activity
20162019
collaborators

5 papers

physics.ins-det2019

Inverse Low Gain Avalanche Detectors (iLGADs) for precise tracking and timing applications

E. Currás, M. Carulla, M. Centis Vignali +13

Low Gain Avalanche Detector (LGAD) is the baseline sensing technology of the recently proposed Minimum Ionizing Particle (MIP) end-cap timing detectors (MTD) at the Atlas and CMS e…

physics.ins-det2019

Results on Proton-Irradiated 3D Pixel Sensors Interconnected to RD53A Readout ASIC

Jordi Duarte-Campderros, Esteban Curras, Marcos Fernandez +19

Test beam results obtained with 3D pixel sensors bump-bonded to the RD53A prototype readout ASIC are reported. Sensors from FBK (Italy) and IMB-CNM (Spain) have been tested before…

physics.ins-det2017

Radiation Hardness of Thin Low Gain Avalanche Detectors

G. Kramberger, M. Carulla, E. Cavallaro +18

Low Gain Avalanche Detectors (LGAD) are based on a n++-p+-p-p++ structure where an appropriate doping of the multiplication layer (p+) leads to high enough electric fields for impa…

physics.ins-det2017

Gain and time resolution of 45 m thin Low Gain Avalanche Detectors before and after irradiation up to a fluence of n/cm

J. Lange, M. Carulla, E. Cavallaro +14

Low Gain Avalanche Detectors (LGADs) are silicon sensors with a built-in charge multiplication layer providing a gain of typically 10 to 50. Due to the combination of high signal-t…

physics.ins-det2016

Beam test results of a 16 ps timing system based on ultra-fast silicon detectors

N. Cartiglia, A. Staiano, V. Sola +40

In this paper we report on the timing resolution of the first production of 50 micro-meter thick Ultra-Fast Silicon Detectors (UFSD) as obtained in a beam test with pions of 180 Ge…