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首页> 外文期刊>Physical review, C >Impact of O-16(gamma, alpha)C-12 measurements on the C-12(alpha, gamma)O-16 astrophysical reaction rate
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Impact of O-16(gamma, alpha)C-12 measurements on the C-12(alpha, gamma)O-16 astrophysical reaction rate

机译:O-16(γ,α)C-12测量对C-12(α,γ)O-16天体物理反应速率的影响

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摘要

The C-12(alpha, gamma)O-16 reaction, an important component of stellar helium burning, plays a key role in nuclear astrophysics. It has direct impact on the evolution and final state of massive stars, while also influencing the elemental abundances resulting from nucleosynthesis in such stars. Providing a reliable estimate for the energy dependence of this reaction at stellar helium burning temperatures has been a major goal for the field. In this work, we study the role of potential new measurements of the inverse reaction, O-16(gamma, alpha)C-12, in reducing the overall uncertainty. A multilevel R-matrix analysis is used to make extrapolations of the astrophysical S factor for this reaction to the stellar energy of 300 keV. The statistical precision of the S-factor extrapolation is determined by performing multiple fits to existing E1 and E2 ground-state capture data, including the impact of possible future measurements of the O-16(gamma, alpha)C-12 reaction. In particular, we consider a proposed Jefferson Laboratory (JLab) experiment that will make use of a high-intensity low-energy bremsstrahlung beam that impinges on an oxygen-rich single-fluid bubble chamber in order to measure the total cross section for the inverse reaction. The importance of low-energy data as well as high-precision data is investigated.
机译:C-12(α,γ)O-16反应,恒星氦燃烧的重要组成部分在核天体物理学中起着关键作用。它对大规模恒星的演变和最终状态有直接影响,同时也影响了这种恒星中的核酸内合作用导致的元素丰富。提供对恒星氦燃烧温度在恒星氦燃烧温度下这种反应的能量依赖性的可靠估计是该领域的主要目标。在这项工作中,我们研究了潜在的新测量反应,O-16(γ,α)C-12降低了整体不确定性的作用。多级R-Matrix分析用于制造天体物理因素的外推对300keV的恒星能量的这种反应。通过对现有E1和E2地面捕获数据进行多个配合来确定S因子外推的统计精度,包括O-16(γ,α)C-12反应可能的未来测量的影响。特别是,我们认为建议的Jefferson实验室(JLAB)实验将利用高强度低能量Bremsstrahlung光束,该光束撞击富氧的单流体气泡室,以测量逆型的总横截面反应。研究了低能量数据以及高精度数据的重要性。

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