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CVD diamond detectors for ionizing radiation

In future HEP accelerators, such as the LHC (CERN), detectors and electronics in the vertex region of the experiments will suffer from extreme radiation. Thus radiation hardness is required for both detectors and electronics to survive in this harsh environment. CVD diamond, which is investigated by...

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Detalles Bibliográficos
Autores principales: Friedl, M, Adam, W, Bauer, C, Berfermann, E, Bergonzo, P, Bogani, F, Borchi, E, Brambilla, A, Bruzzi, Mara, Colledani, C, Conway, J, Dabrowski, W, Delpierre, P A, Deneuville, A, Dulinski, W, van Eijk, B, Fallou, A, Fizzotti, F, Foulon, F, Gan, K K, Gheeraert, E, Grigoriev, E, Hallewell, G D, Hall-Wilton, R, Han, S, Hartjes, F G, Hrubec, Josef, Husson, D, Kagan, H, Kania, D R, Kaplon, J, Karl, C, Kass, R, Knöpfle, K T, Krammer, Manfred, Lo Giudice, A, Lü, R, Manfredi, P F, Manfredotti, C, Marshall, R D, Meier, D, Mishina, M, Oh, A, Pan, L S, Palmieri, V G, Pernegger, H, Pernicka, Manfred, Peitz, A, Pirollo, S, Polesello, P, Pretzl, Klaus P, Re, V, Riester, J L, Roe, S, Roff, D G, Rudge, A, Schnetzer, S R, Sciortino, S, Speziali, V, Stelzer, H, Stone, R, Tapper, R J, Tesarek, R J, Thomson, G B, Trawick, M L, Trischuk, W, Vittone, E, Walsh, A M, Wedenig, R, Weilhammer, Peter, Ziock, H J, Zöller, M
Lenguaje:eng
Publicado: 1999
Materias:
Acceso en línea:https://dx.doi.org/10.1016/S0168-9002(99)00586-0
http://cds.cern.ch/record/410775
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author Friedl, M
Adam, W
Bauer, C
Berfermann, E
Bergonzo, P
Bogani, F
Borchi, E
Brambilla, A
Bruzzi, Mara
Colledani, C
Conway, J
Dabrowski, W
Delpierre, P A
Deneuville, A
Dulinski, W
van Eijk, B
Fallou, A
Fizzotti, F
Foulon, F
Gan, K K
Gheeraert, E
Grigoriev, E
Hallewell, G D
Hall-Wilton, R
Han, S
Hartjes, F G
Hrubec, Josef
Husson, D
Kagan, H
Kania, D R
Kaplon, J
Karl, C
Kass, R
Knöpfle, K T
Krammer, Manfred
Lo Giudice, A
Lü, R
Manfredi, P F
Manfredotti, C
Marshall, R D
Meier, D
Mishina, M
Oh, A
Pan, L S
Palmieri, V G
Pernegger, H
Pernicka, Manfred
Peitz, A
Pirollo, S
Polesello, P
Pretzl, Klaus P
Re, V
Riester, J L
Roe, S
Roff, D G
Rudge, A
Schnetzer, S R
Sciortino, S
Speziali, V
Stelzer, H
Stone, R
Tapper, R J
Tesarek, R J
Thomson, G B
Trawick, M L
Trischuk, W
Vittone, E
Walsh, A M
Wedenig, R
Weilhammer, Peter
Ziock, H J
Zöller, M
author_facet Friedl, M
Adam, W
Bauer, C
Berfermann, E
Bergonzo, P
Bogani, F
Borchi, E
Brambilla, A
Bruzzi, Mara
Colledani, C
Conway, J
Dabrowski, W
Delpierre, P A
Deneuville, A
Dulinski, W
van Eijk, B
Fallou, A
Fizzotti, F
Foulon, F
Gan, K K
Gheeraert, E
Grigoriev, E
Hallewell, G D
Hall-Wilton, R
Han, S
Hartjes, F G
Hrubec, Josef
Husson, D
Kagan, H
Kania, D R
Kaplon, J
Karl, C
Kass, R
Knöpfle, K T
Krammer, Manfred
Lo Giudice, A
Lü, R
Manfredi, P F
Manfredotti, C
Marshall, R D
Meier, D
Mishina, M
Oh, A
Pan, L S
Palmieri, V G
Pernegger, H
Pernicka, Manfred
Peitz, A
Pirollo, S
Polesello, P
Pretzl, Klaus P
Re, V
Riester, J L
Roe, S
Roff, D G
Rudge, A
Schnetzer, S R
Sciortino, S
Speziali, V
Stelzer, H
Stone, R
Tapper, R J
Tesarek, R J
Thomson, G B
Trawick, M L
Trischuk, W
Vittone, E
Walsh, A M
Wedenig, R
Weilhammer, Peter
Ziock, H J
Zöller, M
author_sort Friedl, M
collection CERN
description In future HEP accelerators, such as the LHC (CERN), detectors and electronics in the vertex region of the experiments will suffer from extreme radiation. Thus radiation hardness is required for both detectors and electronics to survive in this harsh environment. CVD diamond, which is investigated by the RD42 Collaboration at CERN, can meet these requirements. Samples of up to 2*4 cm/sup 2/ have been grown and refined for better charge collection properties, which are measured with a beta source or in a test beam. A large number of diamond samples has been irradiated with hadrons to fluences of up to 5*10/sup 15/ cm/sup -2/ to study the effects of radiation. Both strip and pixel detectors were prepared in various geometries. Samples with strip metallization have been tested with both slow and fast readout electronics, and the first diamond pixel detector proved fully functional with LHC electronics. (16 refs).
id cern-410775
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 1999
record_format invenio
spelling cern-4107752019-09-30T06:29:59Zdoi:10.1016/S0168-9002(99)00586-0http://cds.cern.ch/record/410775engFriedl, MAdam, WBauer, CBerfermann, EBergonzo, PBogani, FBorchi, EBrambilla, ABruzzi, MaraColledani, CConway, JDabrowski, WDelpierre, P ADeneuville, ADulinski, Wvan Eijk, BFallou, AFizzotti, FFoulon, FGan, K KGheeraert, EGrigoriev, EHallewell, G DHall-Wilton, RHan, SHartjes, F GHrubec, JosefHusson, DKagan, HKania, D RKaplon, JKarl, CKass, RKnöpfle, K TKrammer, ManfredLo Giudice, ALü, RManfredi, P FManfredotti, CMarshall, R DMeier, DMishina, MOh, APan, L SPalmieri, V GPernegger, HPernicka, ManfredPeitz, APirollo, SPolesello, PPretzl, Klaus PRe, VRiester, J LRoe, SRoff, D GRudge, ASchnetzer, S RSciortino, SSpeziali, VStelzer, HStone, RTapper, R JTesarek, R JThomson, G BTrawick, M LTrischuk, WVittone, EWalsh, A MWedenig, RWeilhammer, PeterZiock, H JZöller, MCVD diamond detectors for ionizing radiationDetectors and Experimental TechniquesIn future HEP accelerators, such as the LHC (CERN), detectors and electronics in the vertex region of the experiments will suffer from extreme radiation. Thus radiation hardness is required for both detectors and electronics to survive in this harsh environment. CVD diamond, which is investigated by the RD42 Collaboration at CERN, can meet these requirements. Samples of up to 2*4 cm/sup 2/ have been grown and refined for better charge collection properties, which are measured with a beta source or in a test beam. A large number of diamond samples has been irradiated with hadrons to fluences of up to 5*10/sup 15/ cm/sup -2/ to study the effects of radiation. Both strip and pixel detectors were prepared in various geometries. Samples with strip metallization have been tested with both slow and fast readout electronics, and the first diamond pixel detector proved fully functional with LHC electronics. (16 refs).oai:cds.cern.ch:4107751999
spellingShingle Detectors and Experimental Techniques
Friedl, M
Adam, W
Bauer, C
Berfermann, E
Bergonzo, P
Bogani, F
Borchi, E
Brambilla, A
Bruzzi, Mara
Colledani, C
Conway, J
Dabrowski, W
Delpierre, P A
Deneuville, A
Dulinski, W
van Eijk, B
Fallou, A
Fizzotti, F
Foulon, F
Gan, K K
Gheeraert, E
Grigoriev, E
Hallewell, G D
Hall-Wilton, R
Han, S
Hartjes, F G
Hrubec, Josef
Husson, D
Kagan, H
Kania, D R
Kaplon, J
Karl, C
Kass, R
Knöpfle, K T
Krammer, Manfred
Lo Giudice, A
Lü, R
Manfredi, P F
Manfredotti, C
Marshall, R D
Meier, D
Mishina, M
Oh, A
Pan, L S
Palmieri, V G
Pernegger, H
Pernicka, Manfred
Peitz, A
Pirollo, S
Polesello, P
Pretzl, Klaus P
Re, V
Riester, J L
Roe, S
Roff, D G
Rudge, A
Schnetzer, S R
Sciortino, S
Speziali, V
Stelzer, H
Stone, R
Tapper, R J
Tesarek, R J
Thomson, G B
Trawick, M L
Trischuk, W
Vittone, E
Walsh, A M
Wedenig, R
Weilhammer, Peter
Ziock, H J
Zöller, M
CVD diamond detectors for ionizing radiation
title CVD diamond detectors for ionizing radiation
title_full CVD diamond detectors for ionizing radiation
title_fullStr CVD diamond detectors for ionizing radiation
title_full_unstemmed CVD diamond detectors for ionizing radiation
title_short CVD diamond detectors for ionizing radiation
title_sort cvd diamond detectors for ionizing radiation
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/S0168-9002(99)00586-0
http://cds.cern.ch/record/410775
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