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High-Dispersion Spectroscopic Study of Solar Twins:HIP 56948, HIP 79672, and HIP 100963

机译:太阳双子的高色散光谱研究:HIP 56948,HIP 79672和HIP 100963

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摘要

An intensive spectroscopic study was performed for three representative solar twins (HIP 56948, HIP 79672, and HIP 100963) as well as for the Sun (Moon; reference standard), with intentions of (1) quantitatively discussing the relative-to-Sun similarities based on the precisely established differential parameters and (2) investigating the reason that causes the Li abundance differences, despite their similarities. It was concluded that HIP 56948 most resembles the Sun in every respect, including the Li abundance (though not perfectly similar) among the three, and deserves the name of "closest-ever solar twin", while HIP 79672 and HIP 100963 have a somewhat higher effective temperature and appreciably higher surface Li composition. While there is an indication of Li being rotation-dependent, because the projected rotation in HIP 56948 (and the Sun) is slightly lower than the other two, the rotational difference alone does not seem to be so large as to efficiently produce a marked change in Li. Rather, this may be more likely to be attributed (at least partly) to a slight difference in Teff via some Teff -sensitive Li-controlling mechanism. Since the abundance of Be was found to be essentially solar for all stars irrespective of Li, any physical process causing the Li diversity should work only on Li without affecting Be.
机译:对三个代表性的太阳双胞胎(HIP 56948,HIP 79672和HIP 100963)以及太阳(月球;参考标准)进行了深入的光谱研究,目的是(1)定量讨论太阳相对的相似性基于精确建立的微分参数,以及(2)研究造成Li丰度差异的原因,尽管它们相似。得出的结论是,HIP 56948在各个方面都与太阳最相似,包括三者中的锂丰度(尽管并不完全相似),并应冠以“有史以来最紧密的太阳双生子”的名称,而HIP 79672和HIP 100963则有点类似。较高的有效温度和明显较高的表面Li组成。尽管有迹象表明Li依赖于旋转,但是由于HIP 56948(和太阳)中的预计旋转略低于其他两个,因此仅旋转差似乎并不大,无法有效地产生明显的变化。在李。而是,这可能更可能归因于(至少部分地)通过一些对Teff敏感的Li控制机制在Teff中的细微差异。由于发现对​​于所有恒星而言,无论Li多少,Be的丰度基本上都是太阳的,因此导致Li多样性的任何物理过程都应仅对Li起作用而不影响Be。

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