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Beam test results of a 16 ps timing system based on ultra-fast silicon detectors

In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c momentum at CERN for the first production of 45 µm thick Ultra-Fast Silicon Detectors (UFSD). UFSD are based on the Low-Gain Avalanche Detector (LGAD) design, employing n-on-p silicon sensors with intern...

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Autores principales: Cartiglia, N., Staiano, A., Sola, V., Arcidiacono, R., Cirio, R., Cenna, F., Ferrero, M., Monaco, V., Mulargia, R., Obertino, M., Ravera, F., Sacchi, R., Bellora, A., Durando, S., Mandurrino, M., Minafra, N., Fadeyev, V., Freeman, P., Galloway, Z., Gkougkousis, E., Grabas, H., Gruey, B., Labitan, C.A., Losakul, R., Luce, Z., McKinney-Martinez, F., Sadrozinski, H. F. -W., Seiden, A., Spencer, E., Wilder, M., Woods, N., Zatserklyaniy, A., Pellegrini, G., Hidalgo, S., Carulla, M., Flores, D., Merlos, A., Quirion, D., Cindro, V., Kramberger, G., Mandic, I., Mikuz, M., Zavrtanik, M.
Formato: info:eu-repo/semantics/article
Lenguaje:eng
Publicado: Nucl. Instrum. Methods Phys. Res., A 2016
Materias:
Acceso en línea:https://dx.doi.org/10.1016/j.nima.2017.01.021
http://cds.cern.ch/record/2211956
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author Cartiglia, N.
Staiano, A.
Sola, V.
Arcidiacono, R.
Cirio, R.
Cenna, F.
Ferrero, M.
Monaco, V.
Mulargia, R.
Obertino, M.
Ravera, F.
Sacchi, R.
Bellora, A.
Durando, S.
Mandurrino, M.
Minafra, N.
Fadeyev, V.
Freeman, P.
Galloway, Z.
Gkougkousis, E.
Grabas, H.
Gruey, B.
Labitan, C.A.
Losakul, R.
Luce, Z.
McKinney-Martinez, F.
Sadrozinski, H. F. -W.
Seiden, A.
Spencer, E.
Wilder, M.
Woods, N.
Zatserklyaniy, A.
Pellegrini, G.
Hidalgo, S.
Carulla, M.
Flores, D.
Merlos, A.
Quirion, D.
Cindro, V.
Kramberger, G.
Mandic, I.
Mikuz, M.
Zavrtanik, M.
author_facet Cartiglia, N.
Staiano, A.
Sola, V.
Arcidiacono, R.
Cirio, R.
Cenna, F.
Ferrero, M.
Monaco, V.
Mulargia, R.
Obertino, M.
Ravera, F.
Sacchi, R.
Bellora, A.
Durando, S.
Mandurrino, M.
Minafra, N.
Fadeyev, V.
Freeman, P.
Galloway, Z.
Gkougkousis, E.
Grabas, H.
Gruey, B.
Labitan, C.A.
Losakul, R.
Luce, Z.
McKinney-Martinez, F.
Sadrozinski, H. F. -W.
Seiden, A.
Spencer, E.
Wilder, M.
Woods, N.
Zatserklyaniy, A.
Pellegrini, G.
Hidalgo, S.
Carulla, M.
Flores, D.
Merlos, A.
Quirion, D.
Cindro, V.
Kramberger, G.
Mandic, I.
Mikuz, M.
Zavrtanik, M.
author_sort Cartiglia, N.
collection CERN
description In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c momentum at CERN for the first production of 45 µm thick Ultra-Fast Silicon Detectors (UFSD). UFSD are based on the Low-Gain Avalanche Detector (LGAD) design, employing n-on-p silicon sensors with internal charge multiplication due to the presence of a thin, low-resistivity diffusion layer below the junction. The UFSD used in this test had a pad area of 1.7 mm 2 . The gain was measured to vary between 5 and 70 depending on the sensor bias voltage. The experimental setup included three UFSD and a fast trigger consisting of a quartz bar readout by a SiPM. The timing resolution was determined by doing Gaussian fits to the time-of-flight of the particles between one or more UFSD and the trigger counter. For a single UFSD the resolution was measured to be 34 ps for a bias voltage of 200 V, and 27 ps for a bias voltage of 230 V. For the combination of 3 UFSD the timing resolution was 20 ps for a bias voltage of 200 V, and 16 ps for a bias voltage of 230 V.
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spelling cern-22119562021-05-04T07:20:11Z doi:10.1016/j.nima.2017.01.021 doi:10.1016/j.nima.2017.01.021 http://cds.cern.ch/record/2211956 eng Cartiglia, N. Staiano, A. Sola, V. Arcidiacono, R. Cirio, R. Cenna, F. Ferrero, M. Monaco, V. Mulargia, R. Obertino, M. Ravera, F. Sacchi, R. Bellora, A. Durando, S. Mandurrino, M. Minafra, N. Fadeyev, V. Freeman, P. Galloway, Z. Gkougkousis, E. Grabas, H. Gruey, B. Labitan, C.A. Losakul, R. Luce, Z. McKinney-Martinez, F. Sadrozinski, H. F. -W. Seiden, A. Spencer, E. Wilder, M. Woods, N. Zatserklyaniy, A. Pellegrini, G. Hidalgo, S. Carulla, M. Flores, D. Merlos, A. Quirion, D. Cindro, V. Kramberger, G. Mandic, I. Mikuz, M. Zavrtanik, M. Beam test results of a 16 ps timing system based on ultra-fast silicon detectors hep-ex Particle Physics - Experiment physics.ins-det Detectors and Experimental Techniques 7: Advanced hybrid pixel detectors In this paper we report on the timing resolution obtained in a beam test with pions of 180 GeV/c momentum at CERN for the first production of 45 µm thick Ultra-Fast Silicon Detectors (UFSD). UFSD are based on the Low-Gain Avalanche Detector (LGAD) design, employing n-on-p silicon sensors with internal charge multiplication due to the presence of a thin, low-resistivity diffusion layer below the junction. The UFSD used in this test had a pad area of 1.7 mm 2 . The gain was measured to vary between 5 and 70 depending on the sensor bias voltage. The experimental setup included three UFSD and a fast trigger consisting of a quartz bar readout by a SiPM. The timing resolution was determined by doing Gaussian fits to the time-of-flight of the particles between one or more UFSD and the trigger counter. For a single UFSD the resolution was measured to be 34 ps for a bias voltage of 200 V, and 27 ps for a bias voltage of 230 V. For the combination of 3 UFSD the timing resolution was 20 ps for a bias voltage of 200 V, and 16 ps for a bias voltage of 230 V. In this paper we report on the timing resolution of the first production of 50 micro-meter thick Ultra-Fast Silicon Detectors (UFSD) as obtained in a beam test with pions of 180 GeV/c momentum. UFSD are based on the Low-Gain Avalanche Detectors (LGAD) design, employing n-on-p silicon sensors with internal charge multiplication due to the presence of a thin, low-resistivity diffusion layer below the junction. The UFSD used in this test belongs to the first production of thin (50 {\mu}m) sensors, with an pad area of 1.4 mm2. The gain was measured to vary between 5 and 70 depending on the bias voltage. The experimental setup included three UFSD and a fast trigger consisting of a quartz bar readout by a SiPM. The timing resolution, determined comparing the time of arrival of the particle in one or more UFSD and the trigger counter, for single UFSD was measured to be 35 ps for a bias voltage of 200 V, and 26 ps for a bias voltage of 240 V, and for the combination of 3 UFSD to be 20 ps for a bias voltage of 200 V, and 15 ps for a bias voltage of 240 V. info:eu-repo/grantAgreement/EC/FP7/654168 info:eu-repo/semantics/openAccess Education Level info:eu-repo/semantics/article http://cds.cern.ch/record/2211956 Nucl. Instrum. Methods Phys. Res., A Nucl. Instrum. Methods Phys. Res., A, (2017) pp. 83-88 2016-08-30
spellingShingle hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
7: Advanced hybrid pixel detectors
Cartiglia, N.
Staiano, A.
Sola, V.
Arcidiacono, R.
Cirio, R.
Cenna, F.
Ferrero, M.
Monaco, V.
Mulargia, R.
Obertino, M.
Ravera, F.
Sacchi, R.
Bellora, A.
Durando, S.
Mandurrino, M.
Minafra, N.
Fadeyev, V.
Freeman, P.
Galloway, Z.
Gkougkousis, E.
Grabas, H.
Gruey, B.
Labitan, C.A.
Losakul, R.
Luce, Z.
McKinney-Martinez, F.
Sadrozinski, H. F. -W.
Seiden, A.
Spencer, E.
Wilder, M.
Woods, N.
Zatserklyaniy, A.
Pellegrini, G.
Hidalgo, S.
Carulla, M.
Flores, D.
Merlos, A.
Quirion, D.
Cindro, V.
Kramberger, G.
Mandic, I.
Mikuz, M.
Zavrtanik, M.
Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title_full Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title_fullStr Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title_full_unstemmed Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title_short Beam test results of a 16 ps timing system based on ultra-fast silicon detectors
title_sort beam test results of a 16 ps timing system based on ultra-fast silicon detectors
topic hep-ex
Particle Physics - Experiment
physics.ins-det
Detectors and Experimental Techniques
7: Advanced hybrid pixel detectors
url https://dx.doi.org/10.1016/j.nima.2017.01.021
https://dx.doi.org/10.1016/j.nima.2017.01.021
http://cds.cern.ch/record/2211956
http://cds.cern.ch/record/2211956
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