TOI-2015b: a sub-Neptune in strong gravitational interaction with an outer non-transiting planet
K. Barkaoui, J. Korth, E. Gaidos, E. Agol, H. Parviainen, F.J., Pozuelos, E. Palle, N. Narita, S. Grimm, M. Brady, J.L. Bean, G. Morello,, B.V. Rackham, A.J. Burgasser, V. Van Grootel, B. Rojas-Ayala, A. Seifahrt, E., Marfil, V.M. Passegger, M. Stalport, M. Gillon, K.A. Collins

TL;DR
This study characterizes the TOI-2015 planetary system, revealing a sub-Neptune in a 3.34-day orbit strongly interacting with a non-transiting outer planet, and discusses implications for planetary formation and atmospheres.
Contribution
The paper provides a detailed photodynamical analysis of the TOI-2015 system, identifying a resonant configuration and characterizing both planets' properties with high precision.
Findings
TOI-2015b is a Neptune-like planet with a 3.34-day orbit and high TSM, suitable for JWST observations.
TOI-2015c is a non-transiting planet with a 5.58-day orbit, influencing the inner planet's transit timing variations.
The system is likely in a 5:3 mean motion resonance, informing models of planetary migration.
Abstract
TOI-2015 is a known exoplanetary system around an M4 dwarf star, consisting of a transiting sub-Neptune planet in a 3.35-day orbital period, TOI-2015b, accompanied by a non-transiting companion, TOI-2015c. High-precision RV measurements were taken with the MAROON-X spectrograph, and high-precision photometric data were collected several networks. We re-characterize the target star by combining optical spectr, Bayesian Model Averaging (BMA) and Spectral Energy Distribution (SED) analysis. The TOI-2015 host star is a K=10.3mag M4-type dwarf with a sub-solar metallicity of [Fe/H]=-0.31+/-0.16, and a Teff=3200K. Our photodynamical analysis of the system strongly favors the 5:3 mean motion resonance and in this scenario the planet b has an orbital period of 3.34days, a mass of Mp=9.02+/-0.34Me, a radius of Rp=3.309+/-0.012Re, resulting in a density of rhop= 1.40+/-0.06g/cm3, indicative of a…
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Taxonomy
TopicsAstro and Planetary Science · Space Exploration and Technology · Stellar, planetary, and galactic studies
