4.6 Article

A Decade of Hα Transits for HD 189733 b: Stellar Activity versus Absorption in the Extended Atmosphere

期刊

ASTRONOMICAL JOURNAL
卷 153, 期 5, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.3847/1538-3881/aa6a15

关键词

planets and satellites: atmospheres; planets and satellites: individual (HD 189733 b); stars: activity; stars: individual (HD 189733); techniques: spectroscopic

资金

  1. NASA Keck PI Data Award
  2. W.M. Keck Foundation
  3. NASA Exoplanet Research Program [14-XRP14 2-0090]
  4. National Science Foundation through Astronomy and Astrophysics Research Grant [AST-1313268]
  5. Division Of Astronomical Sciences
  6. Direct For Mathematical & Physical Scien [1313268] Funding Source: National Science Foundation

向作者/读者索取更多资源

HD 189733 b is one of the most well studied exoplanets due to its large transit depth and host star brightness. The focus on this object has produced a number of high-cadence transit observations using high-resolution optical spectrographs. Here we present an analysis of seven full Ha transits of HD 189733 b using HARPS on the 3.6 meter La Silla telescope and HIRES on Keck I, taken over the course of nine years from 2006 to 2015. H alpha transmission signals are analyzed as a function of the stellar activity level, as measured using the normalized core flux of the Ca II H and K lines. We find strong variations in the strength of the Ha transmission spectrum from epoch to epoch. However, there is no clear trend between the Ca II core emission and the strength of the in-transit Ha signal, although the transit showing the largest absorption value also occurs when the star is the most active. We present simulations of the in-transit contrast effect and find that the planet must consistently transit active latitudes with very strong facular and plage emission regions in order to reproduce the observed line strengths. We also investigate the measured velocity centroids with models of planetary rotation and show that the small line profile velocities could be due to large velocities in the upper atmosphere of the planet. Overall, we find it more likely that the measured Ha signals arise in the extended planetary atmosphere, although a better understanding of active region emission for active stars such as HD 189733 is needed.

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