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20182024
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physics.ins-det2024

Evidence of Charge Multiplication in Thin Pitch 3D Silicon Sensors

Andrew Gentry, Maurizio Boscardin, Martin Hoeferkamp +4

Characterization measurements of pitch 3D silicon sensors are performed, for devices with active thickness of m. Evidence of charge mu…

physics.ins-det2021

Accurate modelling of 3D-trench silicon sensor with enhanced timing performance and comparison with test beam measurements

Davide Brundu, Alessandro Cardini, Andrea Contu +9

This paper presents the detailed simulation of a double-pixel structure for charged particle detection based on the 3D-trench silicon sensor developed for the TIMESPOT project and…

physics.ins-det2021

Fully Depleted Monolithic Active Microstrip Sensors: TCAD simulation study of an innovative design concept

Lorenzo De Cilladi, Thomas Corradino, Gian-Franco Dalla Betta +2

The paper presents the simulation studies of 10 m pitch microstrips on a fully depleted monolithic active CMOS technology and describes their potential to provide a new and cost…

physics.ins-det2020

Intrinsic time resolution of 3D-trench silicon pixels for charged particle detection

Lucio Anderlini, Mauro Aresti, Andrea Bizzeti +17

In the last years, high-resolution time tagging has emerged as the tool to tackle the problem of high-track density in the detectors of the next generation of experiments at partic…

physics.ins-det2020

High performance picosecond- and micron-level 4D particle tracking with 100% fill-factor Resistive AC-Coupled Silicon Detectors (RSD)

M. Mandurrino, N. Cartiglia, M. Tornago +7

In this paper we present a complete characterization of the first batch of Resistive AC-Coupled Silicon Detectors, called RSD1, designed at INFN Torino and manufactured by Fondazio…

physics.ins-det2019

First demonstration of 200, 100, and 50 um pitch Resistive AC-Coupled Silicon Detectors (RSD) with 100% fill-factor for 4D particle tracking

M. Mandurrino, R. Arcidiacono, M. Boscardin +8

We designed, produced, and tested RSD (Resistive AC-Coupled Silicon Detectors) devices, an evolution of the standard LGAD (Low-Gain Avalanche Diode) technology where a resistive n-…