English

Helium Atmospheres May Hide in Current Exoplanet Analysis Frameworks

Earth and Planetary Astrophysics 2026-01-07 v2

Abstract

The increasing number of detailed exoplanet observations offers an opportunity to refine our analyses and interpretations. Here, we show that atmospheres that appear volatile-rich and/or cloudy may instead be helium-rich. As transmission spectra constrain the atmospheric scale height (HH), a He-enriched atmosphere can be misinterpreted as H2_2-dominated water-rich to bring the mean molecular weight (μ\mu) to intermediate values (\sim4-10) when He/H2_2 is fixed. Similarly, a cloud deck can reduce the spectral features, and thus the apparent (i.e., cloud-free equivalent) HH. We present a proof-of-concept reanalysis of HD~209458~b's JWST transmission spectrum treating He/H2_2 as a free parameter, resulting in sets of He-rich solutions. We argue that He enhancement must be considered to reliably constrain atmospheric composition, be sensitive to a more diverse planetary population, and ultimately yield robust trends to inform formation and evolution pathways. Looking ahead, we suggest leveraging insights from differences in pressure-broadening effects, outflow measurements, and atmospheric chemistry to disentangle reliably between He-, volatile-rich, and cloudy atmospheres -- while recognizing that associated models need targeted upgrades to reach the fidelity level required to this end.

Keywords

Cite

@article{arxiv.2506.22537,
  title  = {Helium Atmospheres May Hide in Current Exoplanet Analysis Frameworks},
  author = {Julien de Wit and Aaron Householder and Prajwal Niraula},
  journal= {arXiv preprint arXiv:2506.22537},
  year   = {2026}
}

Comments

Submitted for review. Comments welcome

R2 v1 2026-07-01T03:37:08.711Z