19 citations · 20 across the 3 of their papers we have counts for
14 papers
High-Precision 4D Tracking with Large Pixels using Thin Resistive Silicon Detectors
R. Arcidiacono, G. Borghi, M. Boscardin +19
The basic principle of operation of silicon sensors with resistive read-out is built-in charge sharing. Resistive Silicon Detectors (RSD, also known as AC-LGAD), exploiting the sig…
Combined analysis of HPK 3.1 LGADs using a proton beam, beta source, and probe station towards establishing high volume quality control
Ryan Heller, Andrés Abreu, Artur Apresyan +14
The upgrades of the CMS and ATLAS experiments for the high luminosity phase of the Large Hadron Collider will employ precision timing detectors based on Low Gain Avalanche Detector…
Test beam characterization of sensor prototypes for the CMS Barrel MIP Timing Detector
R. Abbott, A. Abreu, F. Addesa +196
The MIP Timing Detector will provide additional timing capabilities for detection of minimum ionizing particles (MIPs) at CMS during the High Luminosity LHC era, improving event re…
First application of machine learning algorithms to the position reconstruction in Resistive Silicon Detectors
Federico Siviero, Roberta Arcidiacono, Nicolò Cartiglia +6
RSDs (Resistive AC-Coupled Silicon Detectors) are n-in-p silicon sensors based on the LGAD (Low-Gain Avalanche Diode) technology, featuring a continuous gain layer over the whole s…
Potential for Improved Time Resolution Using Very Thin Ultra-Fast Silicon Detectors (UFSDs)
A. Seiden, H. Ren, Y. Jin +14
Ultra-Fast Silicon Detectors (UFSDs) are n-in-p silicon detectors that implement moderate gain (typically 5 to 25) using a thin highly doped p++ layer between the high resistivity…
Effect of deep gain layer and Carbon infusion on LGAD radiation hardness
R Padilla, C. Labitan, Z. Galloway +22
The properties of 50 um thick Low Gain Avalanche Diode (LGAD) detectors manufactured by Hamamatsu photonics (HPK) and Fondazione Bruno Kessler (FBK) were tested before and after ir…