Measurement of the muon flux at the SND@LHC experiment
arXiv:2310.05536
Abstract
The Scattering and Neutrino Detector at the LHC (\SND) started taking data at the beginning of Run 3 of the LHC. The experiment is designed to perform measurements with neutrinos produced in proton-proton collisions at the LHC in an energy range between 100GeV and 1 TeV. It covers a previously unexplored pseudo-rapidity range of . The detector is located 480 m downstream of the ATLAS interaction point in the TI18 tunnel. It comprises a veto system, a target consisting of tungsten plates interleaved with nuclear emulsion and scintillating fiber (SciFi) trackers, followed by a muon detector (UpStream, US and DownStream, DS). In this article we report the measurement of the muon flux in three subdetectors: the emulsion, the SciFi trackers and the DownStream Muon detector. The muon flux per integrated luminosity through an 1818 cm area in the emulsion is . The muon flux per integrated luminosity through a 3131 cm area in the centre of the SciFi is . The muon flux per integrated luminosity through a 5252 cm area in the centre of the downstream muon system is . The total relative uncertainty of the measurements by the electronic detectors is 6 for the SciFi and 4 for the DS measurement. The Monte Carlo simulation prediction of these fluxes is 20-25 lower than the measured values.
11 pages, 14 figures