Performances and ageing study of resistive-anodes Micromegas detectors for HL-LHC environment
F. Jeanneau, T. Alexopoulos, D. Atti\'e, M. Boyer, J. Derr\'e, G., Fanourakis, E. Ferrer-Ribas, J. Gal\'an, E. Gazis, T. Geralis, A. Giganon, I., Giomataris, S. Herlant, J. Manjarr\'es, E. Ntomari, Ph. Schune, M. Titov, G., Tsipolitis

TL;DR
This study evaluates resistive-anode Micromegas detectors for HL-LHC, demonstrating their high efficiency, good spatial resolution, and resistance to ageing and sparks in high-radiation environments.
Contribution
It introduces resistive-anode Micromegas prototypes with improved spark suppression and confirms their suitability for HL-LHC upgrades.
Findings
Achieved ~80 μm spatial resolution.
High efficiency (>98%) maintained.
No ageing effects after 21 days irradiation.
Abstract
With the tenfold luminosity increase envisaged at the HL-LHC, the background (photons, neutrons, ...) and the event pile-up probability are expected to increase in proportion in the different experiments, especially in the forward regions like, for instance, the muons chambers of the ATLAS detector. Detectors based on the Micromegas principle should be good alternatives for the detector upgrade in the HL-LHC framework because of a good spatial (<100 \mum) and time (few ns) resolutions, high-rate capability, radiation hardness, good robustness and the possibility to build large areas. The aim of this study is to demonstrate that it is possible to reduce the discharge probability and protect the electronics by using a resistive anode plane in a high flux hadrons environment. Several prototypes of 10x10 cm2, with different pitches (0.5 to 2 mm) and different resistive layers have been…
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