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 maximizing signal sharing, RSD2, the second RSD production by Fondazione Bruno Kessler (FBK), achieves a position resolution on the whole pixel surface of about 8 for 200- pitch. RSD2 arrays have been tested using a Transient Current Technique setup equipped with a 16-channel digitizer, and results on spatial resolution have been obtained with machine learning algorithms.
Silicon sensors with resistive read-out: Machine Learning techniques for ultimate spatial resolution / Tornago, Marta; Giobergia, Flavio; Menzio, Luca; Siviero, Federico; Arcidiacono, Roberta; Cartiglia, Nicolo'; Costa, M; Ferrero, M; Gioachin, G; Mandurrino, M; Sola, V. - In: NUCLEAR INSTRUMENTS AND METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT. - ISSN 1872-9576. - 1047:(2023). [10.1016/j.nima.2022.167816]
Silicon sensors with resistive read-out: Machine Learning techniques for ultimate spatial resolution
giobergia, flavio;
2023
Abstract
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 maximizing signal sharing, RSD2, the second RSD production by Fondazione Bruno Kessler (FBK), achieves a position resolution on the whole pixel surface of about 8 for 200- pitch. RSD2 arrays have been tested using a Transient Current Technique setup equipped with a 16-channel digitizer, and results on spatial resolution have been obtained with machine learning algorithms.File | Dimensione | Formato | |
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https://hdl.handle.net/11583/2974203