论文标题

与Subaru HSC和SDSS Stripe 82

Proper motion measurements for stars up to $100$ kpc with Subaru HSC and SDSS Stripe 82

论文作者

Qiu, Tian, Wang, Wenting, Takada, Masahiro, Yasuda, Naoki, Ivezić, Željko, Lupton, Robert H., Chiba, Masashi, Ishigaki, Miho, Komiyama, Yutaka

论文摘要

我们通过比较来自超级Suprime-CAM(HSC)调查的多波段成像数据集与SDSS Stripe 82的多频段成像数据集之间的星体位置进行比较,以超过5.55美元的主要序列星星和SDSS Stripe 82进行比较,我们提出了适当的运动测量。 HSC和SDSS之间的精美深度和近12美元的时间基准实现了对恒星的统计适当动作的高度测量,降低到$ i \ simeq 24 $。与$ GAIA $适当动议的协议证明了我们方法的验证,其精度优于$ 0.1 $ MAS yr yr $^{ - 1} $。为了保留精度,我们基于与$ gaia $适当的运动相对于恒星的颜色进行了比较,我们对SDSS图像中的差分色折射进行了校正,该效果通过SDSS光谱类星体进行了验证。与基于精确的HSC光度法的单个恒星的光度距离估计相结合,我们显示了每个距离中恒星的净适当运动的显着检测到$ 100 $ kpc。由于我们自己的运动显示丰富的相空间结构,在减去明显的运动后,两个组分的切向速度,包括在距离范围$ [10,\ 35] $ kpc的光环区域中的射手座流的明确特征。我们还测量了距离范围$ 5-20 $ kpc在距离范围内的切向速度分散剂,发现数据与$ 80 \ pm 10 \ pm 10 \ {\ rm km/s} $的常数各向同性色散一致。平均而言,更遥远的恒星似乎对银河系中心有随机运动。

We present proper motion measurements for more than $0.55$ million main-sequence stars, by comparing astrometric positions of matched stars between the multi-band imaging datasets from the Hyper Suprime-Cam (HSC) Survey and the SDSS Stripe 82. In doing this we use $3$ million galaxies to recalibrate the astrometry and set up a common reference frame between the two catalogues. The exquisite depth and the nearly $12$ years of time baseline between HSC and SDSS enable high-precision measurements of statistical proper motions for stars down to $i\simeq 24$. A validation of our method is demonstrated by the agreement with the $Gaia$ proper motions, to the precision better than $0.1$ mas yr$^{-1}$. To retain the precision, we make a correction of the subtle effects due to the differential chromatic refraction in the SDSS images based on the comparison with the $Gaia$ proper motions against colour of stars, which is validated using the SDSS spectroscopic quasars. Combining with the photometric distance estimates for individual stars based on the precise HSC photometry, we show a significant detection of the net proper motions for stars in each bin of distance out to $100$ kpc. The two-component tangential velocities after subtracting the apparent motions due to our own motion display rich phase-space structures including a clear signature of the Sagittarius stream in the halo region of distance range $[10,\ 35]$ kpc. We also measure the tangential velocity dispersion in the distance range $5-20$ kpc and find that the data are consistent with a constant isotropic dispersion of $80\pm 10\ {\rm km/s}$. More distant stars appear to have random motions with respect to the Galactic centre on average.

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