English

Transit Timing Variations in the three-planet system: TOI-270

Earth and Planetary Astrophysics 2023-08-22 v1

Abstract

We present ground and space-based photometric observations of TOI-270 (L231-32), a system of three transiting planets consisting of one super-Earth and two sub-Neptunes discovered by TESS around a bright (K-mag=8.25) M3V dwarf. The planets orbit near low-order mean-motion resonances (5:3 and 2:1), and are thus expected to exhibit large transit timing variations (TTVs). Following an extensive observing campaign using 8 different observatories between 2018 and 2020, we now report a clear detection of TTVs for planets c and d, with amplitudes of \sim10 minutes and a super-period of \sim3 years, as well as significantly refined estimates of the radii and mean orbital periods of all three planets. Dynamical modeling of the TTVs alone puts strong constraints on the mass ratio of planets c and d and on their eccentricities. When incorporating recently published constraints from radial velocity observations, we obtain masses of Mb=1.48±0.18MM_{\mathrm{b}}=1.48\pm0.18\,M_\oplus, Mc=6.20±0.31MM_{c}=6.20\pm0.31\,M_\oplus and Md=4.20±0.16MM_{\mathrm{d}}=4.20\pm0.16\,M_\oplus for planets b, c and d, respectively. We also detect small, but significant eccentricities for all three planets : eb=0.0167±0.0084e_\mathrm{b} =0.0167\pm0.0084, ec=0.0044±0.0006e_{c} =0.0044\pm0.0006 and ed=0.0066±0.0020e_{d} = 0.0066\pm0.0020. Our findings imply an Earth-like rocky composition for the inner planet, and Earth-like cores with an additional He/H2_2O atmosphere for the outer two. TOI-270 is now one of the best-constrained systems of small transiting planets, and it remains an excellent target for atmospheric characterization.

Keywords

Cite

@article{arxiv.2308.10763,
  title  = {Transit Timing Variations in the three-planet system: TOI-270},
  author = {Laurel Kaye and Shreyas Vissapragada and Maximilian N. Gunther and Suzanne Aigrain and Thomas Mikal-Evans and Eric L. N. Jensen and Hannu Parviainen and Francisco J. Pozuelos and Lyu Abe and Jack S. Acton and Abdelkrim Agabi and Douglas R. Alves and David R. Anderson and David J. Armstrong and Khalid Barkaoui and Oscar Barragan and Bjorn Benneke and Patricia T. Bo yd and Rafael Brahm and Ivan Bruni and Edward M. Bryant and Matthew R. Burleigh and Sarah L. Casewell and David Ciardi and Ryan Cloutier and Karen A. Collins and Kevin I. Collins and Dennis M. Conti and Ian J. M. Crossfield and Nicolas Crouzet and Tansu Daylan and Diana Dragomir and Georgina Dransfield and Daniel F abrycky and Michael Fausnaugh and Gabor Fuuresz and Tianjun Gan and Samuel Gill and Michael Gillon and Michael R Goad and Varoujan Gorjian and Michael Greklek-McKeon and Natalia Guerrero and Tristan Guillot and Emmanuel Jehin and J. S. Jenkins and Monika Lendl and Jacob Kamler and Stephen R. Kane and John F. Kielkopf and Michelle Kunimoto and Wenceslas Marie-Sainte and James McCormac and Djamel Mekarnia and Farisa Y. Morales and Maximiliano Moyano and Enric Palle and Vivien Parmentier and Howard M. Relles and Francois-Xavier Schmider and Richard P. Schwarz and S. Seager and Alexis M. S. Smith and Thiam-Guan Tan and Jake Taylor and Amaury H. M. J. Triaud and Joseph D. Twicken and Stephane Udry and J. I. Vines and Gavin Wang and Peter J. Wheatley and Joshua N. Winn},
  journal= {arXiv preprint arXiv:2308.10763},
  year   = {2023}
}

Comments

22 pages, 7 figures

R2 v1 2026-06-28T12:00:30.676Z