Super-FRS GEM-TPC Prototype Development Based on n-Xyter Asic for the FAIR Facility
F. Garcia, R. Turpeinen, R. Lauhakangas, E. Tuominen, R. Janik, P., Strmen, M. Pikna, B. Sitar, B. Voss, J. Kunkel, V. Kleipa, A. Prochazka, J., Hoffmann, I. Rusanov, N. Kurz, S. Minami

TL;DR
This paper reports on the development and testing of a GEM-TPC detector prototype using n-Xyter ASICs for the Super-FRS separator at the FAIR facility, aiming to improve beam diagnostics for nuclear physics experiments.
Contribution
It introduces a novel GEM-TPC prototype with n-Xyter ASICs designed for high-performance beam diagnostics at the FAIR facility's Super-FRS separator.
Findings
Prototype shows promising tracking efficiency and spatial resolution.
Test beam results demonstrate effective particle identification capabilities.
The detector meets the requirements for high count rate and momentum resolution.
Abstract
The FAIR facility is an international accelerator centre for research with ion and antiproton beams. It is being built at Darmstadt, Germany as an extension to the current GSI research institute. One major part of the facility will be the Super-FRS separator, which will be include in phase one of the project construction. The NUSTAR experiments will benefit from the Super-FRS, which will deliver an unprecedented range of radioactive ion beams (RIB). These experiments will use beams of different energies and characteristics in three different branches; the high-energy which utilizes the RIB at relativistic energies 300-1500 MeV /u as created in the production process, the low energy branch aims to use beams in the range of 0-150 MeV/u whereas the ring branch will cool and store beams in the NESR ring. The main tasks for the Super-FRS beam diagnostics chambers will be for the set up and…
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