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Thermonuclear fusion rates for tritium plus deuterium using Bayesian methods

机译:使用贝叶斯方法的Tritium Plus氘的热核聚变率

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The H-3(d, n)He- 4 reaction has a large low-energy cross section and will likely be utilized in future commercial fusion reactors. This reaction also takes place during Big Bang nucleosynthesis. Studies of both scenarios require accurate and precise fusion rates. To this end, we implement a one-level, two-channel R-matrix approximation into a Bayesian model. Our main goals are to predict reliable astrophysical S-factors and to estimate R-matrix parameters using the Bayesian approach. All relevant parameters are sampled in our study, including the channel radii, boundary condition parameters, and data set normalization factors. In addition, we take uncertainties in both measured bombarding energies and S-factors rigorously into account. Thermonuclear rates and reactivities of the H-3(d, n)He- 4 He reaction are derived by numerically integrating the Bayesian S-factor samples. The present reaction rate uncertainties at temperatures between 1.0 MK and 1.0 GK are in the range of 0.2% to 0.6%. Our reaction rates differ from previous results by 2.9% near 1.0 GK. Our reactivities are smaller than previous results, with a maximum deviation of 2.9% near a thermal energy of 4 keV. The present rate or reactivity uncertainties are more reliable compared to previous studies that did not include the channel radii, boundary condition parameters, and data set normalization factors in the fitting. Finally, we investigate previous claims of electron screening effects in the published H-3(d, n)He- 4 data. No such effects are evident and only an upper limit for the electron screening potential can be obtained.
机译:H-3(D,N)HE-4反应具有大的低能量横截面,可能在未来的商业融合反应堆中使用。该反应也发生在大爆炸核酸中。两种情况的研究都需要准确和精确的融合率。为此,我们实现了一个单级,双通道R矩阵近似为贝叶斯模型。我们的主要目标是预测可靠的天体物理因素,并使用贝叶斯方法估算R型矩阵参数。在我们的研究中采样所有相关参数,包括通道半径,边界条件参数和数据集归一化因子。此外,我们在严格考虑到轰击能量和S因素的不确定性。 H-3(D,N)He-4 He-4的热核率和反应性通过数值整合贝叶斯S因子样品来得出。在1.0 mk和1.0gK之间的温度下的本反应速率不确定性在0.2%至0.6%的范围内。我们的反应率与之前的结果不同2.9%近1.0焦。我们的反应性小于以前的结果,最大偏差为4 keV的热能附近的2.9%。与之前的研究相比,当前速率或反应性不确定性更可靠,​​这些研究不包括频道半径,边界条件参数和拟合中的数据集归一化因子。最后,我们研究了在公开的H-3(D,N)数据中的上一种电子筛选效应的权利要求。没有这样的效果是明显的,并且可以仅获得电子筛选电位的上限。

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