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TOI-421 b: A Hot Sub-Neptune with a Haze-Free, Low Mean Molecular Weight Atmosphere

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arxiv 2501.01498 v1 pith:OGANBE3N submitted 2025-01-02 astro-ph.EP

classification astro-ph.EP
keywords toi-421atmospheresmeanmolecularsub-neptunesatmosphereweightequilibrium
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abstract

Common features of sub-Neptunes atmospheres observed to date include signatures of aerosols at moderate equilibrium temperatures (~500-800 K), and a prevalence of high mean molecular weight atmospheres, perhaps indicating novel classes of planets such as water worlds. Here we present a 0.83-5 micron JWST transmission spectrum of the sub-Neptune TOI-421 b. This planet is unique among previously observed counterparts in its high equilibrium temperature ($T_{eq} \approx 920$) and its Sun-like host star. We find marked differences between the atmosphere of TOI-421 b and those of sub-Neptunes previously characterized with JWST, which all orbit M stars. Specifically, water features in the NIRISS/SOSS bandpass indicate a low mean molecular weight atmosphere consistent with solar metallicity, and no appreciable aerosol coverage. Hints of SO$_2$ and CO (but not CO$_2$ or CH$_4$) also exist in our NIRSpec/G395M observations, but not at sufficient signal-to-noise to draw firm conclusions. Our results support a picture in which sub-Neptunes hotter than ~850 K do not form hydrocarbon hazes due to a lack of methane to photolyze. TOI-421 b additionally fits the paradigm of the radius valley for planets orbiting FGK stars being sculpted by mass loss processes, which would leave behind primordial atmospheres overlying rock/iron interiors. Further observations of TOI-421 b and similar hot sub-Neptunes will confirm whether haze-free atmospheres and low mean molecular weights are universal characteristics of such objects.

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Cited by 2 Pith papers

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. The James Webb Space Telescope NIRSpec-PRISM Transmission Spectrum of the Super-Puff, Kepler-51d

    astro-ph.EP 2025-05 conditional novelty 7.0 of 10

    JWST's 0.6-5.3 micron spectrum of Kepler-51d is a featureless slope best explained by a low-metallicity H/He atmosphere with high-altitude submicron hazes.

  2. Overcast mornings and clear evenings in hot Jupiter exoplanet atmospheres

    astro-ph.EP 2025-07 conditional novelty 6.0 of 10

    Three hot Jupiters (WASP-39 b, WASP-94 Ab, WASP-17 b) show >5 sigma morning-evening limb differences in water absorption, with mornings muted by high-altitude aerosols.

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