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Neutron capture cross section measurements for 197Au from 3.5 to 84 keV at GELINA

机译:在GELINA上从3.5到84 keV的197Au的中子俘获截面测量

摘要

Cross section measurements have been performed at the time-of-flight facility GELINA to determine the average capture cross section for 197Au in the energy region between 3.5 keV and 84 keV. Prompt gamma-rays, originating from neutron induced capture events, were detected by two C6D6 liquid scintillators. The sample was placed at about 13 m distance from the neutron source. The total energy detection principle in combination with the pulse height weighting technique was applied. The energy dependence of the neutron flux was measured with a double Frisch-gridded ionization chamber based on the 10B(n,alpha)reaction. The data have been normalized to the well-isolated and saturated 197Au resonance at 4.9 eV. Special care was taken to reduce bias effects due to the weighting function, normalization, dead time and background corrections. The total uncertainty due to normalization, neutron flux and weighting function is 1.0%. An additional uncertainty of 0.5% results from the correction for self-shielding and multiple interaction events. Fluctuations due to resonance structures have been studied by complementary measurements at a 30 m flight path station. The results reported in this work deviate systematically by more than 5% from the cross section that is recommended as a reference for astrophysical applications. They are about 2% lower compared to an evaluation of the 197Au(n,gamma) cross section, which was based on a least squares fit of experimental data available in the literature prior to this work. The average capture cross section as a function of neutron energy has been parameterized in terms of average resonance parameters. Maxwellian average cross sections at different temperatures have been calculated.
机译:在飞行时间设施GELINA进行了横截面测量,以确定在3.5 keV和84 keV之间的能量区域中197Au的平均捕获横截面。由两个中子C6D6液体闪烁器探测到了源自中子引起的捕获事件的及时伽马射线。将样品放置在距中子源约13 m的位置。应用了总能量检测原理,并结合了脉冲高度加权技术。用基于10B(n,α)反应的双弗里施网格电离室测量中子通量的能量依赖性。数据已针对4.9 eV处的良好隔离和饱和197Au谐振进行了归一化。由于加权函数,归一化,停滞时间和背景校正,要特别注意减少偏差影响。由于归一化,中子通量和加权函数导致的总不确定度为1.0%。自我屏蔽和多重交互事件的校正会导致0.5%的额外不确定性。通过共振测量,在30 m飞行路径站上对共振结构引起的波动进行了研究。这项工作中报告的结果与横截面的系统偏差超过了5%,建议将其作为天体物理学应用的参考。与197Au(n,γ)横截面的评估相比,它们约低2%,该评估是基于这项工作之前文献中可获得的实验数据的最小二乘拟合。已经根据平均共振参数对作为中子能量的函数的平均捕获截面进行了参数化。计算了不同温度下的麦克斯韦平均截面。

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