Zobrazeno 1 - 10
of 126
pro vyhledávání: '"M. Mandurrino"'
Autor:
F. Carnesecchi, S. Strazzi, A. Alici, R. Arcidiacono, G. Borghi, M. Boscardin, N. Cartiglia, M. Centis Vignali, D. Cavazza, G. -F. Dalla Betta, S. Durando, M. Ferrero, F. Ficorella, O. Hammad Ali, M. Mandurrino, A. Margotti, L. Menzio, R. Nania, L. Pancheri, G. Paternoster, G. Scioli, F. Siviero, V. Sola, M. Tornago, G. Vignola
Publikováno v:
The European Physical Journal Plus. 138
This paper presents the measurements on first very thin Ultra-Fast Silicon Detectors (UFSDs) produced by Fondazione Bruno Kessler; the data have been collected in a beam test setup at the CERN PS, using beam with a momentum of 12 GeV/c. UFSDs with a
Silicon sensors with resistive read-out: Machine Learning techniques for ultimate spatial resolution
Autor:
M. Tornago, F. Giobergia, L. Menzio, F. Siviero, R. Arcidiacono, N. Cartiglia, M. Costa, M. Ferrero, G. Gioachin, M. Mandurrino, V. Sola
Resistive AC-coupled Silicon Detectors (RSDs) are based on the Low Gain Avalanche Diode (LGAD) technology, characterized by a continuous gain layer, and by the innovative introduction of resistive read-out. Thanks to a novel electrode design aimed at
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::04064b31b2115d801912faf7c4954c0e
http://arxiv.org/abs/2208.08294
http://arxiv.org/abs/2208.08294
Akademický článek
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Autor:
N. Cartiglia, R. Arcidiacono, M. Costa, M. Ferrero, G. Gioachin, M. Mandurrino, L. Menzio, F. Siviero, V. Sola, M. Tornago
The past ten years have seen the advent of silicon-based precise timing detectors for charged particle tracking. The underlying reason for this evolution is a design innovation: the Low-Gain Avalanche Diode (LGAD). In its simplicity, the LGAD design
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::2e8a2a63a7281648114f61c55951240c
http://arxiv.org/abs/2204.06536
http://arxiv.org/abs/2204.06536
Autor:
L. Menzio, R. Arcidiacono, G. Borghi, M. Boscardin, N. Cartiglia, M. Centis Vignali, M. Costa, G-F. Dalla Betta, M. Ferrero, F. Ficorella, G. Gioachin, M. Mandurrino, L. Pancheri, G. Paternoster, F. Siviero, V. Sola, M. Tornago
In this work, we introduce a new design concept: the DC-Coupled Resistive Silicon Detectors, based on the LGAD technology. This new approach intends to address a few known features of the first generation of AC-Coupled Resistive Silicon Detectors (RS
Externí odkaz:
https://explore.openaire.eu/search/publication?articleId=doi_dedup___::bee73bddcaa2fa85a202a3687a4fabf9
Autor:
T. Croci, A. Morozzi, P. Asenov, A. Fondacci, F. Moscatelli, D. Passeri, V. Sola, L. Menzio, M. Ferrero, M. Mandurrino, R. Arcidiacono, N. Cartiglia, R. Mulargia, E. Robutti, O.A. Marti Villarreal, R. Cirio, R. Sacchi, A. Staiano, V. Monaco, M. Arneodo
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1047:167815
Autor:
S. M. Mazza, E. Ryan, S. Hyslop, C. Gee, R. Padilla, Y. Zhao, F. McKinney-Martinez, M. Nizam, J. Ott, H. F.-W. Sadrozinski, A. Seiden, B. Schumm, R. Arcidiacono, N. Cartiglia, M. Ferrero, M. Mandurrino, V. Sola, M. Boscardin, G. Borghi, G. Paternoster, F. Ficorella, M. Centis Vignali, G.F. Dalla Betta, L. Pancheri, A. Tricoli, G. Giacomini, G. d'Amen, W. Chen, S. Robinson
Publikováno v:
2021 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC).
Autor:
A. Martinez Rojas, M. Ferrero, N. Cartiglia, R. Arcidiacono, F. Siviera, L. Menzio, M. Tornago, V. Sola, F. Fausti, J. Olave, M. Mandurrino
Publikováno v:
2021 IEEE Nuclear Science Symposium and Medical Imaging Conference (NSS/MIC).
Autor:
F. Siviero, F. Giobergia, L. Menzio, F. Miserocchi, M. Tornago, R. Arcidiacono, N. Cartiglia, M. Costa, M. Ferrero, G. Gioachin, M. Mandurrino, V. Sola
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1041:167313
Resistive Silicon Detectors (RSD, also known as AC-LGAD) are innovative silicon sensors, based on the LGAD technology, characterized by a continuous gain layer that spreads across the whole sensor active area. RSDs are very promising tracking detecto
Autor:
V. Sola, R. Arcidiacono, P. Asenov, G. Borghi, M. Boscardin, N. Cartiglia, M. Centis Vignali, T. Croci, M. Ferrero, A. Fondacci, G. Gioachin, S. Giordanengo, L. Lantieri, M. Mandurrino, L. Menzio, V. Monaco, A. Morozzi, F. Moscatelli, D. Passeri, N. Pastrone, G. Paternoster, F. Siviero, A. Staiano, M. Tornago
Publikováno v:
Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment. 1040:167232
In this contribution, we present an innovative design of the Low-Gain Avalanche Diode (LGAD) gain layer, the p$^+$ implant responsible for the local and controlled signal multiplication. In the standard LGAD design, the gain layer is obtained by impl