论文标题

HD 106906 b的轨道运动的首次检测:九个轨道上的宽分开外球星

First detection of orbital motion for HD 106906 b: A wide-separation exoplanet on a Planet Nine-like orbit

论文作者

Nguyen, Meiji M., De Rosa, Robert J., Kalas, Paul

论文摘要

HD 106906是15 Myr旧的短期(49天)光谱二进制,可容纳广泛分离(737 au)行星质量($ \ sim11 \,m _ {\ rm jup jup} $)常见的适当运动同伴,HD 106906 b。此外,在光学和近红外波长上解析了环形碎屑盘,该波长在宽分离处表现出明显的不对称性,这可能是由从行星引力扰动驱动的。在这项研究中,我们介绍了使用跨越14年期的哈勃太空望远镜图像对HD 106906 B的轨道运动的首次检测。我们通过将背景恒星的位置与Gaia Astrestric目录进行交叉注册,从而实现了较高的天体精确度,从而提供了HD 106906的子像素位置,该位置饱和或被冠状光学元件饱和或遮盖。我们在2004年和2017年进行的两个最限制的测量值之间衡量行星的统计学意义$ 31.8 \ pm7.0 $向东运动。此动作可以测量行星轨道与内部碎屑盘之间的倾斜度的测量,这是$ 36 _ {-14}^{-14}^{-14}^{+27} $ deg或$ 44 _}^ - +44 _}^}地球轨道的真正方向。植物和相互倾斜度之间存在很强的负相关。较小的尿液轨道的轨道与盘平面更为未对准。由于$ 510 _ { - 320}^{+480} $ au,HD 106906 b可能会从100 au半径内的行星区域脱离,这表明可以在行星系统的发展中建立一个非常早的行星。

HD 106906 is a 15 Myr old short-period (49 days) spectroscopic binary that hosts a wide-separation (737 au) planetary-mass ($\sim11\,M_{\rm Jup}$) common proper motion companion, HD 106906 b. Additionally, a circumbinary debris disk is resolved at optical and near-infrared wavelengths that exhibits a significant asymmetry at wide separations that may be driven by gravitational perturbations from the planet. In this study we present the first detection of orbital motion of HD 106906 b using Hubble Space Telescope images spanning a 14 yr period. We achieve high astrometric precision by cross-registering the locations of background stars with the Gaia astrometric catalog, providing the subpixel location of HD 106906 that is either saturated or obscured by coronagraphic optical elements. We measure a statistically significant $31.8\pm7.0$ mas eastward motion of the planet between the two most constraining measurements taken in 2004 and 2017. This motion enables a measurement of the inclination between the orbit of the planet and the inner debris disk of either $36_{-14}^{+27}$ deg or $44_{-14}^{+27}$ deg, depending on the true orientation of the orbit of the planet. There is a strong negative correlation between periastron and mutual inclination; orbits with smaller periastra are more misaligned with the disk plane. With a periastron of $510_{-320}^{+480}$ au, HD 106906 b is likely detached from the planetary region within 100 au radius, showing that a Planet Nine-like architecture can be established very early in the evolution of a planetary system.

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