银河系隆起的探索

IF 5.8 2区 物理与天体物理 Q1 ASTRONOMY & ASTROPHYSICS
Z. Prudil, A. Kunder, L. Beraldo e Silva, S. Gough-Kelly, M. Rejkuba, S. R. Anderson, V. P. Debattista, O. Gerhard, R. M. Rich, D. M. Nataf, A. J. Koch-Hansen, A. Savino, I. Dékány
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引用次数: 0

摘要

朝向银河系凸起的RR天琴座恒星被用来研究这些古老的恒星群是否能追踪到银河系的横条。虽然众所周知,棒状星系在银河系内部占主导地位,但对于构成凸起中一些最古老恒星的天琴座RR星群是否对棒状凸起有贡献,人们还没有达成共识,这些恒星群可以追溯到恒星形成的最早时期。我们利用改进的天琴座RR周期-绝对星等-金属丰度关系,创建了新的变红图,并从视觉到近红外波段推导了新的消光规律,从而实现了对单个凸起天琴座RR变量的距离估计。消光规律在和中最为一致,根据这些颜色确定到单个天琴座RR星的距离的准确率分别为6%和4%。仅使用近红外波段进行距离估计,我们推断出几何校正后到银河系中心的距离等于pc。我们的研究表明,银河系凸起的消光规律的变化可以模拟视觉波段中凸出的天琴座RR星群的条状空间分布。这是由于沿银河系经度和纬度的消光差异梯度引起的,这可以产生对银河条的感知,特别是当使用基于视觉波段的距离时。当使用近红外波段为基础的距离时,以及当将变红规律变化纳入视觉波段为基础的距离时,天琴座RR空间分布中的条形角消失。由天琴座RR星追踪的天琴座RR星的突出取决于它们的金属丰度,金属贫乏的天琴座RR星([Fe/H] < - 1.0指数)相对于天琴座几乎没有倾斜。富金属([Fe/H] >−1.0指数)RR Lyrae恒星在近红外距离得出的空间特性中确实显示出棒状凸起特征,其角度为ι = 18±5度,与文献中先前的棒状测量结果一致。这也暗示了天琴座RR亚群的年龄更小。主要基于横向速度的5D运动学分析表明,与红团巨星相比,天琴座RR恒星的旋转滞后。尽管在消光律的变化,我们的运动学结论是鲁棒跨不同的距离估计方法。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
The Galactic bulge exploration
RR Lyrae stars toward the Galactic bulge are used to investigate whether this old stellar population traces the Galactic bar. Although the bar is known to dominate the mass in the inner Galaxy, there is no consensus on whether the RR Lyrae star population, which constitutes some of the most ancient stars in the bulge and thus traces the earliest epochs of star formation, contributes to the barred bulge. We create new reddening maps and derive new extinction laws from visual to near-infrared passbands using improved RR Lyrae period-absolute magnitude-metallicity relations, enabling distance estimates for individual bulge RR Lyrae variables. The extinction law is most uniform in and and the distances to individual RR Lyrae based on these colors are determined with an accuracy of 6 and 4%, respectively. Using only the near-infrared passbands for distance estimation, we infer the distance to the Galactic center equal to pc after geometrical correction. We show that variations in the extinction law toward the Galactic bulge can mimic a barred spatial distribution in the bulge RR Lyrae star population in visual passbands. This arises from a gradient in extinction differences along Galactic longitudes and latitudes, which can create the perception of the Galactic bar, particularly when using visual passband-based distances. A barred angle in the RR Lyrae spatial distribution disappears when near-infrared passband-based distances are used, as well as when reddening law variations are incorporated in visual passband-based distances. The prominence of the bar, traced by RR Lyrae stars, depends on their metallicity, with metal-poor RR Lyrae stars ([Fe/H] < −1.0 dex) showing little to no tilt with respect to the bar. Metal-rich ([Fe/H] > −1.0 dex) RR Lyrae stars do show a barred bulge signature in spatial properties derived using near-infrared distances, with an angle of ι = 18 ± 5 deg, consistent with previous bar measurements from the literature. This also hints at a younger age for this RR Lyrae subgroup. The 5D kinematic analysis, primarily based on transverse velocities, indicates a rotational lag in RR Lyrae stars compared to red clump giants. Despite variations in the extinction law, our kinematic conclusions are robust across different distance estimation methods.
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来源期刊
Astronomy & Astrophysics
Astronomy & Astrophysics 地学天文-天文与天体物理
CiteScore
10.20
自引率
27.70%
发文量
2105
审稿时长
1-2 weeks
期刊介绍: Astronomy & Astrophysics is an international Journal that publishes papers on all aspects of astronomy and astrophysics (theoretical, observational, and instrumental) independently of the techniques used to obtain the results.
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