论文标题

NGC 6397:沿等速线沿线的金属趋势重新审视

NGC 6397: The metallicity trend along the isochrone revisited

论文作者

Jain, Rashi, Prugniel, Philippe, Martins, Lucimara, Lançon, Ariane

论文摘要

最近的工作使用了NGC 6397中大约5000颗恒星的光谱,这些光谱是从缪斯马赛克中提取的,通过将光谱拟合到Goettingen Spectral库中,以确定这些恒星的大气参数。发现了关闭和红色巨型分支之间的金属性发生重大变化,并讨论了原子扩散效应的可能表现。但是,在解释结果之前,效果的幅度很小,并且与早期测量值的不一致需要更多的关注。由于插值或合成光谱而导致的系统效应不能在此精确度上排除。我们将数据与Elodie和Miles参考库重新分析,以评估结果的鲁棒性。这些经验文库的金属覆盖范围更细,降低到群集金属的关闭。我们使用了尤利斯(Ulyss)的全光谱拟合包装,并与库插造器一起使用三个大气参数有效温度,表面重力和[Fe/H]金属性。我们发现沿等异隆(0.07 dex)的[Fe/h]分散液非常低,与我们的误差估计值(0.05 DEX)一致。但是,[Fe/H]趋势不可再现。这表明数据有可能揭示预期物理效应的幅度的模式,但是需要完善分析方法以促进当前主导模式的系统效应。

Recent work has used spectra of about 5000 stars in NGC 6397 that were extracted from a MUSE mosaic to determine the atmospheric parameters for these stars by fitting the spectra against the Goettingen Spectral Library. A significant change in metallicity between the turn off and the red giant branch was found and was discussed as a possible manifestation of predicted effects of atomic diffusion. However, the small amplitude of the effect and inconsistency with earlier measurements call for more attention before this result is interpreted. Systematic effects due to the interpolation or to the synthetic spectra cannot be ruled out at this level of precision. We reanalyze the data with the ELODIE and MILES reference libraries in order to assess the robustness of the result. These empirical libraries have a finer metallicity coverage down to approximately the cluster metalicity turn-off. We used the ULySS full-spectrum fitting package, together with the library interpolators to remeasure the three atmospheric parameters effective temperature, surface gravity, and [Fe/H] metallicity. We find a very low [Fe/H] dispersion along the isochrone (0.07 dex), consistent with our error estimate (0.05 dex). However, the [Fe/H] trend is not reproducible. This shows that the data have the potential to reveal patterns of the magnitude of the expected physical effects, but the analysis methods need to be refined to cull systematic effects that currently dominate the patterns.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源