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Photocathode characterisation for robust PICOSEC Micromegas precise-timing detectors

Articolo
Data di Pubblicazione:
2025
Abstract:
The PICOSEC Micromegas detector is a precise-timing gaseous detector based on a Cherenkov radiator coupled with a semi-transparent photocathode and a Micromegas amplifying structure, targeting a time resolution of tens of picoseconds for minimum ionising particles. Initial single-pad prototypes have demonstrated a time resolution below σ = 25 ps, prompting ongoing developments to adapt the concept for High Energy Physics applications, where sub-nanosecond precision is essential for event separation, improved track reconstruction and particle identification. The achieved performance is being transferred to robust multi-channel detector modules suitable for large-area detection systems requiring excellent timing precision. To enhance the robustness and stability of the PICOSEC Micromegas detector, research on robust carbon-based photocathodes, including Diamond-Like Carbon (DLC) and Boron Carbide (B4C), is pursued. Results from prototypes equipped with DLC and B4C photocathodes exhibited a time resolution of σ ≈ 32 ps and σ ≈ 34.5 ps, respectively. Efforts dedicated to improve detector robustness and stability enhance the feasibility of the PICOSEC Micromegas concept for large experiments, ensuring sustained performance while maintaining excellent timing precision.
Tipologia CRIS:
1.1 Articolo in rivista
Elenco autori:
Lisowska, M.; Aleksan, R.; Angelis, Y.; Aune, S.; Bortfeldt, J.; Brunbauer, F.; Brunoldi, M.; Chatzianagnostou, E.; Datta, J.; Dehmelt, K.; Fanourakis, G.; Ferry, S.; Fiorina, D.; Floethner, K. J.; Gallinaro, M.; Garcia, F.; Giomataris, I.; Gnanvo, K.; Iguaz, F. J.; Janssens, D.; Kallitsopoulou, A.; Kovacic, M.; Kross, B.; Lai, C. C.; Legou, P.; Liu, J.; Lupberger, M.; Maniatis, I.; Mckisson, J.; Meng, Y.; Muller, H.; De Oliveira, R.; Oliveri, E.; Orlandini, G.; Pandey, A.; Papaevangelou, T.; Pomorski, M.; Robert, M.; Ropelewski, L.; Sampsonidis, D.; Scharenberg, L.; Schneider, T.; Scorsone, E.; Sohl, L.; van Stenis, M.; Tsipolitis, Y.; Tzamarias, S.; Utrobicic, A.; Vai, I.; Veenhof, R.; Viezzi, L.; Vitulo, P.; Volpato, C.; Wang, X.; White, S.; Xi, W.; Zhang, Z.; Zhou, Y.
Autori di Ateneo:
BRUNOLDI MATTEO
VAI ILARIA
VITULO PAOLO
Link alla scheda completa:
https://iris.unipv.it/handle/11571/1514840
Pubblicato in:
NUCLEAR INSTRUMENTS & METHODS IN PHYSICS RESEARCH. SECTION A, ACCELERATORS, SPECTROMETERS, DETECTORS AND ASSOCIATED EQUIPMENT
Journal
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URL

https://www.sciencedirect.com/science/article/pii/S0168900224010775
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