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《中国物理C》(英文)编辑部
2024年10月30日

CROSS SECTION MEASUREMENT FOR THE REACTION 56Fe(n,p)56Mn

  • The cross section measurement for the reaction 56Fe(n, p)56Mn was made using the activation method from 12 MeV to 18 MeV. The absolute cross section was determined at 14.61±0.20 MeV, the value obtained was 108.0±2.7mb. The associated particle method was used to determine the absolute neutron flux and compared with the recoil proton telescope. The agreement between both methods appeared to be within 1—2%. The resulting 56Mn activity was measured by using a φ10×7.6cm NaI (Tl) scintillation counter. The counting efficiency of the counter was achieved by means of a standard 56Mn source calibrated by the 4πβ-γ coincidence method. The result measured was compared with existing data.
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  • [1] 巩玲华等,物理,1 (1972), 62.[2] J. C. Hopkins et al., Nucl. Data Tables, A9 (1971), 137.[3] 李际周等,《快中子通量测量中闪烁望远镜法与伴随粒子法的校核问题》,(内部).[4] D. M. Chittenden et al., Phys. Rev. 122 (1961), 860.[5] 卢涵林等,Al, Ti, V, I 的快中子激发曲线,(待发表).[6] S. J. Bame, at al., Phys. Rev., 107 (1957), 1616.[7] K. Kudo, Nucl. Instr. Methods, 141 (1977), 325.[8] J. C. Robertson et al, J. Nucl. Energy, 27 (1973), 139.[9] G. C. Bonazzola, et al,Nucl. Phys., 51 (1964), 337.[10] H. Liskien of al., J. Nucl. Energy, 19 (1965), 73.[11] J. D. Hemingway et al.. Proc. Roy. Soc., A292 (1966), 180.[12] D. C. gantry et al., Can. J. Phys., 42 (1964), 1030.[13] J. Terrell et a1, Phys. Rev., 109(1958), 2031.[14] D. L. Smith et al., Trans. Amer. Nucl. Soc., 16(1973), 312; Nucl. Sci. Eng., 58 (1975), 314.
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Get Citation
LI CHI-CHOU, LU HAN-LIN, FAN PEI-KUO, MA HUNG-CHANG and LI YEH-SHA. CROSS SECTION MEASUREMENT FOR THE REACTION 56Fe(n,p)56Mn[J]. Chinese Physics C, 1978, 2(6): 550-557.
LI CHI-CHOU, LU HAN-LIN, FAN PEI-KUO, MA HUNG-CHANG and LI YEH-SHA. CROSS SECTION MEASUREMENT FOR THE REACTION 56Fe(n,p)56Mn[J]. Chinese Physics C, 1978, 2(6): 550-557. shu
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Received: 1978-04-17
Revised: 1900-01-01
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CROSS SECTION MEASUREMENT FOR THE REACTION 56Fe(n,p)56Mn

Abstract: The cross section measurement for the reaction 56Fe(n, p)56Mn was made using the activation method from 12 MeV to 18 MeV. The absolute cross section was determined at 14.61±0.20 MeV, the value obtained was 108.0±2.7mb. The associated particle method was used to determine the absolute neutron flux and compared with the recoil proton telescope. The agreement between both methods appeared to be within 1—2%. The resulting 56Mn activity was measured by using a φ10×7.6cm NaI (Tl) scintillation counter. The counting efficiency of the counter was achieved by means of a standard 56Mn source calibrated by the 4πβ-γ coincidence method. The result measured was compared with existing data.

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