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April 17, 2026Science Advances1 citationsOpen Access

Uncovering the rapidly evolving orbits of the dynamic TOI-201 system

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IMIsmael MirelesSUSoléne Ulmer-MollUniversity of GenevaDLDonald LiveoakUniversity of Michigan

Key Points

  • Characterizing the dynamic interactions and evolution of the TOI-201 exoplanet system.
  • Combination of spectroscopy and transit photometry
  • Analysis of transit timing variations
  • Utilization of astrometry
  • Dynamical simulations to explore historical and future configurations
  • The TOI-201 system includes a super-Earth and a warm Jupiter with distinct orbital periods
  • Dynamical simulations indicate significant orbital eccentricity driven by von-Zeipel-Kozai-Lidov oscillations
  • Visible evolution projected to alter the cotransiting configuration within 200 years

Abstract

Studying planetary interactions in exoplanet systems informs theories of planet formation and evolution, providing essential context for understanding our own solar system. We combine spectroscopy, transit photometry, transit timing variations, and astrometry to characterize the TOI-201 system. The cotransiting system consists of a super-Earth, warm Jupiter, and massive companion at 5.8-, 53-, and 2900-day orbital periods, respectively. We perform dynamical simulations to study the past and future of the system. von-Zeipel-Kozai-Lidov oscillations emerge as the most plausible scenario to explain the outer companion’s high orbital eccentricity, with planet-planet scattering a possible but less likely contender. Because of nonzero mutual inclinations between the planets, the system is visibly evolving on very short timescales, with the current cotransiting configuration ending in 200 years.

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Cite This Study

Mireles et al. (2026) studied this question.

synapsesocial.com/papers/69e1cf985cdc762e9d858879https://doi.org/10.1126/sciadv.aef2618
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