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Calculations of Compound Nucleus Spin-Parity Distributions Populated via the (p,t) Reaction in Support of Surrogate Neutron Capture Measurements

机译:通过(P,T)反应填充替代中子捕获测量的(P,T)反应的化合物核旋转奇节分布的计算

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The surrogate reaction method may be used to determine the cross section for neutron induced reactions not accessible through standard experimental techniques. This is achieved by creating the same compound nucleus as would be expected in the desired reaction, but through a different incident channel, generally a direct transfer reaction. So far, the surrogate technique has been applied with reasonable success to determine the fission cross section for a number of actinides, but has been less successful when applied to other reactions, e.g. neutron capture, due to a spin-parity mismatch'. This mismatch, between the spin and parity distributions of the excited levels of the compound nucleus populated in the desired and surrogate channels, leads to differing decay probabilities and hence reduces the validity of using the surrogate method to infer the cross section in the desired channel. A greater theoretical understanding of the expected distribution of levels excited in both the desired and surrogate channels is therefore required in order to attempt to address this mismatch and allow the method to be utilised with greater confidence. Two neutron transfer reactions, e.g. (p,t), which allow the technique to be utilised for isotopes further removed from the line of stability, are the subject of this study. Results are presented for the calculated distribution of compound nucleus states populated in ~(90)Zr. via the ~(92)Zr(p.t)~(90)Zr reaction, and are compared against measured data at an incident proton energy of 28.56 MeV.
机译:替代反应方法可用于确定通过标准实验技术无法进入的中子诱导反应的横截面。这是通过在所需反应中产生相同的化合物核来实现,而是通过不同的入射道,通常是直接转移反应。到目前为止,替代技术已被应用于合理的成功,以确定许多散曲线的裂变横截面,但在施加到其他反应时,较少成功,例如,如此。中子捕获,由于自旋平价不匹配'。这种不匹配在所需和替代通道中填充的化合物核的激发核的旋转和奇偶校验分布之间导致不同的衰减概率,因此降低了使用替代方法推断所需信道中的横截面的有效性。因此,需要对所需和替代通道中兴奋的水平的预期分布的更大理论上理解,以便尝试解决这种不匹配并允许该方法具有更大的信心。两个中子转移反应,例如(P,T),其允许用于进一步从稳定性的同位素中移除的技术,是本研究的主题。提出了在〜(90)Zr中填充的化合物核状态的计算分布。通过〜(92)Zr(P.T)〜(90)ZR反应,并在28.56meV的入射质量下与测量数据进行比较。

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