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Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector

Pixel detectors with cylindrical electrodes that penetrate the silicon substrate (so called 3D detectors) offer advantages over standard planar sensors in terms of radiation hardness, since the electrode distance is decoupled from the bulk thickness. In recent years significant progress has been mad...

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Autores principales: Grinstein, S., Baselga, M., Boscardin, M., Christophersen, M., Da Via, C., Dalla Betta, G.-F., Darbo, G., Fadeyev, V., Fleta, C., Gemme, C., Grenier, P., Jimenez, A., Lopez, I., Micelli, A., Nelist, C., Parker, S., Pellegrini, G., Phlips, B., Pohl, D.-L., Sadrozinski, H.F.-W., Sicho, P., Tsiskaridze, S.
Lenguaje:eng
Publicado: 2013
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2013.03.064
http://cds.cern.ch/record/1518872
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author Grinstein, S.
Baselga, M.
Boscardin, M.
Christophersen, M.
Da Via, C.
Dalla Betta, G.-F.
Darbo, G.
Fadeyev, V.
Fleta, C.
Gemme, C.
Grenier, P.
Jimenez, A.
Lopez, I.
Micelli, A.
Nelist, C.
Parker, S.
Pellegrini, G.
Phlips, B.
Pohl, D.-L.
Sadrozinski, H.F.-W.
Sicho, P.
Tsiskaridze, S.
author_facet Grinstein, S.
Baselga, M.
Boscardin, M.
Christophersen, M.
Da Via, C.
Dalla Betta, G.-F.
Darbo, G.
Fadeyev, V.
Fleta, C.
Gemme, C.
Grenier, P.
Jimenez, A.
Lopez, I.
Micelli, A.
Nelist, C.
Parker, S.
Pellegrini, G.
Phlips, B.
Pohl, D.-L.
Sadrozinski, H.F.-W.
Sicho, P.
Tsiskaridze, S.
author_sort Grinstein, S.
collection CERN
description Pixel detectors with cylindrical electrodes that penetrate the silicon substrate (so called 3D detectors) offer advantages over standard planar sensors in terms of radiation hardness, since the electrode distance is decoupled from the bulk thickness. In recent years significant progress has been made in the development of 3D sensors, which culminated in the sensor production for the ATLAS Insertable B-Layer (IBL) upgrade carried out at CNM (Barcelona, Spain) and FBK (Trento, Italy). Based on this success, the ATLAS Forward Physics (AFP) experiment has selected the 3D pixel sensor technology for the tracking detector. The AFP project presents a new challenge due to the need for a reduced dead area with respect to IBL, and the in-homogeneous nature of the radiation dose distribution in the sensor. Electrical characterization of the first AFP prototypes and beam test studies of 3D pixel devices irradiated non-uniformly are presented in this paper.
id cern-1518872
institution Organización Europea para la Investigación Nuclear
language eng
publishDate 2013
record_format invenio
spelling cern-15188722023-06-29T04:02:41Zdoi:10.1016/j.nima.2013.03.064http://cds.cern.ch/record/1518872engGrinstein, S.Baselga, M.Boscardin, M.Christophersen, M.Da Via, C.Dalla Betta, G.-F.Darbo, G.Fadeyev, V.Fleta, C.Gemme, C.Grenier, P.Jimenez, A.Lopez, I.Micelli, A.Nelist, C.Parker, S.Pellegrini, G.Phlips, B.Pohl, D.-L.Sadrozinski, H.F.-W.Sicho, P.Tsiskaridze, S.Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics DetectorDetectors and Experimental TechniquesPixel detectors with cylindrical electrodes that penetrate the silicon substrate (so called 3D detectors) offer advantages over standard planar sensors in terms of radiation hardness, since the electrode distance is decoupled from the bulk thickness. In recent years significant progress has been made in the development of 3D sensors, which culminated in the sensor production for the ATLAS Insertable B-Layer (IBL) upgrade carried out at CNM (Barcelona, Spain) and FBK (Trento, Italy). Based on this success, the ATLAS Forward Physics (AFP) experiment has selected the 3D pixel sensor technology for the tracking detector. The AFP project presents a new challenge due to the need for a reduced dead area with respect to IBL, and the in-homogeneous nature of the radiation dose distribution in the sensor. Electrical characterization of the first AFP prototypes and beam test studies of 3D pixel devices irradiated non-uniformly are presented in this paper.Pixel detectors with cylindrical electrodes that penetrate the silicon substrate (so called 3D detectors) offer advantages over standard planar sensors in terms of radiation hardness, since the electrode distance is decoupled from the bulk thickness. In recent years significant progress has been made in the development of 3D sensors, which culminated in the sensor production for the ATLAS Insertable B-Layer (IBL) upgrade carried out at CNM (Barcelona, Spain) and FBK (Trento, Italy). Based on this success, the ATLAS Forward Physics (AFP) experiment has selected the 3D pixel sensor technology for the tracking detector. The AFP project presents a new challenge due to the need for a reduced dead area with respect to IBL, and the in-homogeneous nature of the radiation dose distribution in the sensor. Electrical characterization of the first AFP prototypes and beam test studies of 3D pixel devices irradiated non-uniformly are presented in this paper.arXiv:1302.5292oai:cds.cern.ch:15188722013-02-22
spellingShingle Detectors and Experimental Techniques
Grinstein, S.
Baselga, M.
Boscardin, M.
Christophersen, M.
Da Via, C.
Dalla Betta, G.-F.
Darbo, G.
Fadeyev, V.
Fleta, C.
Gemme, C.
Grenier, P.
Jimenez, A.
Lopez, I.
Micelli, A.
Nelist, C.
Parker, S.
Pellegrini, G.
Phlips, B.
Pohl, D.-L.
Sadrozinski, H.F.-W.
Sicho, P.
Tsiskaridze, S.
Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title_full Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title_fullStr Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title_full_unstemmed Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title_short Beam Test Studies of 3D Pixel Sensors Irradiated Non-Uniformly for the ATLAS Forward Physics Detector
title_sort beam test studies of 3d pixel sensors irradiated non-uniformly for the atlas forward physics detector
topic Detectors and Experimental Techniques
url https://dx.doi.org/10.1016/j.nima.2013.03.064
http://cds.cern.ch/record/1518872
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