Distinguishing oceans of water from magma on mini-Neptune K2-18b
arXiv:2401.05864 · doi:10.3847/2041-8213/ad206e
Abstract
Mildly irradiated mini-Neptunes have densities potentially consistent with them hosting substantial liquid water oceans (`Hycean' planets). The presence of CO2 and simultaneous absence of ammonia (NH3) in their atmospheres has been proposed as a fingerprint of such worlds. JWST observations of K2-18b, the archetypal Hycean, have found the presence of CO2 and the depletion of NH3 to <100 ppm; hence, it has been inferred that this planet may host liquid water oceans. In contrast, climate modelling suggests that many of these mini-Neptunes, including K2-18b, may likely be too hot to host liquid water. We propose a solution to this discrepancy between observation and climate modelling by investigating the effect of a magma ocean on the atmospheric chemistry of mini-Neptunes. We demonstrate that atmospheric NH3 depletion is a natural consequence of the high solubility of nitrogen species in magma at reducing conditions; precisely the conditions prevailing where a thick hydrogen envelope is in communication with a molten planetary surface. The magma ocean model reproduces the present JWST spectrum of K2-18b to < 3 sigma, suggesting this is as credible an explanation for current observations as the planet hosting a liquid water ocean. Spectral areas that could be used to rule out the magma ocean model include the >4um region, where CO2 and CO features dominate: Magma ocean models suggest a systematically lower CO2/CO ratio than estimated from free chemistry retrieval, indicating that deeper observations of this spectral region may be able to distinguish between oceans of liquid water and magma on mini-Neptunes.
13 pages, 5 figures, Published in The Astrophysical Journal Letters; corrects error on y-axis of Figure 2
References in corpus (28)
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- Photochemically-produced SO in the atmosphere of WASP-39b
- Astrochemistry and compositions of planetary systems
- Habitability and Biosignatures of Hycean Worlds
- Day-night cloud asymmetry prevents early oceans on Venus but not on Earth
- Condensation-inhibited convection in hydrogen-rich atmospheres: Stability against double-diffusive processes and thermal profiles for Jupiter, Saturn, Uranus, and Neptune
- The interior and atmosphere of the habitable-zone exoplanet K2-18b
- Beyond Equilibrium Temperature: How the Atmosphere/Interior Connection Affects the Onset of Methane, Ammonia, and Clouds in Warm Transiting Giant Planets
- Mass-radius relationships for irradiated ocean planets
- Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
- FastChem 2: An improved computer program to determine the gas-phase chemical equilibrium composition for arbitrary element distributions
- Retention of water in terrestrial magma oceans and carbon-rich early atmospheres
- Vertically resolved magma ocean-protoatmosphere evolution: H, HO, CO, CH, CO, O, and N as primary absorbers
- How to identify exoplanet surfaces using atmospheric trace species in hydrogen-dominated atmospheres
- Unveiling shrouded oceans on temperate sub-Neptunes via transit signatures of solubility equilibria vs. gas thermochemistry
- How Deep Is the Ocean? Exploring the phase structure of water-rich sub-Neptunes
- Rates of protoplanetary accretion and differentiation set nitrogen budget of rocky planets
- Predicted diversity in water content of terrestrial exoplanets orbiting M dwarfs
- Solubility of water in peridotite liquids and the prevalence of steam atmospheres on rocky planets
- Sulfur Chemistry in the Atmospheres of Warm and Hot Jupiters
- Chemical variation with altitude and longitude on exo-Neptunes: Predictions for Ariel phase-curve observations
- The runaway greenhouse on subNeptune waterworlds
- Consistently Simulating a Wide Range of Atmospheric Scenarios for K2-18b with a Flexible Radiative Transfer Module
- The distribution of volatile elements during rocky planet formation
- Water Condensation Zones around Main Sequence Stars
- Possibilities for an Aerial Biosphere in Temperate Sub Neptune-Sized Exoplanet Atmospheres
- Impact Induced Atmosphere-Mantle Exchange Sets the Volatile Elemental Ratios on Primitive Earths
- Bioverse: The Habitable Zone Inner Edge Discontinuity as an Imprint of Runaway Greenhouse Climates on Exoplanet Demographics
Cited by in corpus (37)
- The erosion of large primary atmospheres typically leaves behind substantial secondary atmospheres on temperate rocky planets
- Super-Earths and Earth-like Exoplanets
- Escaping Helium and a Highly Muted Spectrum Suggest a Metal-Enriched Atmosphere on Sub-Neptune GJ3090b from JWST Transit Spectroscopy
- Magma ocean evolution at arbitrary redox state
- Chemical mapping of temperate sub-Neptune atmospheres: Constraining the deep-interior H2O/H2 using the atmospheric CO2/CH4
- Role of magma oceans in controlling carbon and oxygen of sub-Neptune atmospheres
- Evidence for Abiotic Dimethyl Sulfide in Cometary Matter
- Insufficient evidence for DMS and DMDS in the atmosphere of K2-18 b. From a joint analysis of JWST NIRISS, NIRSpec, and MIRI observations
- Sub-Neptunes Are Drier Than They Seem: Rethinking the Origins of Water-Rich Worlds
- Magma ocean interactions can explain JWST observations of the sub-Neptune TOI-270 d
- Prospects for Detecting Signs of Life on Exoplanets in the JWST Era
- Constraining exoplanet interiors using observations of their atmospheres
- Self-limited tidal heating and prolonged magma oceans in the L 98-59 system
- Diversity of low-mass planet atmospheres in the C-H-O-N-S-Cl system with interior dissolution, nonideality, and condensation: Application to TRAPPIST-1e and sub-Neptunes
- The Possibility of Hydrogen-Water Demixing in Uranus, Neptune, K2-18b and TOI-270d
- Redefining interiors and envelopes: hydrogen-silicate miscibility and its consequences for the structure and evolution of sub-Neptunes
- Interior redox state effects on the stability of secondary atmospheres and observational manifestations: LP 791-18 d as a case study for outgassing rocky exoplanets
- Deciphering Sub-Neptune Atmospheres: New Insights from Geochemical Models of TOI-270 d
- Diversity in the haziness and chemistry of temperate sub-Neptunes
- Tracing the Inner Edge of the Habitable Zone with Sulfur Chemistry
- Unraveling the non-equilibrium chemistry of the temperate sub-Neptune K2-18 b
- Volatile-rich evolution of molten super-Earth L 98-59 d
- Two neighbours of the ultra-short-period Earth-sized planet K2-157 b in the warm Neptunian savanna
- Not All Sub-Neptune Exoplanets Have Magma Oceans
- Planetary albedo is limited by the above-cloud atmosphere: Implications for sub-Neptune climate
- Absence of a Runaway Greenhouse Limit on Lava Planets
- The Effects of Non-ideal Mixing in Planetary Magma Oceans and Atmospheres
- Three-dimensional Transport-induced Chemistry on Temperate sub-Neptune K2-18b, Part I: the Effects of Atmospheric Dynamics
- Is the high-energy environment of K2-18b special?
- TOI-7166 b: A Habitable Zone mini-Neptune planet around a nearby low-mass star
- Diversity of Exoplanets
- On the importance of laboratory experiments for interpreting exoplanet observations
- The atmosphere of K2-18 b: The role of hazes, clouds and photoelectrons
- The effect of a biosphere on the habitable timespan of stagnant-lid planets and implications for the atmospheric spectrum
- Using observations of escaping H/He to constrain the atmospheric composition of sub-Neptunes
- Three-dimensional transport-induced chemistry on temperate sub-Neptune K2-18b, Part II: the combined effects of atmospheric dynamics and chemical reactions
- JWST unveils a high mean molecular weight atmosphere for mini-Neptune TOI-1130b: Evidence for formation beyond the water ice line