English

The new HADES ToF Forward Detector

Instrumentation and Detectors 2023-04-05 v1

Abstract

The High-Acceptance DiElectron Spectrometer (HADES) at GSI Darmstadt consists of a 6-coil toroidal magnet centered on the beam axis and six identical detection sections located between the coils and covering polar angles between 1818^\circ and 8585^\circ. The physics aims include the study of the properties of hot and dense hadronic matter as well as elementary and pion-induced reactions. To increase the acceptance of HADES at very low polar angles in the forward region, between 0.50.5^\circ and 77^\circ, a new detector, the Forward Detector (FD), has been built. The FD is composed of a tracking and a Time Of Flight (TOF) detector based on Resistive Plate Chamber (RPC) technology. The TOF detector, covering an area of around 22 m2^2, is composed by 128128 strip-like shielded RPC cells, with two different widths 2222 mm and 4444 mm and 750750 mm length distributed in four modules symmetrically placed around the beam axis. Each cell is composed by four gas gaps, 0.2700.270 mm, delimited by three (22 mm) aluminum and two (11 mm) glass electrodes. In order to cope with an expected maximum particle load of around 400400 Hz/cm2^{2}, close to the beam axis, the detector is operated above room temperature in order to decrease the resistivity of the glass and increase the count rate capability. Details of the system construction and results concerning timing precision are described in this communication. The detector was operated at 31.531.5^\circC with a maximum particle load of around 600600 Hz/cm2^2 during a production beam time for six weeks in early 20222022 showing an average time precision of around 8080 ps.

Keywords

Cite

@article{arxiv.2212.02621,
  title  = {The new HADES ToF Forward Detector},
  author = {A. Blanco and P. Fonte and L. Lopes and J. Saraiva},
  journal= {arXiv preprint arXiv:2212.02621},
  year   = {2023}
}
R2 v1 2026-06-28T07:22:59.736Z