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Latest results on radiation tolerance of diamond detectors

At present most experiments at the CERN Large Hadron Collider (LHC) are planning upgrades in the next 5-10 years for their innermost tracking layers as well as luminosity monitors to be able to take data as the luminosity increases and CERN moves toward the High Luminosity-LHC (HL-LHC). These upgrad...

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Detalles Bibliográficos
Autores principales: Oh, A, Alexopoulos, A, Artuso, M, Bachmair, F, Bäni, L, Bartosik, M, Beacham, J, Beck, H, Bellini, V, Belyaev, V, Bentele, B, 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, Dünser, M, Eremin, V, Forcolin, G, Forneris, J, Gallin-Martel, L, Gallin-Martel, M L, Gan, K K, Gastal, M, Goffe, M, Goldstein, J, Golubev, A, Gorišek, A, Grigoriev, E, Grosse-Knetter, J, Grummer, A, Guthoff, M, Haughton, I, Hiti, B, Hits, D, Hoeferkamp, M, Hofmann, T, Hosslet, J, Hostachy, J Y, Hügging, F, Hutton, C, Janssen, J, Kagan, H, Kanxheri, K, Kasieczka, G, Kass, R, Kassel, F, Kis, M, Kramberger, G, Kuleshov, S, Lacoste, A, Lagomarsino, S, Lo Giudice, A, Lukosi, E, Maazouzi, C, Mandic, I, Mathieu, C, Menichelli, M, Mikuž, M, Morozzi, A, Moss, J, Mountain, R, Murphy, S, 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, Schmidt, C J, 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, Sutera, C, Taylor, A, 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
Lenguaje:eng
Publicado: SISSA 2019
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.340.0597
http://cds.cern.ch/record/2702680
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author Oh, A
Alexopoulos, A
Artuso, M
Bachmair, F
Bäni, L
Bartosik, M
Beacham, J
Beck, H
Bellini, V
Belyaev, V
Bentele, B
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
Dünser, M
Eremin, V
Forcolin, G
Forneris, J
Gallin-Martel, L
Gallin-Martel, M L
Gan, K K
Gastal, M
Goffe, M
Goldstein, J
Golubev, A
Gorišek, A
Grigoriev, E
Grosse-Knetter, J
Grummer, A
Guthoff, M
Haughton, I
Hiti, B
Hits, D
Hoeferkamp, M
Hofmann, T
Hosslet, J
Hostachy, J Y
Hügging, F
Hutton, C
Janssen, J
Kagan, H
Kanxheri, K
Kasieczka, G
Kass, R
Kassel, F
Kis, M
Kramberger, G
Kuleshov, S
Lacoste, A
Lagomarsino, S
Lo Giudice, A
Lukosi, E
Maazouzi, C
Mandic, I
Mathieu, C
Menichelli, M
Mikuž, M
Morozzi, A
Moss, J
Mountain, R
Murphy, S
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
Schmidt, C J
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
Sutera, C
Taylor, A
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 Oh, A
Alexopoulos, A
Artuso, M
Bachmair, F
Bäni, L
Bartosik, M
Beacham, J
Beck, H
Bellini, V
Belyaev, V
Bentele, B
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
Dünser, M
Eremin, V
Forcolin, G
Forneris, J
Gallin-Martel, L
Gallin-Martel, M L
Gan, K K
Gastal, M
Goffe, M
Goldstein, J
Golubev, A
Gorišek, A
Grigoriev, E
Grosse-Knetter, J
Grummer, A
Guthoff, M
Haughton, I
Hiti, B
Hits, D
Hoeferkamp, M
Hofmann, T
Hosslet, J
Hostachy, J Y
Hügging, F
Hutton, C
Janssen, J
Kagan, H
Kanxheri, K
Kasieczka, G
Kass, R
Kassel, F
Kis, M
Kramberger, G
Kuleshov, S
Lacoste, A
Lagomarsino, S
Lo Giudice, A
Lukosi, E
Maazouzi, C
Mandic, I
Mathieu, C
Menichelli, M
Mikuž, M
Morozzi, A
Moss, J
Mountain, R
Murphy, S
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
Schmidt, C J
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
Sutera, C
Taylor, A
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 Oh, A
collection CERN
description At present most experiments at the CERN Large Hadron Collider (LHC) are planning upgrades in the next 5-10 years for their innermost tracking layers as well as luminosity monitors to be able to take data as the luminosity increases and CERN moves toward the High Luminosity-LHC (HL-LHC). These upgrades will most likely require more radiation tolerant technologies than exist today. As a result this is one area of intense research, and Chemical Vapour Deposition (CVD) diamond is one such technology. CVD diamond has been used extensively in beam condition monitors as the innermost detectors in the highest radiation areas of all LHC experiments. This talk describes the preliminary radiation tolerance measurements of the highest quality polycrystalline CVD material for a range of proton energies and neutrons obtained with this material with the goal of elucidating the issues that should be addressed for future diamond based detectors. The talk presents the evolution of various semiconductor parameters as a function of dose.
id oai-inspirehep.net-1749059
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2019
publisher SISSA
record_format invenio
spelling oai-inspirehep.net-17490592022-08-10T12:25:11Zdoi:10.22323/1.340.0597http://cds.cern.ch/record/2702680engOh, AAlexopoulos, AArtuso, MBachmair, FBäni, LBartosik, MBeacham, JBeck, HBellini, VBelyaev, VBentele, BBes, ABrom, J MBruzzi, MChiodini, GChren, DCindro, VClaus, GCollot, JCumalat, JDabrowski, AD'Alessandro, RDauvergne, Dde Boer, WDick, SDorfer, CDünser, MEremin, VForcolin, GForneris, JGallin-Martel, LGallin-Martel, M LGan, K KGastal, MGoffe, MGoldstein, JGolubev, AGorišek, AGrigoriev, EGrosse-Knetter, JGrummer, AGuthoff, MHaughton, IHiti, BHits, DHoeferkamp, MHofmann, THosslet, JHostachy, J YHügging, FHutton, CJanssen, JKagan, HKanxheri, KKasieczka, GKass, RKassel, FKis, MKramberger, GKuleshov, SLacoste, ALagomarsino, SLo Giudice, ALukosi, EMaazouzi, CMandic, IMathieu, CMenichelli, MMikuž, MMorozzi, AMoss, JMountain, RMurphy, SOlivero, PPasseri, DPernegger, HPerrino, RPicollo, FPomorski, MPotenza, RQuadt, ARe, AReichmann, MRiley, GRoe, SSanz, DScaringella, MSchmidt, C JSchnetzer, SSciortino, SScorzoni, ASeidel, SServoli, LSmith, D SSopko, BSopko, VSpagnolo, SSpanier, SStenson, KStone, RSutera, CTaylor, ATraeger, MTromson, DTrischuk, WTuve, CVelthuis, JVenturi, NVittone, EWagner, SWallny, RWang, J CWeingarten, JWeiss, CWermes, NYamouni, MZavrtanik, MLatest results on radiation tolerance of diamond detectorsDetectors and Experimental TechniquesAt present most experiments at the CERN Large Hadron Collider (LHC) are planning upgrades in the next 5-10 years for their innermost tracking layers as well as luminosity monitors to be able to take data as the luminosity increases and CERN moves toward the High Luminosity-LHC (HL-LHC). These upgrades will most likely require more radiation tolerant technologies than exist today. As a result this is one area of intense research, and Chemical Vapour Deposition (CVD) diamond is one such technology. CVD diamond has been used extensively in beam condition monitors as the innermost detectors in the highest radiation areas of all LHC experiments. This talk describes the preliminary radiation tolerance measurements of the highest quality polycrystalline CVD material for a range of proton energies and neutrons obtained with this material with the goal of elucidating the issues that should be addressed for future diamond based detectors. The talk presents the evolution of various semiconductor parameters as a function of dose.SISSAoai:inspirehep.net:17490592019
spellingShingle Detectors and Experimental Techniques
Oh, A
Alexopoulos, A
Artuso, M
Bachmair, F
Bäni, L
Bartosik, M
Beacham, J
Beck, H
Bellini, V
Belyaev, V
Bentele, B
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
Dünser, M
Eremin, V
Forcolin, G
Forneris, J
Gallin-Martel, L
Gallin-Martel, M L
Gan, K K
Gastal, M
Goffe, M
Goldstein, J
Golubev, A
Gorišek, A
Grigoriev, E
Grosse-Knetter, J
Grummer, A
Guthoff, M
Haughton, I
Hiti, B
Hits, D
Hoeferkamp, M
Hofmann, T
Hosslet, J
Hostachy, J Y
Hügging, F
Hutton, C
Janssen, J
Kagan, H
Kanxheri, K
Kasieczka, G
Kass, R
Kassel, F
Kis, M
Kramberger, G
Kuleshov, S
Lacoste, A
Lagomarsino, S
Lo Giudice, A
Lukosi, E
Maazouzi, C
Mandic, I
Mathieu, C
Menichelli, M
Mikuž, M
Morozzi, A
Moss, J
Mountain, R
Murphy, S
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
Schmidt, C J
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
Sutera, C
Taylor, A
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
Latest results on radiation tolerance of diamond detectors
title Latest results on radiation tolerance of diamond detectors
title_full Latest results on radiation tolerance of diamond detectors
title_fullStr Latest results on radiation tolerance of diamond detectors
title_full_unstemmed Latest results on radiation tolerance of diamond detectors
title_short Latest results on radiation tolerance of diamond detectors
title_sort latest results on radiation tolerance of diamond detectors
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.22323/1.340.0597
http://cds.cern.ch/record/2702680
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