论文标题
具有高$ s_n $值的现场/孤立的宽膜星系:NGC 4546及其球形群集系统的情况
Field/Isolated lenticular galaxies with high $S_N$ values: the case of NGC 4546 and its globular cluster system
论文作者
论文摘要
我们介绍了使用G'R'i'z'中的双子座/gmos成像的磁铁膜状星系NGC 4546的光度研究。我们使用Galfit对星系的表面亮度分布进行2D图像分解,发现四个成分充分描述了它。该模型从我们的图像和颜色图的构造中减去,使我们能够详细检查银河中心周围的不对称灰尘结构。此外,我们对NGC 4546的球状簇(GC)系统进行了详细分析。使用高斯混合模型算法在颜色颜色平面中我们检测到了多个GC候选者的提示:经典的蓝色和红色子访问量:具有浓度的空间分布的中间颜色,并呈现出浓度的分布,并呈现出了浓度的颜色,并呈现出浓度的分布,并呈现了一个其他的颜色。我们估计NGC 4546的总GC人口为$ 390 \ pm60 $成员和特定的频率$ s_n = 3.3 \ pm0.7 $,与类似质量和环境的星系的典型值相比,这相对较高。我们建议在该系统中发现的年轻超紧凑型矮人(NGC 4546-UCD1)的相互作用中可能形成了异常的GC种群子结构。最后,我们通过分析其光度函数来估计NGC 4546的距离模量,从而导致$(m-m)= 30.75 \ pm0.12 $ mag(14.1 mpc)。
We present a photometric study of the field lenticular galaxy NGC 4546 using Gemini/GMOS imaging in g'r'i'z'. We perform a 2D image decomposition of the surface brightness distribution of the galaxy using GALFIT, finding that four components adequately describe it. The subtraction of this model from our images and the construction of a colour map allow us to examine in great detail the asymmetric dust structures around the galactic centre. In addition, we perform a detailed analysis of the globular cluster (GC) system of NGC 4546. Using a Gaussian Mixture Model algorithm in the colour-colour plane we detected hints of multiple groups of GC candidates: the classic blue and red subpopulations, a group with intermediate colours that present a concentrated spatial distribution towards the galaxy, and an additional group towards the red end of the colour distribution. We estimate a total GC population for NGC 4546 of $390\pm60$ members and specific frequency $S_N=3.3\pm0.7$, which is relatively high compared to the typical value for galaxies of similar masses and environment. We suggest that the unusual GC population substructures were possibly formed during the interaction that led to the formation of the young ultra-compact dwarf (NGC 4546-UCD1) found in this system. Finally, we estimate the distance modulus of NGC 4546 by analyzing its luminosity function, resulting in $(m-M)=30.75\pm0.12$ mag (14.1 Mpc).