.Muškinja, M.Oh, A.Olivero, P.Passeri, D.Pernegger, H.Perrino, R.Picollo, F.Pomorski, M.Potenza, R.Quadt, A.Re, A.Reichmann, M.Riley, G.Roe, S.Sanz, D.Scaringella, M.Schaefer, D.Schmidt, C.J.Schnetzer, S.Sciortino, S.Scorzoni, A.Seidel, S.Smith, D.S.Servoli, L.Sopko, B.Sopko, V.Spagnolo, S.Spanier, S.Stenson, K.Stone, R.Sutera, C.Taylor, A.Tannenwald, B.Traeger, M.Tromson, D.Trischuk, W.Tuve, C.Velthuis, J.Venturi, N.Vittone, E.Wagner, S.Wallny, R.Wang, J.C.Weingarten, J.Weiss, C.Wermes, N.Yamouni, M.Zavrtanik, M.Diamond Detector Technology: Status and PerspectivesHealth Physics and Radiation EffectsHealth Physics and Radiation EffectsNuclear Physics - TheoryThe radiation tolerance of chemical vapor deposition (CVD) diamond against different particle species and energies has been studied in beam tests and is presented. We also present beam test results on signal size as a function of incident particle rate in charged particle detectors based on un-irradiated and irradiated poly-crystalline CVD diamond over a range of particle fluxes from 2 kHz/cm$^2$ to 20 MHz/cm$^2$. The pulse height of the sensors was measured using readout electronics with a peaking time of 6 ns. In addition, the functionality of poly-crystalline CVD diamond 3D devices is demonstrated in beam tests and 3D diamond detectors are shown to be a promising technology for applications in future high rate/high intensity experiments.oai:cds.cern.ch:27829062018 |
spellingShingle | Health Physics and Radiation Effects Health Physics and Radiation Effects Nuclear Physics - Theory Hits, D. Alexopoulos, A. Artuso, M. Bachmair, F. Bäni, L. Bartosik, M. Beacham, J. Beck, H. Bellini, V. Belyaev, V. Bentele, B. Bergonzo, P. Bes, A. Brom, J-M. Bruzzi, M. Chiodini, G. Chren, D. Cindro, V. Claus, G. Collot, J. Cumalat, J. Dabrowski, A. D'Alessandro, R. Dauvergne, D. de Boer, W. Dick, S. Dorfer, C. Dunser, M. Eremin, V. Forcolin, G. Forneris, J. Gallin-Martel, L. Gallin-Martel, M-L. Gan, K.K. Gastal, M. Giroletti, C. Goffe, M. Goldstein, J. Golubev, A. Gorišek, A. Grigoriev, E. Grosse-Knetter, J. Grummer, A. Guthoff, M. Haughton, I. Hiti, B. Hoeferkamp, M. Hofmann, T. Hosslet, J. Hostachy, J-Y. Hügging, F. Hutton, C. Janssen, J. Kagan, H. Kanxheri, K. Kasieczka, G. Kass, R. Kis, M. Kramberger, G. Kuleshov, S. Lacoste, A. Lagomarsino, S. Giudice, A. Lo Lukosi, E. Maazouzi, C. Mandic, I. Mathieu, C. Menichelli, M. Mikuž, M. Morozzi, A. Moss, J. Mountain, R. Murphy, S. Muškinja, M. Oh, A. Olivero, P. Passeri, D. Pernegger, H. Perrino, R. Picollo, F. Pomorski, M. Potenza, R. Quadt, A. Re, A. Reichmann, M. Riley, G. Roe, S. Sanz, D. Scaringella, M. Schaefer, D. Schmidt, C.J. Schnetzer, S. Sciortino, S. Scorzoni, A. Seidel, S. Smith, D.S. Servoli, L. Sopko, B. Sopko, V. Spagnolo, S. Spanier, S. Stenson, K. Stone, R. Sutera, C. Taylor, A. Tannenwald, B. Traeger, M. Tromson, D. Trischuk, W. Tuve, C. Velthuis, J. Venturi, N. Vittone, E. Wagner, S. Wallny, R. Wang, J.C. Weingarten, J. Weiss, C. Wermes, N. Yamouni, M. Zavrtanik, M. Diamond Detector Technology: Status and Perspectives |
title | Diamond Detector Technology: Status and Perspectives |
title_full | Diamond Detector Technology: Status and Perspectives |
title_fullStr | Diamond Detector Technology: Status and Perspectives |
title_full_unstemmed | Diamond Detector Technology: Status and Perspectives |
title_short | Diamond Detector Technology: Status and Perspectives |
title_sort | diamond detector technology: status and perspectives |
topic | Health Physics and Radiation Effects Health Physics and Radiation Effects Nuclear Physics - Theory |
url | https://dx.doi.org/10.21175/RadJ.2018.02.020 http://cds.cern.ch/record/2782906 |
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