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Standard and Non-Standard Solar Models

机译:标准和非标准太阳能模型

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摘要

We summarize the physical input and assumptions commonly adopted in modern standard solar models that also produce good agreement with solar oscillation frequencies. We discuss two motivations for considering non-standard models: the solar neutrino problem and surface lithium abundance problem. We begin to explore the potential for mixed core models to solve the neutrino problem, and compare the structure, neutrino flux, and oscillation frequency predictions for several models in which the inner 25% of the radius is homogenized, taking into account the effects of non-local equilibrium abundances of 3He. The results for the neutrino flux and helioseismic predictions are far from satisfactory, but such models have the potential to reduce the predicted 7Be/8B neutrino flux ratio, and further studies are warranted. Finally, we discuss how much the neutrino problem can be alleviated in the framework of the standard solar model by using reaction rates, abundances and neutrino capture cross-sections at the limits of their uncertainties, while still satisfying the constraints of helioseismology.
机译:我们总结了现代标准太阳模型中通常采用的物理输入和假设,这些模型也与太阳振荡频率具有很好的一致性。我们讨论了考虑非标准模型的两种动机:太阳中微子问题和表面锂丰度问题。我们开始探索混合核模型解决中微子问题的潜力,并比较了半径25%的内部均质化的几种模型的结构,中微子通量和振荡频率预测, -3 He的局部平衡丰度。中微子通量和日震预测的结果远不能令人满意,但是这种模型有可能降低预测的7 Be / 8 B中微子通量比,因此有待进一步研究。最后,我们讨论了在标准太阳模型的框架内,通过使用反应速率,丰度和中微子俘获截面在不确定性的限制下可以缓解多少中微子问题,同时仍然满足流变学的约束。

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