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Tracking in 4 dimensions

In this contribution we review the progress towards the development of a novel type of silicon detectors suited for tracking with a picosecond timing resolution, the so called Ultra-Fast Silicon Detectors. The goal is to create a new family of particle detectors merging excellent position and timing...

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Autores principales: Cartiglia, N., Arcidiacono, R., Boscardin, M., Dalla Betta, G. F., Ferrero, M., Ficorella, F., Mandurrino, M., Pancheri, L., Paternoster, G., Sadrozinski, H., Seiden, A., Staiano, A., Sola, V.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: PoS 2017
Materias:
Acceso en línea:https://dx.doi.org/10.22323/1.314.0489
http://cds.cern.ch/record/2667263
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author Cartiglia, N.
Arcidiacono, R.
Boscardin, M.
Dalla Betta, G. F.
Ferrero, M.
Ficorella, F.
Mandurrino, M.
Pancheri, L.
Paternoster, G.
Sadrozinski, H.
Seiden, A.
Staiano, A.
Sola, V.
author_facet Cartiglia, N.
Arcidiacono, R.
Boscardin, M.
Dalla Betta, G. F.
Ferrero, M.
Ficorella, F.
Mandurrino, M.
Pancheri, L.
Paternoster, G.
Sadrozinski, H.
Seiden, A.
Staiano, A.
Sola, V.
author_sort Cartiglia, N.
collection CERN
description In this contribution we review the progress towards the development of a novel type of silicon detectors suited for tracking with a picosecond timing resolution, the so called Ultra-Fast Silicon Detectors. The goal is to create a new family of particle detectors merging excellent position and timing resolution with GHz counting capabilities, very low material budget, radiation resistance, fine granularity, low power, insensitivity to magnetic field, and affordability. We aim to achieve concurrent precisions of ~ 10 ps and ~ 10 μm with a 50 μm thick sensor. The first part of this contribution explains the basic concepts of low-gain silicon sensors, while in the following the main results are presented, together with the efforts to make the design radiation resistance.
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spelling cern-26672632022-10-21T11:54:23Z doi:10.22323/1.314.0489 http://cds.cern.ch/record/2667263 eng Cartiglia, N. Arcidiacono, R. Boscardin, M. Dalla Betta, G. F. Ferrero, M. Ficorella, F. Mandurrino, M. Pancheri, L. Paternoster, G. Sadrozinski, H. Seiden, A. Staiano, A. Sola, V. Tracking in 4 dimensions Detectors and Experimental Techniques 7: Advanced hybrid pixel detectors In this contribution we review the progress towards the development of a novel type of silicon detectors suited for tracking with a picosecond timing resolution, the so called Ultra-Fast Silicon Detectors. The goal is to create a new family of particle detectors merging excellent position and timing resolution with GHz counting capabilities, very low material budget, radiation resistance, fine granularity, low power, insensitivity to magnetic field, and affordability. We aim to achieve concurrent precisions of ~ 10 ps and ~ 10 μm with a 50 μm thick sensor. The first part of this contribution explains the basic concepts of low-gain silicon sensors, while in the following the main results are presented, together with the efforts to make the design radiation resistance. info:eu-repo/grantAgreement/EC/FP7/654168 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2667263 PoS PoS, (2017) pp. 489 2017
spellingShingle Detectors and Experimental Techniques
7: Advanced hybrid pixel detectors
Cartiglia, N.
Arcidiacono, R.
Boscardin, M.
Dalla Betta, G. F.
Ferrero, M.
Ficorella, F.
Mandurrino, M.
Pancheri, L.
Paternoster, G.
Sadrozinski, H.
Seiden, A.
Staiano, A.
Sola, V.
Tracking in 4 dimensions
title Tracking in 4 dimensions
title_full Tracking in 4 dimensions
title_fullStr Tracking in 4 dimensions
title_full_unstemmed Tracking in 4 dimensions
title_short Tracking in 4 dimensions
title_sort tracking in 4 dimensions
topic Detectors and Experimental Techniques
7: Advanced hybrid pixel detectors
url https://dx.doi.org/10.22323/1.314.0489
http://cds.cern.ch/record/2667263
http://cds.cern.ch/record/2667263
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