温海王星GJ 3470b具有极地轨道
地球与行星天体物理
2022-06-08 v2
摘要
温海王星GJ 3470b在一颗邻近(pc)明亮的缓慢自转M1.5型矮星前方凌星。利用基特峰天文台WIYN 3.5m望远镜上新投入使用的NEID光谱仪在两次凌星期间的光谱观测,我们模拟了经典的Rossiter-Mclaughlin效应,得到天球投影轨道倾角和km/s。借助关于宿主恒星自转周期和大小的信息,我们的分析得出真实轨道倾角,揭示GJ 3470b处于极地轨道。利用来自HIRES、HARPS和宜居带行星搜寻者(Habitable-zone Planet Finder)的视向速度,我们表明数据与12.9年基线内长期RV斜率m/s/day相容。若RV斜率源于系统中另一伴星的加速度,我们表明该伴星可使用两种不同的长期激发模型解释GJ 3470b的极地及轻度偏心轨道。外层伴星的存在可通过额外的RV观测、Gaia天体测量和未来高对比度成像观测进一步约束。最后,我们表明GJ 3470b轻度偏心率引起的潮汐加热极可能已使其半径膨胀了约1.5-1.7倍,这有助于解释其正在蒸发的大气。
引用
@article{arxiv.2111.01295,
title = {The Warm Neptune GJ 3470b has a Polar Orbit},
author = {Gudmundur Stefansson and Suvrath Mahadevan and Cristobal Petrovich and Joshua N. Winn and Shubham Kanodia and Sarah C. Millholland and Marissa Maney and Caleb I. Cañas and John Wisniewski and Paul Robertson and Joe P. Ninan and Eric B. Ford and Chad F. Bender and Cullen H. Blake and Heather Cegla and William D. Cochran and Scott A. Diddams and Jiayin Dong and Michael Endl and Connor Fredrick and Samuel Halverson and Fred Hearty and Leslie Hebb and Teruyuki Hirano and Andrea S. J. Lin and Sarah E. Logsdon and Emily Lubar and Michael W. McElwain and Andrew J. Metcalf and Andrew Monson and Jayadev Rajagopal and Lawrence W. Ramsey and Arpita Roy and Christian Schwab and Heidi Schweiker and Ryan C. Terrien and Jason T. Wright},
journal= {arXiv preprint arXiv:2111.01295},
year = {2022}
}
备注
21 pages, 7 figures. Accepted in ApJL