Fast Neutron Capture Cross Section of Natural Molybdenum

  • The radiative capture cross sections of natural Mo relative to the 197Au (n,γ) were measured in the 0.7—1.4MeV neutron energy range,using a large liquid scintillator detector and the time-of-flight method.In the 0.01—2.0MeV neutron energy range,the theoretical calculation of (n,γ) reaction cross section for Mo was performed.The result of calculation is compared with the experimental data.
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  • [1] B. C. Diven., et al.,Phys.Rev., 120(1960), 556.[2] Yu. Ya. Stavisskii,Soviet Progress in Neutron Phys. 227, Consult. Bureau, New York, 1961.[3] M. P. Fricke et al., 3rd Conf. on Neutron Cross-Sections and Technology, Vol. 1, p252, Univ. of Tenne-ssee, Knoxville, 1971.[4] T, C. Belanova, Sov. J. Atom. En., 8(1960), 549.[5] W. P. Poenitz, ANL-83-4 (I982), 239.[6] 徐海珊等,核技术,9(1986),5.[7] 徐海珊等,原子核物理,9(1987),127,[8] ENDF/B-V.[9] E. Vogt, Advances in Nucl. Phys., Vol, 1, p161, Plenutn, New York, 1978.[10] A. M. Lane et al., Nucl. Phys., 17(1960), 563, 586.[11] Y. K. Ho et al., Nucl. Phys., A406(1983), 1.[12] 刘建峰等,高能物理与核物理,3(1983),355.[13] F. D. Becchetti et al., Phys. Rev., 182(1969), 1190.[14] A. Gilbert et al., Can. J. Phys., 43(1965), 1446[15] D. Kompe, Nucl. Phys., A133(1969), 513.
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MU Yun-Shan, XU Hai-Shan, XIANG Zheng-Yu, LI Ye-Xiang, WANG Shi-Ming and LIU Jian-Feng. Fast Neutron Capture Cross Section of Natural Molybdenum[J]. Chinese Physics C, 1991, 15(1): 66-70.
MU Yun-Shan, XU Hai-Shan, XIANG Zheng-Yu, LI Ye-Xiang, WANG Shi-Ming and LIU Jian-Feng. Fast Neutron Capture Cross Section of Natural Molybdenum[J]. Chinese Physics C, 1991, 15(1): 66-70. shu
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Received: 1900-01-01
Revised: 1900-01-01
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Fast Neutron Capture Cross Section of Natural Molybdenum

    Corresponding author: MU Yun-Shan,
  • Institute of Nuclear Science and Technology of Sichuan University,Chengdu 6100641 Physics Department,Zhengzhou University 450052

Abstract: The radiative capture cross sections of natural Mo relative to the 197Au (n,γ) were measured in the 0.7—1.4MeV neutron energy range,using a large liquid scintillator detector and the time-of-flight method.In the 0.01—2.0MeV neutron energy range,the theoretical calculation of (n,γ) reaction cross section for Mo was performed.The result of calculation is compared with the experimental data.

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