论文标题

缺乏感兴趣的M-Dwarf Tess对象的近距离恒星伴侣

A Dearth of Close-In Stellar Companions to M-dwarf TESS Objects of Interest

论文作者

Clark, Catherine A., van Belle, Gerard T., Ciardi, David R., Lund, Michael B., Howell, Steve B., Everett, Mark E., Beichman, Charles A., Winters, Jennifer G.

论文摘要

事实证明,苔丝是寻找行星的强大资源,包括那些在我们的银河系中绕过最普遍的恒星的行星:M矮人。为了评估光曲线稀释水平以及目标是假阳性的可能性,鉴定出色的伴侣(绑定和未结合)已成为过境行星确认过程的标准组成部分。对恒星伴侣的研究还可以研究行星托管系统中出色的多重性,这对系外行星的检测和表征以及行星系统的形成和演变具有广泛的影响。 Speckle和AO成像是一些最有效的工具,用于揭示近距离恒星伴侣;因此,我们介绍了使用3.5米Wiyn望远镜,4.3米的Lowell Discovery望远镜以及8.1-M Gemini North和South望远镜上的3.5米Wiyn望远镜,4.3米的Wiyn望远镜,4.3 m Wiyn望远镜上获得的58 M少量TOI的观察结果。这些观察结果以及这些Tois子集(14)获得的近红外自适应光学图像,仅显示了两个近距离的恒星伴侣。在调查文献并与El-Badry等人的Gaia,Superwide和目录进行交叉匹配时。 (2021),我们揭示了另外15个广泛分离的普通运动伴侣。我们还评估未发现的关闭伴侣的潜力。考虑到观测值的敏感性,我们的发现表明,与田间M矮人的预期分布相比,恒星伴侣对行星托管托管载体的轨道周期分布被转移到更长的时间。

TESS has proven to be a powerful resource for finding planets, including those that orbit the most prevalent stars in our galaxy: the M dwarfs. Identification of stellar companions (both bound and unbound) has become a standard component of the transiting planet confirmation process in order to assess the level of light curve dilution and the possibility of the target being a false positive. Studies of stellar companions have also enabled investigations into stellar multiplicity in planet-hosting systems, which has wide-ranging implications for both exoplanet detection and characterization, as well as for the formation and evolution of planetary systems. Speckle and AO imaging are some of the most efficient and effective tools for revealing close-in stellar companions; we therefore present observations of 58 M-dwarf TOIs obtained using a suite of speckle imagers at the 3.5-m WIYN telescope, the 4.3-m Lowell Discovery Telescope, and the 8.1-m Gemini North and South telescopes. These observations, as well as near-infrared adaptive optics images obtained for a subset (14) of these TOIs, revealed only two close-in stellar companions. Upon surveying the literature, and cross-matching our sample with Gaia, SUPERWIDE, and the catalog from El-Badry et al. (2021), we reveal an additional 15 widely-separated common proper motion companions. We also evaluate the potential for undetected close-in companions. Taking into consideration the sensitivity of the observations, our findings suggest that the orbital period distribution of stellar companions to planet-hosting M dwarfs is shifted to longer periods compared to the expected distribution for field M dwarfs.

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