TY - JOUR
T1 - Multiple gamma-ray detection method and its application to nuclear chemistry
AU - Oshima, M.
AU - Toh, Y.
AU - Hatsukawa, Y.
AU - Koizumi, M.
AU - Kimura, A.
AU - Haraga, A.
AU - Ebihara, M.
AU - Sushida, K.
PY - 2008/11/1
Y1 - 2008/11/1
N2 - A new radionuclide quantification method is proposed on the basis of multiple gamma-ray detection, which is two or higher fold gamma-ray coincidence method. The coincidence method has so far been used for nuclear structure study. We apply this method for quantification of radioactive nuclei. The advantage of this method consists of high energy resolution and high sensitivity. It is successfully applied to nuclear waste analysis, neutron activation analysis and prompt gamma-ray analysis. The principle of the multiple gamma-ray detection method and future perspectives for an innovative pulsed neutron source and a new detector system will be presented.
AB - A new radionuclide quantification method is proposed on the basis of multiple gamma-ray detection, which is two or higher fold gamma-ray coincidence method. The coincidence method has so far been used for nuclear structure study. We apply this method for quantification of radioactive nuclei. The advantage of this method consists of high energy resolution and high sensitivity. It is successfully applied to nuclear waste analysis, neutron activation analysis and prompt gamma-ray analysis. The principle of the multiple gamma-ray detection method and future perspectives for an innovative pulsed neutron source and a new detector system will be presented.
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U2 - 10.1007/s10967-008-0303-9
DO - 10.1007/s10967-008-0303-9
M3 - Article
AN - SCOPUS:59349100687
SN - 0022-4081
VL - 278
SP - 257
EP - 262
JO - Journal of Radioanalytical and Nuclear Chemistry
JF - Journal of Radioanalytical and Nuclear Chemistry
IS - 2
ER -