Six transiting planets and a chain of Laplace resonances in TOI-178
A. Leleu, Y. Alibert, N. C. Hara, M. J. Hooton, T. G. Wilson, P., Robutel, J.-B. Delisle, J. Laskar, S. Hoyer, C. Lovis, E. M. Bryant, E., Ducrot, J. Cabrera, L. Delrez, J. S. Acton, V. Adibekyan, R. Allart, C., Allende Prieto, R. Alonso, D. Alves, D. R. Anderson, D. Angerhausen

TL;DR
This study reveals a unique six-planet system in Laplace resonance with diverse densities, offering insights into planetary formation, orbital dynamics, and atmospheric evolution through detailed observations and modeling.
Contribution
It provides the first detailed characterization of a multi-planet system with a chain of Laplace resonances and diverse planetary densities, enhancing understanding of planetary system architectures.
Findings
Six planets in TOI-178 form a Laplace resonance chain.
Planet densities vary significantly, indicating complex formation histories.
The system's architecture offers new insights into planetary formation and evolution.
Abstract
Determining the architecture of multi-planetary systems is one of the cornerstones of understanding planet formation and evolution. Resonant systems are especially important as the fragility of their orbital configuration ensures that no significant scattering or collisional event has taken place since the earliest formation phase when the parent protoplanetary disc was still present. In this context, TOI-178 has been the subject of particular attention since the first TESS observations hinted at a 2:3:3 resonant chain. Here we report the results of observations from CHEOPS, ESPRESSO, NGTS, and SPECULOOS with the aim of deciphering the peculiar orbital architecture of the system. We show that TOI-178 harbours at least six planets in the super-Earth to mini-Neptune regimes, with radii ranging from 1.152(-0.070/+0.073) to 2.87(-0.13/+0.14) Earth radii and periods of 1.91, 3.24, 6.56,…
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