论文标题

在处女座超扩散星系VCC 1287的恒星运动学和质量上

On the Stellar Kinematics and Mass of the Virgo Ultra-Diffuse Galaxy VCC 1287

论文作者

Gannon, Jonah S., Forbes, Duncan A., Romanowsky, Aaron J., Ferré-Mateu, Anna, Couch, Warrick J., Brodie, Jean P.

论文摘要

在这里,我们根据使用Keck Cosmic Web Imager(KCWI)获取的数据,对处女座群集超扩散星系(UDG)VCC 1287进行运动学分析。我们确认VCC 1287与处女座群集及其球形群集(GC)系统的关联,测量损耗$ 1116 \ pm 2 \ \ mathrm {km \ s^{ - 1}} $。我们测量一个恒星速度分散($ 19 \ pm 6 \ \ \ \ \ \ \ \ \ s \ s^{ - 1}} $),并推断两个动态质量($ 1.11^{+0.81} _ { - 0.81} ($ 13^{+11} _ { - 11} $)在半径半径(4.4 kpc)中。这使VCC 1287略高于正常星系的良好建立关系,其动态质量比正常星系更高。我们使用动力学质量和GC系统丰富度的估计值将VCC 1287放在GC数字上 - 动态质量关系,与正常星系样本找到良好的一致性。基于来自GC计数的总光晕质量,我们推断VCC 1287可能驻留在核或低浓度的暗物质晕中。基于我们的测量结果与模拟预测的比较,我们发现强烈的恒星反馈和/或潮汐效应是VCC 1287形成的主要机制。最后,我们将动力质量与其他UDGS的动力质量进行比较。这些动态质量估计值表明至少某些UDGs相对较大的光环和失败的星系起源。

Here, we present a kinematical analysis of the Virgo cluster ultra-diffuse galaxy (UDG) VCC 1287 based on data taken with the Keck Cosmic Web Imager (KCWI). We confirm VCC 1287's association both with the Virgo cluster and its globular cluster (GC) system, measuring a recessional velocity of $1116 \pm 2\ \mathrm{km\ s^{-1}}$. We measure a stellar velocity dispersion ($19 \pm 6\ \mathrm{km\ s^{-1}}$) and infer both a dynamical mass ($1.11^{+0.81}_{-0.81} \times 10^{9} \ \mathrm{M_{\odot}}$) and mass to light ratio ($13^{+11}_{-11}$) within the half light radius (4.4 kpc). This places VCC 1287 slightly above the well established relation for normal galaxies, with a higher mass to light ratio for its dynamical mass than normal galaxies. We use our dynamical mass, and an estimate of GC system richness, to place VCC 1287 on the GC number -- dynamical mass relation, finding good agreement with a sample of normal galaxies. Based on a total halo mass derived from GC counts, we then infer that VCC 1287 likely resides in a cored or low concentration dark matter halo. Based on the comparison of our measurements to predictions from simulations, we find that strong stellar feedback and/or tidal effects are plausibly the dominant mechanisms in the formation of VCC 1287. Finally, we compare our measurement of the dynamical mass with those for other UDGs. These dynamical mass estimates suggest relatively massive halos and a failed galaxy origin for at least some UDGs.

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