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Sub-25 ps timing measurements with 10 x 10 cm2 PICOSEC Micromegas detectors

M. Lisowska,J. Bortfeldt,F. Brunbauer,G. Fanourakis,K. J. Floethner,M. Gallinaro,F. Garcia, I. Giomataris,T. Gustavsson,F. J. Iguaz,D. Janssens,A. Kallitsopoulou,M. Kovacic,P. Legou,J. Liu,M. Lupberger,I. Maniatis,Y. Meng,H. Muller,E. Oliveri, G. Orlandini, T. Papaevangelou, M. Pomorski, L. Ropelewski, D. Sampsonidis, L. Scharenberg, T. Schneider, L. Sohl, M. van Stenis, Y. Tsipolitis, S. E. Tzamarias, A. Utrobicic, R. Veenhof, X. Wang, S. White, Z. Zhang, Y. Zhou

Nuclear Instruments and Methods in Physics Research Section A: Accelerators, Spectrometers, Detectors and Associated Equipment(2023)

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摘要
The PICOSEC Micromegas detector is a precise timing gaseous detector based on a Cherenkov radiator coupled to a semi-transparent photocathode and a Micromegas amplifying structure. First single-pad prototypes demonstrated a time resolution below sigma = 25 ps, however, to make the concept appropriate to physics applications, several developments are required. The objective of this work was to achieve an equivalent time resolution for a 10 x 10 cm(2) area PICOSEC Micromegas detector. The prototype was designed, produced and tested in the laboratory and successfully operated with a 80 GeV/c muon beam. Preliminary results for this device equipped with a CsI photocathode demonstrated a time resolution below sigma = 25 ps for all measured pads. The time resolution was reduced to be below sigma = 18 ps by decreasing the drift gap to 180 mu m and using dedicated RF amplifier cards as new electronics. The excellent timing performance of the single-channel proof of concept was not only transferred to the 100-channel prototype, but even improved, making the PICOSEC Micromegas detector more suitable for large-area experiments in need of detectors with high time resolutions.
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关键词
Gaseous detectors,Micromegas,Multipad,Timing resolution
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