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서지반출
Experimental and Simulated Efficiency of a HPGe Detector in the Energy Range of $0.06{sim}11$ MeV
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  • Experimental and Simulated Efficiency of a HPGe Detector in the Energy Range of $0.06{sim}11$ MeV
  • Experimental and Simulated Efficiency of a HPGe Detector in the Energy Range of $0.06{sim}11$ MeV
저자명
Park. Chang Su,Sun. Gwang Min,Choi. H.D.
간행물명
Journal of the Korean Nuclear Society
권/호정보
2003년|35권 3호|pp.234-242 (9 pages)
발행정보
한국원자력학회
파일정보
정기간행물|ENG|
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이 논문은 한국과학기술정보연구원과 논문 연계를 통해 무료로 제공되는 원문입니다.
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기타언어초록

The full energy peak efficiency of a hyper pure germanium (HPGe) detector was calibrated in a wide energy range from 0.06 to 11 MeV. Both the experimental technique and the Monte Carlo method were used for the efficiency calibration. The measurement was performed using the standard radioisotopes in the low energy region of $60{sim}1408$ keV, which was further extended up to 11 MeV by using the $^{14}N(n,r);and;^{35}Cl(n,r)$ reactions. The GEANT Monte Carlo code was used for efficiency calculation. The calculated efficiency had the same dependency on the r-ray energy with the measurement, and the discrepancy between the calculation and the measurement was minimized by fine-tuning of the detector geometry. From the calculated result, the efficiency curve of the HPGe detector was reliably determined particularly in the high energy region above several MeV, where the number of measured efficiency points is relatively small despite the wide energy region. The calculated efficiency agreed with the measurement within about $7\%$. In addition to the efficiency calculation, the origin of the local minimum near 600 keV on the efficiency curve was analyzed as a general characteristics of a HPGe detector.