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首页> 外文期刊>The Astrophysical journal >FIRST MEASUREMENT OF A p(n,γ)d REACTION CROSS SECTION BETWEEN 10 AND 80 keVQ
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FIRST MEASUREMENT OF A p(n,γ)d REACTION CROSS SECTION BETWEEN 10 AND 80 keVQ

机译:在10和80 keVQ之间对p(n,γ)d反应截面的首次测量

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摘要

For the first time we have successfully measured the important cross section of the p(n, γ)d reaction at astro-physically relevant energies between 10 and 80 keV, where the difference in the cross section between old and new calculations is quite large. In the measurement we used a prompt γ-ray detection method, combined with a pulsed neutron beam, which is crucial for determining the cross section accurately by discriminating small true signals from huge background signals; we also used a recently developed Monte Carlo code for correcting neutron multiple-scattering effects in a sample. The cross sections derived in the present experiment were 318 (25) μb, 203 (19) μb, and 151 (7) μb at neutron energies of 20, 40, and 64 keV, respectively. They do not follow a simple 1/υ law and are in good agreement with new calculations. Regarding the primordial abundances of light elements, the present result supports a recent calculation by Smith et al. However, the discrepancy in the deuteron photodisintegration cross sections between the experimental values and a newly calculated one by Ohtsubo et al. remains to be explained.
机译:我们首次成功地测量了天体物理相关能量在10到80 keV之间的p(n,γ)d反应的重要截面,其中新旧计算之间的截面差异非常大。在测量中,我们使用了一种快速的γ射线检测方法,并结合了脉冲中子束,这对通过区分小的真实信号与巨大的背景信号来准确确定横截面至关重要。我们还使用了最近开发的蒙特卡洛代码来校正样品中的中子多重散射效应。在本实验中得出的截面在中子能20、40和64 keV时分别为318(25)μb,203(19)μb和151(7)μb。它们不遵循简单的1 /υ定律,并且与新的计算结果非常吻合。关于轻元素的原始丰度,当前结果支持Smith等人的最新计算。然而,氘核光解离截面的实验值与Ohtsubo等人新计算的值之间存在差异。有待解释。

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