论文标题

揭示小麦哲伦云的潮汐疤痕

Revealing the tidal scars of the Small Magellanic Cloud

论文作者

De Leo, Michele, Carrera, Ricardo, Noel, Noelia E. D., Read, Justin I., Erkal, Denis, Gallart, Carme

论文摘要

由于它们的近距离,大小的麦哲伦云(SMC/LMC)提供了自然实验室,以了解星系的形成和发展。为了确定SMC的结构和动态状态,我们为$ \ sim $ \ sim $ 3000 SMC红色巨型分支星星提供了新的光谱数据,该数据使用盎格鲁 - 澳大利亚望远镜上的Aaomega光谱仪观察到。我们通过以前的研究进行了进一步的光谱测量值,这些研究使用了相同的仪器配置和从\ textit {gaia}数据发布2目录中的适当动作。分析光度法和出色的运动学数据,我们发现SMC质量中心呈现出与其相关的$ \ mbox {h \,{\ sc i}} $气体的显着偏移,这表明SMC气体可能远离动态平衡。此外,我们发现证据表明,SMC目前正在SMC中心的2 \ KPC之内,LMC正在遭受潮汐破坏,并可能一直到达核心。恒星从SMC中心沿着LMC的方向以及所有半径的明显切向各向异性的恒星向外运动证明了这一点。如果SMC正在进行重要的潮汐剥离,则可以预期后者,因为我们使用SMC/LMC系统的$ n $ body模拟套件证明了围绕银河系的仿真。这些结果表明,假定稳态的SMC的动态模型将需要重新审视。

Due to their close proximity, the Large and Small Magellanic Clouds (SMC/LMC) provide natural laboratories for understanding how galaxies form and evolve. With the goal of determining the structure and dynamical state of the SMC, we present new spectroscopic data for $\sim$ 3000 SMC red giant branch stars observed using the AAOmega spectrograph at the Anglo-Australian Telescope. We complement our data with further spectroscopic measurements from previous studies that used the same instrumental configuration and proper motions from the \textit{Gaia} Data Release 2 catalogue. Analysing the photometric and stellar kinematic data, we find that the SMC centre of mass presents a conspicuous offset from the velocity centre of its associated $\mbox{H\,{\sc i}}$ gas, suggesting that the SMC gas is likely to be far from dynamical equilibrium. Furthermore, we find evidence that the SMC is currently undergoing tidal disruption by the LMC within 2\,kpc of the centre of the SMC, and possibly all the way in to the very core. This is evidenced by a net outward motion of stars from the SMC centre along the direction towards the LMC and apparent tangential anisotropy at all radii. The latter is expected if the SMC is undergoing significiant tidal stripping, as we demonstrate using a suite of $N$-body simulations of the SMC/LMC system disrupting around the Milky Way. These results suggest that dynamical models for the SMC that assume a steady state will need to be revisited.

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