Tidally driven tectonic activity as a parameter in exoplanet habitability
arXiv:2204.03501 · doi:10.1051/0004-6361/202141112
Abstract
Aims. On Earth, plate tectonics play an integral role in driving the long-term carbon cycle; however, on tidally locked rocky exoplanets alternative tectonic mechanisms driven by tidal stress and tidal heating could serve in an analogous way. Methods. We calculate tidal stress and tidal heating rates to model the likelihood of tectonic activity maintaining stable climates suitable for surface liquid water on tidally locked rocky exoplanets with radii 1.23R. Results. Applying the tidal models to our sample of 767 tidally locked rocky exoplanets reveals that 10% of exoplanets, including Proxima Cen b and GJ 1061 d from the circumstellar habitable zone (CHZ), pass the tidal stress subduction threshold for mobile lid tectonic activity and reside within the optimal tidal heating zone. This subset of exoplanets could sustain tidally induced temperate mobile lid tectonic activity comparable to plate tectonics on Earth, aiding in maintaining the presence of surface liquid water. Furthermore, 40% of exoplanets from our sample located in the CHZ would be unable to maintain the tectonic activity needed to stabilise the climate and are unlikely to retain surface liquid water. When broadening our modelling to establish the overlap between tidal stress, tidal heating, and the CHZ, to discover optimal regions to target for future observations, we determine that tidally driven tectonic activity conducive to the maintenance of surface liquid water occurs predominantly around M dwarfs, and identify intersections, where both mobile lid and optimal tidal heating could be sustained on eccentric (e>0.1) Earth-sized exoplanets ( = 1.0-1.23R) orbiting in the CHZ of low-mass M dwarfs.
24 pages, 4 figures, 1 table. Accepted for publication in A&A
References in corpus (18)
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Habitable planets around the star Gl 581?
- Inevitability of Plate Tectonics on Super-Earths
- How to Characterize Habitable Worlds and Signs of Life
- Tidal Locking of Habitable Exoplanets
- The Solar Neighborhood XLV. The Stellar Multiplicity Rate of M Dwarfs Within 25 pc
- Outgassing History and Escape of the Martian Atmosphere and Water Inventory
- Tidal Heating of Terrestrial Extra-Solar Planets and Implications for their Habitability
- Magnetic fields of M dwarfs
- Tidal Limits to Planetary Habitability
- Whole planet coupling between climate, mantle, and core: Implications for the evolution of rocky planets
- The habitability of a stagnant-lid Earth
- Dynamical evolution and spin-orbit resonances of potentially habitable exoplanets. The case of GJ 581d
- On the protection of extrasolar Earth-like planets around K/M stars against galactic cosmic rays
- Habitability of Earth-like stagnant lid planets: Climate evolution and recovery from snowball states
- A comprehensive comparison of the Sun to other stars: searching for self-selection effects
- Spin dynamics of close-in planets exhibiting large TTVs
- The Effect of Seafloor Weathering on Planetary Habitability