论文标题

超品种矮人银河系中的难以捉摸的距离梯度:组合的哈勃太空望远镜和盖亚视图

The Elusive Distance Gradient in the Ultra-Faint Dwarf Galaxy Hercules: A Combined Hubble Space Telescope and Gaia View

论文作者

Mutlu-Pakdil, Burçin, Sand, David J., Crnojević, Denija, Olszewski, Edward W., Zaritsky, Dennis, Strader, Jay, Collins, Michelle L., Seth, Anil C., Willman, Beth

论文摘要

超生物矮星系大力神具有极为细长的形态,并且在大半径上同时具有光度过度和运动学成员,这表明由于先前与银河系的紧密相遇,它可能会潮湿。为了解释其观察性的特征,我们提出了对大力神及其周围地区的深层哈勃太空望远镜(HST)成像研究,并通过仔细寻找沿其拉伸身体的距离梯度来研究其潮汐历史。我们的偏心HST数据清楚地解决了一个主要序列,表明沿Hercules的主要轴看到的恒星扩展是真实的,而不是背景星系的团块。利用Gaia DR2数据,我们清洁了田间污染的大力周围地区,并找到了四个新的合理成员明星,所有这些明星都位于矮人银河系的郊区。我们更新了与大力神的距离,并为主体找到$ 130.6 \ pm1.2 $ kpc($ m-m = 20.58 \ pm0.02 $),这与文献中早期的估计是一致的。尽管我们没有发现距离梯度的结论性证据,但我们的工作表明,在如此微弱的系统中限制距离梯度并不是微不足道的,并且沿视线和田间污染的矮人可能的厚度也使得很难得出决定性的结论,即使使用这些高度精确的数据。未来的研究结合了量身定制的理论模型,以了解超大型星系中大力神和潮汐变形的真实本质。

The ultra-faint dwarf galaxy Hercules has an extremely elongated morphology with both photometric overdensities and kinematic members at large radii, suggesting that it may be tidally disrupting due to a previous close encounter with the Milky Way. To explain its observational peculiarities, we present a deep Hubble Space Telescope (HST) imaging study of Hercules and its surrounding regions and investigate its tidal history through a careful search for a distance gradient along its stretched body. Our off-center HST data clearly resolve a main sequence, showing that the stellar extension seen along the major-axis of Hercules is genuine, not a clump of background galaxies. Utilizing Gaia DR2 data, we clean the region around Hercules of field contamination, and find four new plausible member stars, all of which are located at the outskirts of the dwarf galaxy. We update the distance to Hercules, and find $130.6\pm1.2$ kpc ($m-M=20.58\pm0.02$) for the main body, which is consistent with earlier estimates in the literature. While we find no conclusive evidence for a distance gradient, our work demonstrates that constraining a distance gradient in such a faint system is not trivial, and the possible thickness of the dwarf along the line of sight and field contamination make it harder to make decisive conclusions even with these high-precision data. Future studies coupled with tailored theoretical models are needed to understand the true nature of Hercules and of tidal distortion observables in ultra-faint galaxies in general.

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