13 citations · 20 across the 18 of their papers we have counts for
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Timing performance of large prototype based on $\upmu$RWELL- PICOSEC detector technology with active area
A. Pandey, K. Gnanvo, B. Kross +60
The $\upmu$RWELL-PICOSEC detector, which combines a $\upmu$RWELL gaseous amplification structure with a Cherenkov radiator and photocathode, is a novel approach to acheive fast and…
Advances in photocathode development for PICOSEC Micromegas precise-timing detectors
M. Lisowska, F. Guerra, A. Gurpinar +46
The PICOSEC Micromegas detector is a~precise-timing gaseous detector that combines a Cherenkov radiator, a~semi-transparent photocathode and a Micromegas amplification stage, targe…
Spatial resolution improvement of PICOSEC Micromegas precise timing detectors
F. M. Brunbauer, R. Aleksan, Y. Angelis +47
The combination of a Cherenkov radiator with a semi-transparent photocathode and a Micromegas based amplification stage allows PICOSEC Micromegas detectors to achieve a time resolu…
Design, simulation and performance of the resistive-anode PICOSEC Micromegas detector
Djunes Janssens, Antonija Utrobicic, Marinko Kovacic +52
The PICOSEC Micromegas detector is a Micro-Pattern Gaseous Detector concept developed to achieve tens of picosecond timing resolution for charged particle detection by combining a…
μRWELL-PICOSEC: Precision Timing with Resistive Micro-Well Detector
Kondo Gnanvo
The PICOSEC detector concept uses a micro-pattern gaseous detector (MPGD) amplification structure combined with a Cerenkov radiator coated with a semi-transparent photocathode to p…
Performance Optimization and Characterization of 7-pad Resistive PICOSEC Micromegas Detectors
A. Kallitsopoulou, R. Aleksan, S. Aune +49
We present a comprehensive characterization of resistive PICOSEC Micromegas detector prototypes, tested under identical conditions, constant drift gap, field configurations, and ph…