4 papers
Why (and How) LGADs Work: Ionization, Space Charge, and Gain Saturation
N. Cartiglia, A. R. Altamura, R. Arcidiacono +10
The temporal resolution of Low-Gain Avalanche Detectors (LGADs), also known as Ultra-Fast Silicon Detectors (UFSDs), is governed by two contributions: jitter, arising from electron…
A two-prong Approach to the Simulation of DC-RSD: TCAD and Spice
T. Croci, L. Menzio, R. Arcidiacono +12
The DC-coupled Resistive Silicon Detectors (DCRSD) are the evolution of the AC-coupled RSD (RSD) design, both based on the Low-Gain Avalanche Diode (LGAD) technology. The DC-RSD de…
Measurements and TCAD simulations of innovative RSD and DC-RSD LGAD devices for future 4D tracking
F. Moscatelli, A. Fondacci, R. Arcidiacono +15
This paper summarizes the beam test results obtained with a Resistive Silicon Detector (RSD) (also called AC-Low Gain Avalanche Diode, AC-LGAD) pixel array tested at the DESY beam…
Innovative DC-coupled Resistive Silicon Detector for 4D tracking
R. Arcidiacono, G. Bardelli, M. Bartolini +18
In the past 10 years, two design innovations, the introduction of low internal gain (LGAD) and of resistive read-out (RSD), have radically changed the performance of silicon detect…