On the correlation between stellar chromospheric flux and the surface gravity of close-in planets
arXiv:1410.8363 · doi:10.1051/0004-6361/201425051
Abstract
The chromospheric emission of stars with close-in transiting planets has been found to correlate with the surface gravity of their planets. Stars with low-gravity planets have on average a lower chromospheric flux. We propose that this correlation is due to the absorption by circumstellar matter that comes from the evaporation of the planets. Planets with a lower gravity have a greater mass-loss rate which leads to a higher column density of circumstellar absorption and this in turn explains the lower level of chromospheric emission observed in their host stars. We estimated the required column density and found that planetary evaporation can account for it. We derived a theoretical relationship between the chromospheric emission as measured in the core of the Ca II H&K lines and the planet gravity. We applied this relationship to a sample of transiting systems for which both the stellar Ca II H&K emission and the planetary surface gravity are known and found a good agreement, given the various sources of uncertainties and the intrinsic variability of the stellar emissions and planetary evaporation rates. We consider implications for the radial velocity jitter applied to fit the spectroscopic orbits and for the age estimates of planetary systems based on the chromospheric activity level of their host stars.
5 pages, 2 figures, accepted as a Letter to the Editor of Astronomy and Astrophysics
References in corpus (6)
- Improved Age Estimation for Solar-Type Dwarfs Using Activity-Rotation Diagnostics
- Near-UV Absorption, Chromospheric Activity, and Star-Planet Interactions in the WASP-12 system
- A method for the direct determination of the surface gravities of transiting extrasolar planets
- Indications for an influence of Hot Jupiters on the rotation and activity of their host stars
- Revisiting the correlation between stellar activity and planetary surface gravity
- No X-rays from WASP-18. Implications for its age, activity, and the influence of its massive hot Jupiter
Cited by in corpus (10)
- A comprehensive statistical assessment of star-planet interaction
- The GAPS Programme with HARPS-N at TNG. VII. Putting exoplanets in the stellar context: magnetic activity and asteroseismology of Bootis A
- MOVES III. Simultaneous X-ray and ultraviolet observations unveiling the variable environment of the hot Jupiter HD 189733b
- SALT observations of the Chromospheric Activity of Transiting Planet Hosts: Mass Loss and Star Planet Interactions
- The GAPS Programme with HARPS-N@TNG VI: The Curious Case of TrES-4b
- The homogeneous characterisation of Ariel host stars
- Is the activity level of HD 80606 influenced by its eccentric planet?
- Tidal excitation of autoresonant oscillations in stars with close-by planets
- Stellar activity and transits
- Chromospheric emission of planet candidate systems - a way to identify false positives