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March 26, 2026Monthly Notices of the Royal Astronomical Society1 citationsOpen Access

Constraining Small Planet Compositions for Future Missions

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LPLarissa PalethorpeAMAnnelies MortierJEJo Ann Egger

Key Points

  • The aim is to accurately measure the mass and radius of small transiting exoplanets to discern their compositions and potential habitability.
  • Conducted a uniform analysis of six planetary systems with small transiting planets.
  • Combined CHEOPS transit observations with archival photometry from K2, TESS, and ground-based facilities.
  • Performed joint transit and radial velocity modelling for precise measurements of mass and radius.
  • Achieved precisions better than 15% for mass and 5% for radius of the planets.
  • Identified a range of compositions, including rocky planets and gas-rich environments.
  • Revealed evidence for additional planetary companions detected via radial velocity measurements.

Abstract

Abstract Accurate mass and radius measurements of small transiting exoplanets are essential for probing their compositions, formation histories, and potential habitability. We present a uniform analysis of six planetary systems (each hosting at least one small transiting planet): K2-79, K2-106, K2-111, K2-222, K2-263, and TOI-1634. Our study combines new CHEOPS transit observations with archival photometry from K2, TESS, and ground-based facilities, alongside new and archival radial velocity data from HARPS-N, HIRES, ESPRESSO, and others. For each system, we perform joint transit and RV modelling, achieving typical precisions better than 15% and 5% for mass and radius, respectively, and thus enabling precise bulk density determinations. These reveal a range of compositions, including rocky planets near the radius valley (e.g. K2-106 b, TOI-1634 b), intermediate-density planets requiring steam-rich or mixed volatile envelopes (e.g. K2-111 b, K2-263 b), and low-density regimes, consistent with gas dwarfs or water-worlds (e.g. K2-79 b, K2-222 b). Several systems show evidence of additional companions detectable via RVs but not seen in transit. The results highlight the value of coordinated CHEOPS and HARPS-N observations in delivering some of the most precise bulk densities for small planets to date and support the preparation for future atmospheric characterisation missions.

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Cite This Study

Palethorpe et al. (2026) studied this question.

synapsesocial.com/papers/69c4cc98fdc3bde448918017https://doi.org/10.1093/mnras/stag520
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