The JADE code: Coupling secular exoplanetary dynamics and photo-evaporation
arXiv:2103.02627 · doi:10.1051/0004-6361/202039452
Abstract
Close-in planets evolve under extreme conditions, raising questions about their origins and current nature. Two predominant mechanisms are orbital migration, which brings them close to their star, and atmospheric escape under the resulting increased irradiation. Yet, their relative roles remain unclear because we lack models that couple the two mechanisms with high precision on secular timescales. To address this need, we developed the JADE code, which simulates the secular atmospheric and dynamical evolution of a planet around its star, and can include the perturbation induced by a distant third body. On the dynamical side, the 3D evolution of the orbit is modeled under stellar and planetary tidal forces, a relativistic correction, and the action of the distant perturber. On the atmospheric side, the vertical structure of the atmosphere is integrated over time based on its thermodynamical properties, inner heating, and the evolving stellar irradiation, which results, in particular, in photo-evaporation. The JADE code is benchmarked on GJ436 b, prototype of evaporating giants on eccentric, misaligned orbits at the edge of the hot Neptunes desert. We confirm that its orbital architecture is well explained by Kozai migration and unveil a strong interplay between its atmospheric and orbital evolution. During the resonance phase, the atmosphere pulsates in tune with the Kozai cycles, which leads to stronger tides and an earlier migration. This triggers a strong evaporation several Gyr after the planet formed, refining the paradigm that mass loss is dominant in the early age of close-in planets. This suggests that the edge of the desert could be formed of warm Neptunes whose evaporation was delayed by migration. It strengthens the importance of coupling atmospheric and dynamical evolution over secular timescales, which the JADE code will allow simulating for a wide range of systems.
20 pages, 2 figures, accepted in A&A
References in corpus (25)
- Mass-Radius Relationships for Solid Exoplanets
- Atmospheric Escape from Hot Jupiters
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- On the radiative equilibrium of irradiated planetary atmospheres
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Origins of Eccentric Extrasolar Planets: Testing the Planet-Planet Scattering Model
- Roche lobe effects on the atmospheric loss of "Hot Jupiters"
- Planetary population synthesis coupled with atmospheric escape: a statistical view of evaporation
- On the tidal evolution of Hot Jupiters on inclined orbits
- Lyman- Transit Spectroscopy and the Neutral Hydrogen Tail of the Hot Neptune GJ436b
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- Magnetic moment and plasma environment of HD 209458b as determined from Ly observations
- Orbital misalignment of the Neptune-mass exoplanet GJ 436b with the spin of its cool star
- Tidal Heating of Terrestrial Extra-Solar Planets and Implications for their Habitability
- A global analysis of Spitzer and new HARPS data confirms the loneliness and metal-richness of GJ 436 b
- The long egress of GJ~436b's giant exosphere
- Heating efficiency in hydrogen-dominated upper atmospheres
- A disk-driven resonance as the origin of high inclinations of close-in planets
- Formation of Hot Jupiters through Secular Chaos and Dynamical Tides
- Why do warm Neptunes present nonzero eccentricity?
- TPCI: The PLUTO-CLOUDY Interface
- Effect of stellar flares on the upper atmospheres of HD 189733b and HD 209458b
- Ohmic Dissipation in Mini-Neptunes
- The Formation of Uranus and Neptune: Fine Tuning in Core Accretion
Cited by in corpus (33)
- The Warm Neptune GJ 3470b has a Polar Orbit
- DREAM I. Orbital architecture orrery
- Mapping the exo-Neptunian landscape. A ridge between the desert and savanna
- DREAM II. The spin-orbit angle distribution of close-in exoplanets under the lens of tides
- The polar orbit of the warm Neptune GJ436b seen with VLT/ESPRESSO
- Airy worlds or barren rocks? On the survivability of secondary atmospheres around the TRAPPIST-1 planets
- Characterisation of stellar activity of M dwarfs. I. Long-timescale variability in a large sample and detection of new cycles
- TOI-5005 b: A super-Neptune in the savanna near the ridge
- The space weather around the exoplanet GJ 436 b. II. Stellar wind-exoplanet interactions
- DREAM: III.A helium survey in exoplanets on the edge of the hot Neptune desert with GIANO-B@TNG
- TOI-1416: A system with a super-Earth planet with a 1.07d period
- Tidal migration of hot Jupiters: introducing the impact of gravity wave dissipation
- The influence of host star activity evolution on the population of super-Earths and mini-Neptunes
- The space weather around the exoplanet GJ 436b
- Probing atmospheric escape through metastable He I triplet lines in 15 exoplanets observed with SPIRou
- GJ 3090 b: one of the most favourable mini-Neptune for atmospheric characterisation
- Constraining Tidal Quality Factor using Spin Period in Eclipsing Binaries
- The key impact of the host star's rotational history on the evolution of TOI-849b
- Unraveling the evolution of hot Jupiter systems under the effect of tidal and magnetic interactions and mass loss
- Magnetic Field Evolution of Hot Exoplanets
- Star-planet interactions VI. Tides, stellar activity and planet evaporation
- An old warm Jupiter orbiting the metal-poor G-dwarf TOI-5542
- Star-Planet Interactions: A Computational View
- ATREIDES I. Embarking on a trek across the exo-Neptunian landscape with the TOI-421 system
- TOI-5108 b and TOI 5786 b: Two transiting sub-Saturns detected and characterized with TESS, MaHPS and SOPHIE
- NIGHT: a compact, near-infrared, high-resolution spectrograph to survey helium in exoplanet systems
- NIRPS detection of delayed atmospheric escape from the warm and misaligned Saturn-mass exoplanet WASP-69b
- TOI-858 B b: A hot Jupiter on a polar orbit in a loose binary
- The Neptunian ridge as a natural outcome of high-eccentricity tidal migration
- Constraining Planetary Formation Models Using Conditional Occurrences of Various Planet Types
- A tidally detached super Neptune on a strongly misaligned retrograde orbit
- Exploring the parameter space of hierarchical triple black hole systems
- Confirmation of the hot super-Neptune TOI-672 b with NIRPS and HARPS and Insights into the Neptunian desert around M dwarfs