首页> 外文期刊>International journal of modern physics, E. Nuclear physics >THEORETICAL INVESTIGATIONS OF THE C-12(alpha,gamma)O-16 E2 CROSS SECTION
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THEORETICAL INVESTIGATIONS OF THE C-12(alpha,gamma)O-16 E2 CROSS SECTION

机译:C-12(α,γ)O-16 E2截面的理论研究

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摘要

The E2 component of the C-12(alpha,gamma)O-16 cross section is investigated in three ways: by a microscopic cluster model, by R-matrix fits and by a combination of both. The microscopic calculation leads to an estimate of the S-factor at a typical energy of 300 keV of S-E2 (300keV) approximate to 50 keV-b for ground-state transitions. Cascade transitions to the 0(2)(+) and 2(1)(+) excited states of O-16 are also studied. Then the S-factor is analyzed in the phenomenological R-matrix theory. We show that the background term plays a crucial role, and cannot be determined without ambiguity. Consequently only an upper limit on the extrapolated S-factor can be obtained [S-E2 (300keV) < 190 keV-b]. Finally, we use the microscopic Asymptotic Normalization Constant (ANC) of the 2(1)(+) level, well known to be a cluster state to constrain the R-matrix analysis. This procedure strongly reduces the uncertainties on the R-matrix fits, and we end up with a recommended value of S-E2 (300keV) = 42 +/- 2 keV-b.
机译:通过以下三种方法研究C-12(α,γ)O-16截面的E2成分:通过微观簇模型,通过R-矩阵拟合以及通过两者的组合。微观计算导致对S-E2的300 keV(300keV)的典型能量下的S因子估计,对于基态跃迁,该能量近似于50 keV-b。还研究了向O-16的0(2)(+)和2(1)(+)激发态的级联跃迁。然后在现象学R矩阵理论中分析S因子。我们表明,背景术语起着至关重要的作用,没有歧义就无法确定。因此,只能获得外推S因子的上限[S-E2(300keV)<190 keV-b]。最后,我们使用2(1)(+)级的微观渐近归一化常数(ANC)(众所周知是簇状态来约束R矩阵分析)。此过程极大地降低了R矩阵拟合的不确定性,最终我们得到了S-E2的推荐值(300keV)= 42 +/- 2 keV-b。

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