论文标题
银河系和仙女座是不寻常的吗?与银河系和仙女座类似物的比较
Are the Milky Way and Andromeda unusual? A comparison with Milky Way and Andromeda Analogs
论文作者
论文摘要
我们的银河系为银河进化模型提供了独特的测试案例,这要归功于我们在银河系中的特权位置。由于我们无法从外部的角度观察银河系,因此该位置也使银河系与外部星系之间的比较复杂化。银河系模拟星系为我们提供了通过提供原本缺乏的外部观点来弥合这种鸿沟的机会。但是,“模拟”的过度定义几乎没有到达星系,因此了解哪些选择标准产生最有意义的模拟样本至关重要。为了解决这个问题,我们比较了使用不同标准选择的银河系类似物的互补样品的属性。在大多数情况下,我们发现在类似物的1 $σ$之内,我们发现了银河系的方式,但在大多数情况下,我们发现银河系与圆盘尺度长度方面的类似物之间的较大偏移;这表明,如果选择最准确的类似物,则必须在模拟选择中包含比例长度。我们还将方法应用于邻近的仙女座星系。我们发现基于强大的形态特征选择的类似物以表现出比仙女座更高的恒星形成率,并且我们还发现在仙女座的恒星形成率上选择的类似物以预测过度预测仙女座的凸起范围。这表明在选择最严格的仙女座类似物时,应考虑结构和恒星形成率。
Our Milky Way provides a unique test case for galaxy evolution models, thanks to our privileged position within the Milky Way's disc. This position also complicates comparisons between the Milky Way and external galaxies, due to our inability to observe the Milky Way from an external point of view. Milky Way analog galaxies offer us a chance to bridge this divide by providing the external perspective that we otherwise lack. However, over-precise definitions of "analog" yield little-to-no galaxies, so it is vital to understand which selection criteria produce the most meaningful analog samples. To address this, we compare the properties of complementary samples of Milky Way analogs selected using different criteria. We find the Milky Way to be within 1$σ$ of its analogs in terms of star-formation rate and bulge-to-total ratio in most cases, but we find larger offsets between the Milky Way and its analogs in terms of disc scale length; this suggests that scale length must be included in analog selections in addition to other criteria if the most accurate analogs are to be selected. We also apply our methodology to the neighbouring Andromeda galaxy. We find analogs selected on the basis of strong morphological features to display much higher star-formation rates than Andromeda, and we also find analogs selected on Andromeda's star-formation rate to over-predict Andromeda's bulge extent. This suggests both structure and star-formation rate should be considered when selecting the most stringent Andromeda analogs.