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首页> 外文期刊>Astronomy and astrophysics >Gaia TGAS search for Large Magellanic Cloud runaway supergiant stars - Candidate hypervelocity star discovery and the nature of R?71
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Gaia TGAS search for Large Magellanic Cloud runaway supergiant stars - Candidate hypervelocity star discovery and the nature of R?71

机译:盖亚TGAS搜索大型麦哲伦云失控超巨星 - 候选超型明星发现和r的性质 - 71

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Aims. Our research aims to search for runaway stars in the Large Magellanic Cloud (LMC) among the bright H ipparcos supergiant stars included in the Gaia DR1 Tycho - Gaia astrometric solution (TGAS) catalogue. Methods. We compute the space velocities of the visually brightest stars in the Large Magellanic Cloud that are included in the TGAS proper motion catalogue. This sample of 31 stars contains a luminous blue variable (LBV), emission line stars, blue and yellow supergiants, and an SgB[e] star. We combine these results with published radial velocities to derive their space velocities, and by comparing with predictions from stellar dynamical models we obtain each star’s (peculiar) velocity relative to its local stellar environment. Results. Two of the 31 stars have unusually high proper motions. Of the remaining 29 stars we find that most objects in this sample have velocities that are inconsistent with a runaway nature, being in very good agreement with model predictions of a circularly rotating disk model. Indeed the excellent fit to the model implies that the TGAS uncertainty estimates are likely overestimated. The fastest outliers in this subsample contain the LBV R?71 and a few other well known emission line objects though in no case do we derive velocities consistent with fast ( ~ 100?km?s ~(-1) ) runaways. On the contrary our results imply that R?71 in particular has a moderate deviation from the local stellar velocity field (40?km?s ~(-1) ) lending support to the proposition that this object cannot have evolved as a normal single star since it lies too far from massive star forming complexes to have arrived at its current position during its lifetime. Our findings therefore strengthen the case for this LBV being the result of binary evolution. Of the two stars with unusually high proper motions we find that one, the isolated B1.5 Ia ~(+) supergiant Sk-67?2 (HIP?22237), is a candidate hypervelocity star, the TGAS proper motion implying a very large peculiar transverse velocity ( ~ 360?km?s ~(-1) ) directed radially away from the LMC centre. If confirmed, for example by Gaia Data Release 2, it would imply that this massive supergiant, on the periphery of the LMC, is leaving the galaxy where it will explode as a supernova.
机译:目标。我们的研究旨在在Gaia Dr1 Tycho - Gaia Astrometric Solution(TGA)目录中的明亮H iPparcos超巨星中搜索大型麦哲伦云(LMC)中的失控星星。方法。我们计算在TGAS适当的运动目录中包含的大型麦哲伦云中视觉最亮星的空间速度。该样本为31颗恒星含有发光蓝色变量(LBV),排放线恒星,蓝色和黄色超强峰,以及SGB [E]星。我们将这些结果与公开的径向速度结合起来,以得出它们的空间速度,并且通过与恒星动态模型的预测相比,我们获得相对于其当地恒星环境的每个星的(特有的)速度。结果。 31颗恒星中的两个具有异常高的适当运动。在剩下的29颗星中,我们发现这个样本中的大多数物体具有与失控性质不一致的速度,与圆形旋转磁盘模型的模型预测非常好。实际上,对模型的优异拟合意味着TGA不确定性估计可能大得多。该子样本中最快的异常值包含LBV r?71和一些其他众所周知的排放线对象,尽管我们在绝不函数不快(〜100?km?s〜(-1))runawayay。相反,我们的结果暗示R?71特别是与局部恒星速度场的中等偏差(40 km?s〜(-1))借给该对象不能作为正常单星的命题的主张贷款支持由于它在于巨大的恒星形成复合物,因此在其寿命期间到达其当前位置。因此,我们的研究结果加强了这种LBV的情况是二元进化的结果。两颗星星具有异常高的适当动作,我们发现一个,孤立的B1.5 Ia〜(+)超巨星SK-67?2(臀部?22237),是一个候选超型明星,TGA适当的运动意味着非常大径向远离LMC中心径向远离LMC中心的特殊横向速度(〜360 km?s〜(-1))。例如,如果确认,例如通过盖亚数据发布2,这将意味着这种巨大的超级巨型,在LMC的周边,正在离开银河系,在那里它将爆炸为超新星。

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