X-ray irradiation and evaporation of the four young planets around V1298 Tau
arXiv:2005.10240 · doi:10.1093/mnras/staa1462
Abstract
Planets around young stars are thought to undergo atmospheric evaporation due to the high magnetic activity of the host stars. Here we report on X-ray observations of V1298 Tau, a young star with four transiting exoplanets. We use X-ray observations of the host star with Chandra and ROSAT to measure the current high-energy irradiation level of the planets, and employ a model for the stellar activity evolution together with exoplanetary mass loss to estimate the possible evolution of the planets. We find that V1298 Tau is X-ray bright with [erg/s] and has a mean coronal temperature of MK. This places the star amongst the more X-ray luminous ones at this stellar age. We estimate the radiation-driven mass loss of the exoplanets, and find that it depends sensitively on the possible evolutionary spin-down tracks of the star as well as on the current planetary densities. Assuming the planets are of low density due to their youth, we find that the innermost two planets can lose significant parts of their gaseous envelopes, and could be evaporated down to their rocky cores depending on the stellar spin evolution. However, if the planets are heavier and follow the mass-radius relation of older planets, then even in the highest XUV irradiation scenario none of the planets is expected to cross the radius gap into the rocky regime until the system reaches an age of 5 Gyr.
Accepted for publication in MNRAS. 14 pages
References in corpus (13)
- Atmospheric Escape from Hot Jupiters
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- The Extreme Ultraviolet and X-Ray Sun in Time: High-Energy Evolutionary Tracks of a Solar-Like Star
- Revisited Mass-Radius relations for exoplanets below 120 Earth masses
- Is Proxima Centauri b habitable? -- A study of atmospheric loss
- Four newborn planets transiting the young solar analog V1298 Tau
- Zodiacal Exoplanets in Time (ZEIT) IV: seven transiting planets in the Praesepe cluster
- Magnetically controlled mass loss from extrasolar planets in close orbits
- A scenario of planet erosion by coronal radiation
- K2 Discovers a Busy Bee: An Unusual Transiting Neptune Found in the Beehive Cluster
- The Missing Magnetic Morphology Term in Stellar Rotation Evolution
- The Interaction of Venus-like, M-dwarf Planets with the Stellar Wind of Their Host Star
- Current Population Statistics Do Not Favor Photoevaporation over Core-Powered Mass Loss as the Dominant Cause of the Exoplanet Radius Gap
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- To cool is to keep: Residual H/He atmospheres of super-Earths and sub-Neptunes
- TOI-2076 and TOI-1807: Two young, comoving planetary systems within 50 pc identified by TESS that are ideal candidates for further follow-up
- H-alpha and Ca II Infrared Triplet Variations During a Transit of the 23 Myr Planet V1298 Tau c