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CHARACTERISTICS OF FABRICATED SiC RADIATION DETECTORS FOR FAST NEUTRON DETECTION

초록

영어

Silicon carbide (SiC) is a promising material for neutron detection at harsh environments because of its capability to withstand strong radiation fields and high temperatures. Two PIN-type SiC semiconductor neutron detectors, which can be used for nuclear power plant (NPP) applications, such as in-core reactor neutron flux monitoring and measurement, were designed and fabricated. As a preliminary test, MCNPX simulations were performed to estimate reaction probabilities with respect to neutron energies. In the experiment, I-V curves were measured to confirm the diode characteristic of the detectors, and pulse height spectra were measured for neutron responses by using a 252Cf neutron source at KRISS (Korea Research Institute of Standards and Science), and a Tandem accelerator at KIGAM (Korea Institute of Geoscience and Mineral Resources). The neutron counts of the detector were linearly increased as the incident neutron flux got larger.

목차

Abstract
 1. INTRODUCTION
 2. MATERIALS AND METHODS
 3. RESULTS AND DISCUSSION
 4. CONCLUSION
 REFERENCES

저자정보

  • CHEOL HO LEE Department of Nuclear Engineering, Hanyang University
  • HAN SOO KIM Korea Atomic Energy Research Institute
  • JANG HO HA Korea Atomic Energy Research Institute
  • SE HWAN PARK Korea Atomic Energy Research Institute
  • HYEONSEO PARK Korea Research Institute of Standards and Science
  • GI DONG KIM Korea Institute of Geoscience and Mineral Resources
  • JUNESIC PARK Department of Nuclear Engineering, Hanyang University, †Korea Atomic Energy Research Institute
  • YONG‐KYUN KIM Department of Nuclear Engineering, Hanyang University, Institute for Basic Science

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