论文标题

及时的十二生肉系外行星。 X.年轻的“海王星沙漠”的轨道和气氛 - 居住在K2-100B

Zodiacal Exoplanets in Time. X. The Orbit and Atmosphere of the Young "Neptune Desert"-Dwelling Planet K2-100b

论文作者

Gaidos, E., Hirano, T., Mann, A. W., Owens, D. A., Berger, T. A., France, K., Vanderburg, A., Harakawa, H., Hodapp, K. W., Ishizuka, M., Jacobson, S., Konishi, M., Kotani, T., Kudo, T., Kurokawa, T., Nishikawa, J., Omiya, M., Serizawa, T., Tamura, M., Oeda, A.

论文摘要

我们在其1.67天行星的过渡期间获得了600-800 MYR PRAESEPE Star K2-100的高分辨率红外光谱和短期光度法。 NASA K2任务发现的这个海王星大小的物体是在短期轨道上具有类似半径的行星“沙漠”中的闯入者。我们的观察结果可用于通过过境拟合来限制轨道偏心,通过rossiter-mclaughlin效应来测量旋转轨道的偏心,并检测到2S3S三分线中中性的10830a中性螺旋线。在战役18期间,K2卫星获得了带有1分钟节奏的过境光度法,并在Subaru望远镜上使用IRD光谱仪获得了过境光谱。虽然K2-100的升高活性阻止了我们检测到rossiter-mclaughlin效应,但新的光度法与修订后的恒星参数相结合,使我们能够将偏心限制为E <0.15/0.28,并具有90%/99%的置信度。我们将大气层逃脱为等温,球形对称的帕克风,并通过将观察到的活性太阳的光谱与来自K2-100的观察结果和相似的年轻恒星在附近的鬣狗群中相结合来估算的光化学驱动。我们的非检测(<5.7mA)通过T <10000k风限制了太阳能组成气氛的质量损失,使其通过T <10000K的风损失至<0.3Me/gyr。 K2-100B是一个杰出的沙漠居住的星球,或者其质量损失在更长的时间间隔内以较低的速度发生,这与核心促销的逃脱场景一致。

We obtained high-resolution infrared spectroscopy and short-cadence photometry of the 600-800 Myr Praesepe star K2-100 during transits of its 1.67-day planet. This Neptune-size object, discovered by the NASA K2 mission, is an interloper in the "desert" of planets with similar radii on short period orbits. Our observations can be used to understand its origin and evolution by constraining the orbital eccentricity by transit fitting, measuring the spin-orbit obliquity by the Rossiter-McLaughlin effect, and detecting any extended, escaping hydrogen-helium envelope with the 10830A line of neutral helium in the 2s3S triplet state. Transit photometry with 1-min cadence was obtained by the K2 satellite during Campaign 18 and transit spectra were obtained with the IRD spectrograph on the Subaru telescope. While the elevated activity of K2-100 prevented us from detecting the Rossiter-McLaughlin effect, the new photometry combined with revised stellar parameters allowed us to constrain the eccentricity to e < 0.15/0.28 with 90%/99% confidence. We modeled atmospheric escape as an isothermal, spherically symmetric Parker wind, with photochemistry driven by UV radiation that we estimate by combining the observed spectrum of the active Sun with calibrations from observations of K2-100 and similar young stars in the nearby Hyades cluster. Our non-detection (<5.7mA) of a transit-associated He I line limits mass loss of a solar-composition atmosphere through a T<10000K wind to <0.3Me/Gyr. Either K2-100b is an exceptional desert-dwelling planet, or its mass loss is occurring at a lower rate over a longer interval, consistent with a core accretion-powered scenario for escape.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源