activity
20242026
collaborators

8 papers

physics.ins-det2026

A Hydrogenated Amorphous Silicon Photodiode indirect flexible device for radiation flux measurements at low intensities

Mauro Menichelli, Aishah Bashiri, Marco Bizzarri +46

The objective of the Photo-HASPIDE experiment is the construction and test of an indirect a-Si:H (Hydrogenated Amorphous Silicon) photo-detector plus scintillator device on a flexi…

physics.ins-det2026

Measurements and simulations of X-ray radiation damage effects on CNM n-type 4H-SiC MOS capacitors

Khaoula Aouadj, Alessandro Fondacci, Arianna Morozzi +7

Silicon carbide is a promising material for radiation-hard detectors due to its wide bandgap, low leakage current, high critical electric field, and high saturation velocity. A key…

physics.ins-det2026

Timing resolution from beam tests on thin LGADs down to 16.6 ps

Robert Stephen White, Marco Ferrero, Valentina Sola +14

The paper reports on the timing resolution achieved with Low-Gain Avalanche Diodes (LGADs), optimised for extreme-fluence conditions, at the DESY Test Beam Facility using 4~GeV/c e…

hep-ex2025

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…

physics.ins-det2025

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…

physics.ins-det2025

Compensated LGAD optimisation through van der Pauw test structures

Alessandro Fondacci, Tommaso Croci, Daniele Passeri +11

A new gain implant design has recently been introduced to enhance the radiation resistance of low-gain avalanche diodes (LGADs) to the extreme fluences anticipated in future hadron…