论文标题

Matlas-2019与Muse的光谱研究:一个超湿的银河系

A spectroscopic study of MATLAS-2019 with MUSE: an ultra-diffuse galaxy with an excess of old globular clusters

论文作者

Müller, Oliver, Marleau, Francine R., Duc, Pierre-Alain, Habas, Rebecca, Fensch, Jérémy, Emsellem, Eric, Poulain, Mélina, Lim, Sungsoon, Agnello, Adriano, Durrell, Patrick, Paudel, Sanjaya, Sánchez-Janssen, Rubén, van der Burg, Remco F. J.

论文摘要

Matlas Deep Imaging调查在其绘制的低密度环境中发现了许多矮星系。其中的一小部分是异常扩展的,并且具有低表面亮度。在这些所谓的超湿星系中,一些似乎容纳了过量的球形簇。通过积分场单元光谱仪缪斯缪斯(Matlas J15052031+0148447(MATLAS -2019) - 位于附近的NGC 5846组,并测量了其系统的速度,年龄和金属性,以及其球状群集候选人的候选者。对于Matlas-2019的恒星体,我们得出了-1.33+0.19-0.01 DEX的金属性,年龄为11.2+1.8-0.8 GYR。对于某些单独的GC和堆叠的GC人群,我们得出了一致的年龄和金属性。从11个确认的球状簇并使用马尔可夫链蒙特卡洛方法中,我们得出了4.2+8.6-34m/l的动态质量与光比。这是由局部组矮星系定义的光度质量缩放关系的下端。此外,我们无法确认或拒绝GC系统旋转组件的可能性。如果存在,这将进一步修改推断的质量。需要对球状簇种群和星系的恒星体的后续观察进行评估,以评估该星系是否缺乏暗物质,例如NGC 1052领域的一对矮星系,或者这是由于这些系统的系统和无限范围的系统不确定而引起的,或者这是一个遇到的矮小的矮人。

The MATLAS deep imaging survey has uncovered a plethora of dwarf galaxies in the low density environment it has mapped. A fraction of them are unusually extended and have a low-surface brightness. Among these so-called ultra-diffuse galaxies, a few seem to host an excess of globular clusters. With the integral-field unit spectrograph MUSE we have observed one of these galaxies - MATLAS J15052031+0148447 (MATLAS-2019) - located towards the nearby group NGC 5846 and measured its systemic velocity,age, and metallicity, and that of its globular clusters candidates. For the stellar body of MATLAS-2019 we derive a metallicity of -1.33+0.19-0.01 dex and an age of 11.2+1.8-0.8 Gyr. For some of the individual GCs and the stacked GC population, we derive consistent ages and metallicities. From the 11 confirmed globular clusters and using a Markov Chain Monte Carlo approach we derived a dynamical mass-to-light ratio of 4.2+8.6-3.4M/L. This is at the lower end of the luminosity-mass scaling relation defined by the Local Group dwarf galaxies. Furthermore, we couldn't confirm nor reject the possibility of a rotational component of the GC system. If present, this would further modify the inferred mass. Follow-up observations of the globular cluster population and of the stellar body of the galaxy are needed to assess whether this galaxy is lacking dark matter like it was suggested for the pair of dwarf galaxies in the field of NGC 1052, or if this is a miss-interpretation arising from systematic uncertainties of the method commonly used for these systems and the large uncertainties of the individual globular cluster velocities.

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