论文标题

大规模调查XIV-巨大的早期型星系中200 pc至20 kpc的恒星速度曲线和运动学错位

The MASSIVE Survey XIV -- Stellar Velocity Profiles and Kinematic Misalignments from 200 pc to 20 kpc in Massive Early-type Galaxies

论文作者

Ene, Irina, Ma, Chung-Pei, Walsh, Jonelle L., Greene, Jenny E., Thomas, Jens, Blakeslee, John P.

论文摘要

我们使用高高的空间分辨率恒星速度图,来自GMINI GMOS Integral-Field光谱仪(IFS)和麦克唐纳·米切尔(McDonald Mitchell)IFS的宽田速度图,以研究$ \ sim 200 $ \ sim $ \ sim 20 $ kpc in 20 $ kpc in 20 in 20 in $ \ sim pc in 20 in 20 in大规模调查中的10^{11.7} m_ \ odot $。虽然80%的星系具有低旋转($λ<0.1 $)和中央区域和主体的低旋转速度($ <50 $ km/s),但我们发现了各种速度特征和未对准角度。对于具有可测量的中央运动轴的18个星系,有10个具有很好的对齐运动轴和光度计的主要轴,而其他8个星系具有未对准的角度,这些角度的分布得很均匀地分布在$ 15^\ circe $到最大值的最大值$ 90^\ circ $。中央运动学错位与星系自旋之间存在很强的相关性,其中所有具有重要旋转的4个星系均具有很好的对齐运动轴和光度轴,但是只有43%的低自旋星系对齐。星系中的中央和主要运动轴并不总是对齐。当将两个运动轴对准($ \ sim 60 $占情况)时,它们也可以与光度法主要轴或正交对齐。我们发现13个星系也表现出明显的局部运动学曲折,还有一个星系具有反向旋转的核心。由多种祖先质量比和轨道组成的多种贫困合并组成的各种组装历史可能需要考虑到低自旋的占主导地位以及此处报道的局部大型ETG的中央和主要速度特征的广泛范围。

We use high spatial resolution stellar velocity maps from the Gemini GMOS integral-field spectrograph (IFS) and wide-field velocity maps from the McDonald Mitchell IFS to study the stellar velocity profiles and kinematic misalignments from $\sim 200$ pc to $\sim 20$ kpc in 20 early-type galaxies with stellar mass $M_* > 10^{11.7} M_\odot$ in the MASSIVE survey. While 80% of the galaxies have low spins ($λ< 0.1$) and low rotational velocities ($< 50$ km/s) in both the central region and the main body, we find a diverse range of velocity features and misalignment angles. For the 18 galaxies with measurable central kinematic axes, 10 have well aligned kinematic axis and photometric major axis, and the other 8 galaxies have misalignment angles that are distributed quite evenly from $15^\circ$ to the maximal value of $90^\circ$. There is a strong correlation between central kinematic misalignment and galaxy spin, where all 4 galaxies with significant spins have well aligned kinematic and photometric axes, but only 43% of the low-spin galaxies are well aligned. The central and main-body kinematic axes within a galaxy are not always aligned. When the two kinematic axes are aligned ($\sim 60$% of the cases), they are either also aligned with the photometric major axis or orthogonal to it. We find 13 galaxies to also exhibit noticeable local kinematic twists, and one galaxy to have a counter-rotating core. A diverse assembly history consisting of multiple gas-poor mergers of a variety of progenitor mass ratios and orbits is likely to be needed to account for the predominance of low spins and the wide range of central and main-body velocity features reported here for local massive ETGs.

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