Roberto Mendicino
University of Trento
67 Papers
212 Citations
Roberto Mendicino is an academic researcher from University of Trento. The author has contributed to research in topics: Pixel & Neutron detection. The author has an hindex of 10, co-authored 60 publications.
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Papers
Development of a new generation of 3D pixel sensors for HL-LHC
G.-F. Dalla Betta,Maurizio Boscardin,Giovanni Darbo,Roberto Mendicino,M. Meschini,Alberto Messineo,Sabina Ronchin,Dms Sultan,Nicola Zorzi +8 more
TL;DR: In this paper, the main technological and design aspects relevant to the development of a new generation of thin 3D pixel sensors with small pixel size aimed at the High-Luminosity LHC upgrades are discussed.
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First results of the TIMESPOT project on developments on fast sensors for future vertex detectors
A. Lai,Lucio Anderlini,Mauro Aresti,Andrea Bizzeti,Alessandro Cardini,G.-F. Dalla Betta,Giulio Tiziano Forcolin,Michela Garau,Andrea Lampis,A. Loi,Chiara Lucarelli,Roberto Mendicino,R. Mulargia,Maria Margherita Obertino,E. Robutti,Stefania Vecchi +15 more
TL;DR: In this paper, the TIMESPOT project aims at the construction of a mini-tracker demonstrator implementing both high space and time resolutions at the single pixel level, and the first batch of 3D silicon sensors containing several test structures based on different geometries of the electrodes, has been delivered in June 2019 and has been tested against its timing performance both under laser and minimum ionizing particle beams.
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Intrinsic time resolution of 3D-trench silicon pixels for charged particle detection
Lucio Anderlini,Mauro Aresti,Andrea Bizzeti,Maurizio Boscardin,Alessandro Cardini,Gian-Franco Dalla Betta,Marco Ferrero,G. Forcolin,Michela Garau,Adriano Lai,Andrea Lampis,A. Loi,Chiara Lucarelli,Roberto Mendicino,R. Mulargia,M. M. Obertino,Enrico Robutti,Sabina Ronchin,M. Ruspa,Stefania Vecchi +19 more
TL;DR: The results obtained on the first batch of TIMESPOT silicon sensors, based on a novel 3D MEMS (micro electro-mechanical systems) design, are described, showing the performance of other ongoing silicon sensor developments has been matched and overcome, while using a technology known to be robust against radiation degradation.
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Combined Bulk and Surface Radiation Damage Effects at Very High Fluences in Silicon Detectors: Measurements and TCAD Simulations
Francesco Moscatelli,Daniele Passeri,Arianna Morozzi,Roberto Mendicino,G.-F. Dalla Betta,Gian Mario Bilei +5 more
TL;DR: In this paper, a combined TCAD radiation damage modeling scheme, featuring both bulk and surface radiation damage effects, was proposed for the analysis of silicon detectors aimed at the High Luminosity LHC.
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3D trenched-electrode sensors for charged particle tracking and timing
Roberto Mendicino,Giulio Tiziano Forcolin,Maurizio Boscardin,Francesco Ficorella,A. Lai,A. Loi,Sabina Ronchin,Stefania Vecchi,Gian-Franco Dalla Betta +8 more
TL;DR: The main design and fabrication issues and selected results from TCAD simulations are reported and the trenched electrodes are used instead of columns, so as to achieve more uniform electric and weighting field profiles.
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