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外星恒星在系外行星的天空中逆行。

Alien suns reversing in exoplanet skies.

作者信息

Xie Xinchen, Bae Hwan, Lindner John F

机构信息

Physics Department, The College of Wooster, Wooster, OH, 44691, USA.

Physics and Astronomy, University of North Carolina at Chapel Hill, Chapel Hill, NC, 27599, USA.

出版信息

Sci Rep. 2022 May 19;12(1):8426. doi: 10.1038/s41598-022-11527-8.

Abstract

Earth's rapid spin, modest tilt, and nearly circular orbit ensure that the sun always appears to move forward, rising in the east and setting in the west. However, for some exoplanets, solar motion can reverse causing alien suns to apparently move backward. Indeed, this dramatic motion marginally occurs for Mercury in our own solar system. For exoplanetary observers, we study the scope of solar motion as a function of eccentricity, spin-orbit ratio, obliquity, and nodal longitude, and we visualize the motion in spatial and spacetime plots. For zero obliquity, reversals occur when a planet's spin angular speed is between its maximum and minimum orbital angular speeds, and we derive exact nonlinear equations for eccentricity and spin-orbit to bound reversing and non-reversing motion. We generalize the notion of solar day to gracefully handle the most common reversals.

摘要

地球的快速自转、适度倾斜以及近乎圆形的轨道确保太阳似乎总是向前移动,从东方升起,在西方落下。然而,对于一些系外行星来说,太阳运动可能会反向,导致外星的太阳明显向后移动。事实上,在我们自己的太阳系中,水星也会略微出现这种剧烈的运动。对于系外行星观测者而言,我们研究太阳运动的范围作为偏心率、自旋 - 轨道比、倾角和交点经度的函数,并在空间和时空图中可视化这种运动。对于零倾角的情况,当行星的自转角速度介于其最大和最小轨道角速度之间时会发生反向,并且我们推导出偏心率和自旋 - 轨道的精确非线性方程来界定反向和非反向运动。我们推广了太阳日的概念,以便优雅地处理最常见的反向情况。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/e527/9120023/06994f96a045/41598_2022_11527_Fig1_HTML.jpg

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