activity
20172020
most citedPrecise Charged Particle Timing with the PICOSEC Detector

4 citations · 5 across the 2 of their papers we have counts for

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physics.ins-det2020

CACTUS: A depleted monolithic active timing sensor using a CMOS radiation hard technology

Yavuz Degerli, Fabrice Guilloux, Claude Guyot +9

The planned luminosity increase at the Large Hadron Collider in the coming years has triggered interest in the use of the particles' time of arrival as additional information in sp…

physics.ins-det2019

Timing Performance of a Micro-Channel-Plate Photomultiplier Tube

Jonathan Bortfeldt, Florian Brunbauer, Claude David +36

The spatial dependence of the timing performance of the R3809U-50 Micro-Channel-Plate PMT (MCP-PMT) by Hamamatsu was studied in high energy muon beams. Particle position informatio…

physics.ins-det20194 cited

Precise Charged Particle Timing with the PICOSEC Detector

J. Bortfeldt, F. Brunbauer, C. David +38

The experimental requirements in near future accelerators (e.g. High Luminosity-LHC) has stimulated intense interest in development of detectors with high precision timing capabili…

physics.ins-det2018

Characterization of a depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade

F. J. Iguaz, F. Balli, M. Barbero +19

This work presents a depleted monolithic active pixel sensor (DMAPS) prototype manufactured in the LFoundry 150\,nm CMOS process. DMAPS exploit high voltage and/or high resistivity…

physics.ins-det2018

Charged particle timing at sub-25 picosecond precision: the PICOSEC detection concept

F. J. Iguaz, J. Bortfeldt, F. Brunbauer +38

The PICOSEC detection concept consists in a "two-stage" Micromegas detector coupled to a Cherenkov radiator and equipped with a photocathode. A proof of concept has already been te…

physics.ins-det20171 cited

Development of depleted monolithic pixel sensors in 150 nm CMOS technology for the ATLAS Inner Tracker upgrade

Piotr Rymaszewski, Marlon Barbero, Siddharth Bhat +18

This work presents a depleted monolithic active pixel sensor (DMAPS) prototype manufactured in the LFoundry 150 nm CMOS process. The described device, named LF-Monopix, was designe…