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Fusion Nucleonics Experiments

Neutron Field Characteristics in a Concrete Cavity Having a DT Neutron Source

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Pages 585-590 | Published online: 10 Aug 2017

REFERENCES

  • T. NAKAMURA, et al., “Summary of Recent Results for JAERI/US Fusion Neutronics Phase I Experiment,” and see also H. MAEKAWA, et al., “Measured Neutron Parameters for Phase I Experiments at the FNS Facility,” this proceedings
  • H. MAEKAWA, et al., “Neutron Yield Monitors for the Fusion Neutronics Source (FNS),” JAERI-M83-219 (1983), Japan Atomic Energy Research Institute (JAERI)
  • S. YAMAGUCHI, et al. “Calculation of Anisotropy Correction Factor for Determination of D-T Neutron Yield by Associated Alpha Particle Method,” JAERI-M 84-193 (1984) JAERI
  • Y. SEKI, et al., “Monte Carlo Calculation of the Characteristics of Source Neutrons and Irradiation Field of the FNS rotating Target,” JAERI-M 84–193 (1984) JAERI
  • Y. OYAMA and H. MAEKAWA, “Spectral Measurement of Angular Neutron Flux on the Restricted Surface of Slab Assemblies by the Time-of-Flight Method,” Nucl. Instr. Meth. A245, 173 (1986)
  • Y. OYAMA, et al., “Development of a Spherical NE213 Spectrometer with 14 mm Diameter,” JAERI-M 84–12 (1984) (in Japanese) JAERI; to be submitted to Nucl. Instr. Meth.
  • FORIST Spectra Unfolding code, Radiation Shielding Information Center, Oak Ridge National Laboratory, PSR-92 (1975)
  • M. NAKAGAWA and T. MORI, “MORSE-DD, A Monte Carlo Code using Multigroup Double Differential form Cross Sections,” JAERI-M 84-126 (1984) JAERI

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