一颗分裂的岩石行星,在一颗明亮的恒星周围有明显的彗星状尾巴

Marc Hon, Saul Rappaport, Avi Shporer, Andrew Vanderburg, Karen A. Collins, Cristilyn N. Watkins, Richard P. Schwarz, Khalid Barkaoui, Samuel W. Yee, Joshua N. Winn, Alex S. Polanski, Emily A. Gilbert, David R. Ciardi, Jeroen Audenaert, William Fong, Jack Haviland, Katharine Hesse, Daniel Muthukrishna, Glen Petitpas, Ellie Hadjiyska Schmelzer, Norio Narita, Akihiko Fukui, Sara Seager and George R. Ricker
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引用次数: 0

摘要

我们报道发现了一颗凌日系外行星BD+05 4868 Ab,它围绕一颗明亮(V = 10.16)的k -矮星(TIC 466376085)运行,周期为1.27天。美国国家航空航天局凌日系外行星巡天卫星的观测结果揭示了变化的凌日深度和不对称的凌日剖面,这是彗星状彗尾的特征,这些彗尾是由一颗解体的行星发出的尘埃流出物形成的。BD+05 4868 Ab的独特之处在于,它的后向和前向都存在着显著的尘埃尾巴,这些尘埃尾巴导致了主星发出的星光的消失。通过拟合观测到的凌日剖面和分析模拟尘埃颗粒在两个尘埃尾巴内的漂移,我们推断出大的颗粒尺寸(~ 1 - 10 μm)和10 M⊕Gyr−1的质量损失率,这表明一个月球质量的物体的解体时间尺度只有几个Myr。这颗主星可能比太阳更老,在预计的物理距离130天文单位处有一颗m矮星伴星。主星的亮度,加上这颗行星相对较深的凌日(0.8%-2.0%),使BD+05 4868 Ab成为研究岩石系外行星成分和研究灾难性蒸发行星性质的主要目标。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
A Disintegrating Rocky Planet with Prominent Comet-like Tails around a Bright Star
We report the discovery of BD+05 4868 Ab, a transiting exoplanet orbiting a bright (V = 10.16) K-dwarf (TIC 466376085) with a period of 1.27 days. Observations from NASA’s Transiting Exoplanet Survey Satellite reveal variable transit depths and asymmetric transit profiles that are characteristic of comet-like tails formed by dusty effluents emanating from a disintegrating planet. Unique to BD+05 4868 Ab is the presence of prominent dust tails in both the trailing and leading directions that contribute to the extinction of starlight from the host star. By fitting the observed transit profile and analytically modeling the drift of dust grains within both dust tails, we infer large grain sizes (∼1–10 μm) and a mass-loss rate of 10 M⊕ Gyr−1, suggestive of a lunar-mass object with a disintegration timescale of only several Myr. The host star is probably older than the Sun and is accompanied by an M-dwarf companion at a projected physical separation of 130 au. The brightness of the host star, combined with the planet’s relatively deep transits (0.8%–2.0%), presents BD+05 4868 Ab as a prime target for compositional studies of rocky exoplanets and investigations into the nature of catastrophically evaporating planets.
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