论文标题
VMC调查-XL。小麦芽云的三维结构,来自红色团星星
The VMC Survey -- XL. Three-dimensional structure of the Small Magellanic Cloud as derived from red clump stars
论文作者
论文摘要
星系相互作用扭曲了男气质物质的分布,并可能影响恒星形成。附近的麦芽云是正在进行的星系相互作用过程的一个典型例子。在这里,我们使用中级年龄($ \ sim1 $ - $ 10 $ gyr)红色团星来绘制小麦哲伦云(SMC)的三维结构,并在其与大麦哲伦云(LMC)互动史的背景下对其进行解释。根据麦哲伦云的Vista调查数据,从近红外颜色磁性图中选择红色团块。测量并去除星际红色,并以星级的基础将校正后的亮度转换为距离。一个安装在红色团星空间分布的平面具有倾斜度$ i = 35°$ - $ 48°$和位置角度PA $ = 170°$ - $ 186°$。但是,可以看到与该平面的显着偏差,尤其是在SMC的外侧和东侧。在后一部分中,存在两个不同的种群,在距离内分开多达10 kpc。在SMC的北部以及可能在遥远的西部看到了遥远的红色团星。这些可能与预测的“反桥”有关。我们还提出了一个灰尘红色的地图,这表明灰尘通常会追溯恒星质量。 SMC的中级恒星成分的结构带有与LMC几个GYR的强烈相互作用的烙印,这不能纯粹是潮汐,但必须涉及RAM压力剥离。
Galaxy interactions distort the distribution of baryonic matter and can affect star formation. The nearby Magellanic Clouds are a prime example of an ongoing galaxy interaction process. Here we use the intermediate-age ($\sim1$-$10$ Gyr) red clump stars to map the three-dimensional structure of the Small Magellanic Cloud (SMC) and interpret it within the context of its history of interaction with the Large Magellanic Cloud (LMC) and the Milky Way. Red clump stars are selected from near-infrared colour-magnitude diagrams based on data from the VISTA survey of the Magellanic Clouds. Interstellar reddening is measured and removed, and the corrected brightness is converted to a distance, on a star-by-star basis. A flat plane fitted to the spatial distribution of red clump stars has an inclination $i=35°$-$48°$ and position angle PA$=170°$-$186°$. However, significant deviations from this plane are seen, especially in the periphery and on the eastern side of the SMC. In the latter part, two distinct populations are present, separated in distance by as much as 10 kpc. Distant red clump stars are seen in the North of the SMC, and possibly also in the far West; these might be associated with the predicted `Counter-Bridge'. We also present a dust reddening map, which shows that dust generally traces stellar mass. The structure of the intermediate-age stellar component of the SMC bears the imprints of strong interaction with the LMC a few Gyr ago, which cannot be purely tidal but must have involved ram pressure stripping.