EPJ Web of Conferences (Jan 2021)

TANGRA multidetector systems for investigation of neutron-nuclear reactions at the JINR Frank Laboratory of Neutron Physics

  • Ruskov Ivan,
  • Kopach Yury,
  • Bystritsky Vyacheslav,
  • Skoy Vadim,
  • Grozdanov Dimitar,
  • Fedorov Nikita,
  • Tretyakova Tatyana,
  • Aliev Fuad,
  • Hramco Constantin,
  • Slepnev Vyacheslav,
  • Zamyatin Nikolay,
  • Gandhi Aman,
  • Wang Dongming,
  • Kumar Ajay,
  • Zubarev Evgeni,
  • Bogolubov Evgeny,
  • Barmakov Yuri

DOI
https://doi.org/10.1051/epjconf/202125600014
Journal volume & issue
Vol. 256
p. 00014

Abstract

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In the framework of TANGRA-project at the Frank Laboratory of Neutron Physics of the Joint Institute for Nuclear research in Dubna (Russia), two experimental setups (Fig. 1) have been designed and tested for investigation of 14-MeV neutron-induced nuclear reactions on a number of important for nuclear science and engineering isotopes. As a source of 14-MeV “tagged” neutrons we are using the VNIIA ING-27 steady-state portable neutron generator with embedded in its vacuum tube 64-pixel charge-particle detector. The “Romashka” system is an array of up-to 24 hexagonal NaI(Tl)-crystal scintillation probes, while the “Romasha” array consists of 18 cylindrical BGO-crystal detectors of neutrons and gamma-rays. In addition to these detectors there is a HPGe gamma-ray spectrometer and a number of Stilbene detectors that can be added for high-resolution gamma-ray spectrometry and neutron-gamma detection. The main characteristics of the neutron-induced nuclear reaction products can be investigated by commissioning the detectors in suitable for these experiments’ geometries. Both setups can be used for doing basic and applied scientific research, because they permit simultaneously to measure the energy, angle and multiplicity distributions of gamma-rays and neutrons, produced in the competitive neutron-induced nuclear reactions (n, n’γ), (n,2n), (n, xnγ) and (n, f) in pure or complex substances.