On the Information Content of Ariel Transmission Spectra: Reassessing the Tier System

arXiv:2604.07598 · astro-ph.EP, astro-ph.IM · Submitted 2026-04-08 · Read on arXiv

astro-ph.EP, astro-ph.IM

Submitted: 2026-04-08

Updated: 2026-09-09

Comments: Accepted to AJ

Code: https://github.com/arielmission-space/Mission

License: http://creativecommons.org/licenses/by/4.0/

The gist: The European Space Agency's Ariel mission will conduct a survey of the atmospheric properties of exoplanets around bright stars.

Terminology

Abstract

The European Space Agency's Ariel mission will conduct a survey of the atmospheric properties of exoplanets around bright stars. The mission is nominally divided into three Tiers. The Tier 1 survey will consist of low-precision observations of 1000 planets, with a subset of these included in the higher-precision Tier 2 survey expected to be necessary for atmospheric characterization. Tier 3 will be repeated observations of a small number of benchmark planets. Though previous studies have assessed the ability of Ariel to uncover population-level trends, they have generally presupposed a given Tier. Here we interrogate this assumption and assess the information content of Ariel transmission spectra as a function of Tier for three benchmark planets: a hot-Saturn, warm-Neptune, and temperate sub-Neptune. We simulate a grid of Ariel transit spectra at different Tiers for each target and use retrievals to assess which chemical species are well constrained. We find that for giant planets like a hot-Saturn or warm-Neptune, Tier 1-quality observations are sufficient for 1.5,dex constraints on H 2 O and CO 2, even in the presence of grey clouds --- meaning important chemical insights are already obtainable in the Tier 1 survey. Moving to Tiers 2 and 3 results in an incremental increase in precision as well as other molecules becoming constrainable in certain scenarios (e.g., H 2 S, CO). Tier 1 observations are also sufficient to identify CH 4 in a temperate sub-Neptune, whereas observations with at least Tier 2 precision are necessary for CO 2. The number of transits necessary to reach this observational S/N, however, may be prohibitive for the inclusion of temperate sub-Neptunes in even the Tier 1 survey.

Sources

Related papers