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High-power liquid-lithium jet target for neutron production.
Halfon, S; Arenshtam, A; Kijel, D; Paul, M; Berkovits, D; Eliyahu, I; Feinberg, G; Friedman, M; Hazenshprung, N; Mardor, I; Nagler, A; Shimel, G; Tessler, M; Silverman, I.
Afiliação
  • Halfon S; Soreq NRC, Yavne 81800, Israel.
  • Arenshtam A; Soreq NRC, Yavne 81800, Israel.
  • Kijel D; Soreq NRC, Yavne 81800, Israel.
  • Paul M; Racah Institute of Physics, Hebrew University, Jerusalem 91904, Israel.
  • Berkovits D; Soreq NRC, Yavne 81800, Israel.
  • Eliyahu I; Soreq NRC, Yavne 81800, Israel.
  • Feinberg G; Soreq NRC, Yavne 81800, Israel.
  • Friedman M; Racah Institute of Physics, Hebrew University, Jerusalem 91904, Israel.
  • Hazenshprung N; Soreq NRC, Yavne 81800, Israel.
  • Mardor I; Soreq NRC, Yavne 81800, Israel.
  • Nagler A; Soreq NRC, Yavne 81800, Israel.
  • Shimel G; Soreq NRC, Yavne 81800, Israel.
  • Tessler M; Racah Institute of Physics, Hebrew University, Jerusalem 91904, Israel.
  • Silverman I; Soreq NRC, Yavne 81800, Israel.
Rev Sci Instrum ; 84(12): 123507, 2013 Dec.
Article em En | MEDLINE | ID: mdl-24387433
ABSTRACT
A compact liquid-lithium target (LiLiT) was built and tested with a high-power electron gun at the Soreq Nuclear Research Center. The lithium target, to be bombarded by the high-intensity proton beam of the Soreq Applied Research Accelerator Facility (SARAF), will constitute an intense source of neutrons produced by the (7)Li(p,n)(7)Be reaction for nuclear astrophysics research and as a pilot setup for accelerator-based Boron Neutron Capture Therapy. The liquid-lithium jet target acts both as neutron-producing target and beam dump by removing the beam thermal power (>5 kW, >1 MW/cm(3)) with fast transport. The target was designed based on a thermal model, accompanied by a detailed calculation of the (7)Li(p,n) neutron yield, energy distribution, and angular distribution. Liquid lithium is circulated through the target loop at ~200 °C and generates a stable 1.5 mm-thick film flowing at a velocity up to 7 m/s onto a concave supporting wall. Electron beam irradiation demonstrated that the liquid-lithium target can dissipate electron power areal densities of >4 kW/cm(2) and volume power density of ~2 MW/cm(3) at a lithium flow of ~4 m/s while maintaining stable temperature and vacuum conditions. The LiLiT setup is presently in online commissioning stage for high-intensity proton beam irradiation (1.91-2.5 MeV, 1-2 mA) at SARAF.

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Rev Sci Instrum Ano de publicação: 2013 Tipo de documento: Article País de afiliação: Israel

Texto completo: 1 Coleções: 01-internacional Base de dados: MEDLINE Idioma: En Revista: Rev Sci Instrum Ano de publicação: 2013 Tipo de documento: Article País de afiliação: Israel
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