Abstract <p>The SND@LHC (Scattering and Neutrino Detector at the Large Hadron Collider) experiment studies processes involving neutrinos generated at the LHC in the pseudorapidity range of <InlineEquation ID="IEq1"> <EquationSource Format="TEX">\(7.2&lt;\eta&lt;8.6\)</EquationSource> <!--NuclPhys2570049Alexandrov-m1--> </InlineEquation>. The detector includes a target having a mass of 830 kg and consisting of tungsten plates interspersed with emulsion and electronic detectors, which is followed downstream by a hadronic calorimeter and a muon-detecting system. The detector structure provides a unique possibility for studying charm production in the pseudorapidity region inaccessible to other experiments at the LHC. The modern state of the experiment and its prospects for the near future are described in the present study.</p>

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SND@LHC in 2025 and Beyond

  • A. B. Alexandrov,
  • S. A. Gorbunov,
  • N. S. Konovalova,
  • D. N. Morozova,
  • N. M. Okateva,
  • N. G. Polukhina,
  • N. I. Starkov,
  • E. N. Starkova,
  • M. M. Chernavskiy,
  • T. V. Shchedrina

摘要

Abstract

The SND@LHC (Scattering and Neutrino Detector at the Large Hadron Collider) experiment studies processes involving neutrinos generated at the LHC in the pseudorapidity range of \(7.2<\eta<8.6\) . The detector includes a target having a mass of 830 kg and consisting of tungsten plates interspersed with emulsion and electronic detectors, which is followed downstream by a hadronic calorimeter and a muon-detecting system. The detector structure provides a unique possibility for studying charm production in the pseudorapidity region inaccessible to other experiments at the LHC. The modern state of the experiment and its prospects for the near future are described in the present study.