论文标题

关于巨型星星的光谱年龄指标[Y/mg],[Y/al],[y/si],[y/ca]和[y/ti]的有效性[Y/mg]

On the validity of the spectroscopic age indicators [Y/Mg], [Y/Al], [Y/Si], [Y/Ca], and [Y/Ti] for giant stars

论文作者

Santrich, Orlando J. Katime, Kerber, Leandro, Abuchaim, Yuri, Gonçalves, Geraldo

论文摘要

已建议丰度比[y $/$ mg],[y $/$ al],[y $/$ si],[y $/$ ca]和[y $/$/$ ti]作为太阳能 - 金属金属型矮人的化学时钟,以及野外巨大的星星中的巨星。为了验证最后一个假设,我们得出了属于七个开放群体的50个巨星的这些丰度比。为了计算丰度,我们分析了假设LTE - 假设发生的Feros光谱。我们确认[y $/$ mg],[y $/$ al],[y $/$ si],[y $/$ ca]和[y $/$/$/$ ti]作为当地地区的菲尔德矮人星星(D $ <$ <$ 1 kpc)的化学时钟,而现场巨头则是[y $/$ $/$/$/$/$/$/$/$/$/$/$/$/$/$/$/$/$/$],但散射。 [y $/$ ca]和[y $/$ ti]与现场巨人的年龄没有任何相关性。在我们的开放群集中,行为相似,[y $/$ mg],[y $/$ al]和[y $/$ si]的趋势很明显,而[y $/$ ca]与年龄是平坦的,[y $/$ ti] vs. vs. vs. vs. vs. vs.年龄较小。我们还确认化学时钟在早期具有高散射。在编译样品的情况下,化学时钟与我们的结果相似,但是在某些情况下,存在重要差异。分析矮人和巨人时,可以获得丰度和年龄之间的几个关系,从而证实了光谱年龄指标的非宇宙性。

The abundance ratios [Y$/$Mg], [Y$/$Al], [Y$/$Si], [Y$/$Ca], and [Y$/$Ti] have been suggested as chemical clocks for solar-metallicity dwarf stars in the field as well as for giant stars in open clusters. To verify this last hypothesis, we derive these abundances ratios of 50 giant stars belonging to seven open clusters. To calculate the abundances, we analyze FEROS spectra assuming the LTE-hypothesis. We confirm that [Y$/$Mg], [Y$/$Al], [Y$/$Si], [Y$/$Ca], and [Y$/$Ti] work as chemical clocks for field dwarf stars at the local region (d $<$ 1 kpc) whereas for the field giants the [Y$/$Mg], [Y$/$Al] and [Y$/$Si] also present trends with the ages but high scattering. [Y$/$Ca] and [Y$/$Ti] do not present any correlation with ages in the field giants. In Our open clusters, the behaviour is similar, [Y$/$Mg], [Y$/$Al] and [Y$/$Si] present evident trends, whereas [Y$/$Ca] vs. Ages is a flat and [Y$/$Ti] vs. Ages is less steep. We also confirm that the chemical clocks have high scatter at the early ages. In the case of the compiled sample, the chemical clocks are similar to our results but in some situations there are important differences. Several relations between abundance ratios and ages may be obtained when dwarfs and giants are analyzed, confirming the non-universality of the spectroscopic age indicators.

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