The Molten Basalt Surface of Scorched Exoplanet GJ 486 b
Orbiting a red dwarf star at a distance that defies conventional thermal equilibrium, the exoplanet GJ 486 b stands as a prime example of a scorched terrestrial body. Discovered through the rigorous application of radial velocity and transit photometry , this body provides a rare opportunity to study the geology of a hot, rocky mass stripped of any substantial secondary atmosphere. Its proximity to its parent star ensures that the surface remains in a state of perpetual high-temperature flux, driven by intense stellar radiation and tidal locking . Geological Composition and Crustal Dynamics GJ 486 b possesses a mass approximately 2.8 times that of Earth, classifying it as a super-Earth . However, any structural comparison to terrestrial geology must account for the extreme heat flux derived from the planet’s tight orbital period of roughly 1.47 days. The primary crust is composed of high-density basaltic rock , likely rich in iron and magnesium...