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THE SOLAR CORE: NEW LOW-l p-MODE FINE-SPACING RESULTS FROM BiSON

机译:太阳能:BiSON的新低l p模式精细间距结果

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The fine-structure spacing d_l(n) = v_(l,n) - v_(l+2,n-1) for low-degree solar p modes of angular degree l and radial order n is sensitive to conditions in the deep radiative interior of the Sun. Here we present fine-structure spacings derived from the analysis of nearly 5 years of helioseismological data collected between 1991 July and 1996 February by the Birmingham Solar Oscillations Network (BiSON). These data cover 9 ≤ n ≤ 28 for d_0(n), and 11 ≤ n ≤ 27 for d_1(n). The measured spacings are much more precise and cover a greater range than earlier measurements from BiSON data (Elsworth et al. 1990a). The predicted fine-structure spacings for a "standard" solar model are clearly excluded by the BiSON data (at ≈ 10 σ); models that include helium and heavy-element settling provide a much better match to the observed spacings (see also Elsworth et al. 1995). Since the inclusion of core settling in solar models will tend to increase slightly the predicted neutrino flux, the BiSON fine-structure data appear to reinforce previous conclusions, i.e., an astrophysical solution to the solar neutrino problem seems unlikely.
机译:角度为l和径向阶数为n的低度太阳p模式的精细结构间距d_l(n)= v_(l,n)-v_(l + 2,n-1)对深辐射条件很敏感太阳的内部。在这里,我们提出了精细的结构间距,这些间距是通过对1991年7月至1996年2月之间由伯明翰太阳振荡网络(BiSON)收集的近5年地震地震数据的分析得出的。这些数据对于d_0(n)覆盖9≤n≤28,对于d_1(n)覆盖11≤n≤27。与BiSON数据的早期测量结果相比,所测量的间距要精确得多,覆盖范围更大(Elsworth等,1990a)。 BiSON数据(≈10σ)清楚地排除了“标准”太阳模型的预计精细结构间距。包括氦气和重元素沉降的模型提供了与观测到的间距更好的匹配(另请参见Elsworth等,1995)。由于在太阳模型中包括核沉降将趋于稍微增加预测的中微子通量,因此BiSON精细结构数据似乎可以加强先前的结论,即,对太阳中微子问题进行天体物理学解决的可能性不大。

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