The 56Fe(n, p)56Mn and 27Al(n, α)24Na cross sections at 14·78 MeV

J.C. Robertson , B.N. Audric, P. Kolkowski
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引用次数: 22

Abstract

The 56Fe(n, p)56Mn and 27Al(n, α)24Na cross sections have been measured at the average energy of 14·78 MeV with an energy width of 200 keV. Aluminium and iron samples in the form of foils were irradiated in an accurately known neutron flux and the resulting 56Mn and 24Na activities determined using absolute 4πβ-γ counting techniques. The flux was determined using a recoil proton monitor to an accuracy of ±2·1 per cent. The values obtained were 109·8 ± 2·9 mb and 115·5 ± 3 mb where the errors have been obtained by adding the systematic error in determining the neutron flux linearly to the random error calculated at the 99 per cent confidence level in determining the 56Mn and 24Na activities.

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56Fe(n,p)56Mn和27Al(n,α)24Na在14·78MeV下的截面
测量了56Fe(n,p)56Mn和27Al(n,α)24Na的横截面,平均能量为14.78MeV,能量宽度为200keV。箔形式的铝和铁样品在精确已知的中子通量下辐照,使用4πβ-γ绝对计数技术测定由此产生的56Mn和24Na活性。使用反冲质子监测器测定通量,精确度为±2.1%。获得的值分别为109.8±2.9mb和115.5±3mb,其中误差是通过将线性确定中子通量的系统误差与在确定56Mn和24Na活度的99%置信水平下计算的随机误差相加而获得的。
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The neutron yield from Li, Be, Co and Cu under proton bombardment at energies from 5 to 10 MeV The emission spectra of NaD2O, InBe, LaBe and NaBe photoneutron sources Neptunium-237 production and recovery An exact solution of a transcendental equation basic to the theory of intermediate resonance absorption of neutrons Mathematical theory of transport processes in gasesJ. H. Ferziger and H. G. Kaper, North Holland, Amsterdam (1972). pp. 579
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