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

Authors :
Kaye, Laurel
Vissapragada, Shreyas
Gunther, Maximilian N.
Aigrain, Suzanne
Mikal-Evans, Thomas
Jensen, Eric L. N.
Parviainen, Hannu
Pozuelos, Francisco J.
Abe, Lyu
Acton, Jack S.
Agabi, Abdelkrim
Alves, Douglas R.
Anderson, David R.
Armstrong, David J.
Barkaoui, Khalid
Barragan, Oscar
Benneke, Bjorn
yd, Patricia T. Bo
Brahm, Rafael
Bruni, Ivan
Bryant, Edward M.
Burleigh, Matthew R.
Casewell, Sarah L.
Ciardi, David
Cloutier, Ryan
Collins, Karen A.
Collins, Kevin I.
Conti, Dennis M.
Crossfield, Ian J. M.
Crouzet, Nicolas
Daylan, Tansu
Dragomir, Diana
Dransfield, Georgina
abrycky, Daniel F
Fausnaugh, Michael
Fuuresz, Gabor
Gan, Tianjun
Gill, Samuel
Gillon, Michael
Goad, Michael R
Gorjian, Varoujan
Greklek-McKeon, Michael
Guerrero, Natalia
Guillot, Tristan
Jehin, Emmanuel
Jenkins, J. S.
Lendl, Monika
Kamler, Jacob
Kane, Stephen R.
Kielkopf, John F.
Kunimoto, Michelle
Marie-Sainte, Wenceslas
McCormac, James
Mekarnia, Djamel
Morales, Farisa Y.
Moyano, Maximiliano
Palle, Enric
Parmentier, Vivien
Relles, Howard M.
Schmider, Francois-Xavier
Schwarz, Richard P.
Seager, S.
Smith, Alexis M. S.
Tan, Thiam-Guan
Taylor, Jake
Triaud, Amaury H. M. J.
Twicken, Joseph D.
Udry, Stephane
Vines, J. I.
Wang, Gavin
Wheatley, Peter J.
Winn, Joshua N.
Source :
Monthly Notices of the Royal Astronomical Society, Volume 510, Issue 4, pp.5464-5485 (2022)
Publication Year :
2023

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 $\sim$10 minutes and a super-period of $\sim$3 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 $M_{\mathrm{b}}=1.48\pm0.18\,M_\oplus$, $M_{c}=6.20\pm0.31\,M_\oplus$ and $M_{\mathrm{d}}=4.20\pm0.16\,M_\oplus$ for planets b, c and d, respectively. We also detect small, but significant eccentricities for all three planets : $e_\mathrm{b} =0.0167\pm0.0084$, $e_{c} =0.0044\pm0.0006$ and $e_{d} = 0.0066\pm0.0020$. Our findings imply an Earth-like rocky composition for the inner planet, and Earth-like cores with an additional He/H$_2$O 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.<br />Comment: 22 pages, 7 figures

Details

Database :
arXiv
Journal :
Monthly Notices of the Royal Astronomical Society, Volume 510, Issue 4, pp.5464-5485 (2022)
Publication Type :
Report
Accession number :
edsarx.2308.10763
Document Type :
Working Paper
Full Text :
https://doi.org/10.1093/mnras/stab3483