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首页> 外文期刊>Annals of nuclear energy >Measurements Of Activation Cross Sections Of (n, P) And (n, α) Reactions In The Energy Range Of 3.5-5.9 Mev Using A Deuterium Gas Target
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Measurements Of Activation Cross Sections Of (n, P) And (n, α) Reactions In The Energy Range Of 3.5-5.9 Mev Using A Deuterium Gas Target

机译:使用氘气靶测量能量范围为3.5-5.9 Mev的(n,P)和(n,α)反应的活化截面

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摘要

Activation cross sections of (n, p) and (n, α) reactions were measured by means of the activation method in the neutron energy range of 3.5-5.9 MeV using a deuterium gas target. The irradiated target isotopes were ~(27)Al,~(28,29)Si, ~(41)K, ~(51)V, ~(61)Ni, ~(65)Cu, ~(64.67)Zn, ~(69)Ga, ~(79)Br, ~(92)Mo and ~(93)Nb. The cross sections of the ~(29)Si(n, p) ~(29)Al,~(67)Zn(n, p) ~(67)Cu, ~(69)Ga(n, p) ~(69m)Zn, ~(79)Br(n, p) ~(79m)Se, and ~(69)Ga(n, α) ~(66)Cu reactions were obtained for the first time in the studied energy range. The d-D neutrons were generated by the deuterium gas target at the Van de Graaff accelerator (KN-VdG) at Nagoya University. All cross section values were determined relative to those of the ~(115)ln(n, n')~(115m)In reaction. The activities induced by the low-energy neutrons were corrected. For the corrections, the neutron spectra and mean neutron energies at the irradiation positions were calculated taking into account the energy loss of incident deuterons, the angular differential cross section of the d-D reaction and the solid angle subtended by the sample. The systematics of the (n, p) reactions at the neutron energy of 5.0 MeV in the mass range between 27 and 92 were proposed for the first time. This systematics can predict the cross sections within an accuracy of a factor of 1.6.
机译:(n,p)和(n,α)反应的活化截面是使用氘气靶通过活化方法在3.5-5.9 MeV的中子能范围内测量的。辐照的目标同位素为〜(27)Al,〜(28,29)Si,〜(41)K,〜(51)V,〜(61)Ni,〜(65)Cu,〜(64.67)Zn,〜 (69)Ga,〜(79)Br,〜(92)Mo和〜(93)Nb。 〜(29)Si(n,p)〜(29)Al,〜(67)Zn(n,p)〜(67)Cu,〜(69)Ga(n,p)〜(69m)的横截面Zn,〜(79)Br(n,p)〜(79m)Se和〜(69)Ga(n,α)〜(66)Cu反应在所研究的能量范围内首次获得。 d-D中子是由名古屋大学的Van de Graaff加速器(KN-VdG)上的氘气靶产生的。相对于〜(115)ln(n,n')〜(115m)In反应中的所有横截面值确定。纠正了低能中子引起的活动。为了进行校正,考虑到入射氘核的能量损失,d-D反应的角微分截面和样品所具有的立体角,计算了照射位置的中子能谱和平均中子能。首次提出了质量分数为27到92之间的中子能量为5.0 MeV时的(n,p)反应的系统学。该系统可以以1.6倍的精度预测横截面。

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