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首页> 外文期刊>The Astrophysical journal >EXPLORING HALO SUBSTRUCTURE WITH GIANT STARS. XIV. THE NATURE OF THE TRIANGULUM-ANDROMEDA STELLAR FEATURES
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EXPLORING HALO SUBSTRUCTURE WITH GIANT STARS. XIV. THE NATURE OF THE TRIANGULUM-ANDROMEDA STELLAR FEATURES

机译:用巨星探索光环结构。十四。 TIANGULUM-ANDROMEDA卫星特征的性质

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As large-scale stellar surveys have become available over the past decade, the ability to detect and characterize substructures in the Galaxy has increased dramatically. These surveys have revealed the Triangulum-Andromeda (TriAnd) region to be rich with substructures in the distance range 20-30 kpc, and the relation of these features to each other, if any, remains unclear. An exploration using Two Micron All Sky Survey (2MASS) photometry reveals not only the faint sequence in M?giants detected by Rocha-Pinto et?al. spanning the range 100° l 160° and –50° b –15°, but, in addition, a second, brighter and more densely populated sequence. These sequences are likely associated with the distinct main sequences (MSs) discovered (and labeled TriAnd1 and TriAnd2) by Martin et?al. in an optical survey in the direction of M31, where TriAnd2 is the optical counterpart of the fainter red giant branch (RGB)/asymptotic giant branch sequence of Rocha-Pinto et?al. Here, the age, distance, and metallicity ranges for TriAnd1 and TriAnd2 are estimated by simultaneously fitting isochrones to the 2MASS RGB tracks and the optical MS/MS turn-off features. The two populations are clearly distinct in age and distance: the brighter sequence (TriAnd1) is younger (6-10 Gyr) and closer (distance of ~15-21 kpc), whereas the fainter sequence (TriAnd2) is older (10-12 Gyr) and at an estimated distance of ~24-32 kpc. A comparison with simulations demonstrates that the differences and similarities between TriAnd1 and TriAnd2 can simultaneously be explained if they represent debris originating from the disruption of the same dwarf galaxy, but torn off during two distinct pericentric passages.
机译:在过去的十年中,随着大规模恒星测量的出现,检测和表征银河系中子结构的能力急剧增加。这些调查显示Triangulum-Andromeda(TriAnd)地区富含20-30 kpc距离的子结构,这些特征彼此之间的关系(如果有的话)仍然不清楚。使用“两微米全天候测量”(2MASS)光度法进行的探索不仅揭示了Rocha-Pinto等人检测到的巨人的微弱序列。范围为100°

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