English

A precise architecture characterization of the $\pi$ Men planetary system

Earth and Planetary Astrophysics 2020-10-07 v1 Solar and Stellar Astrophysics

Abstract

The bright star π\pi Men was chosen as the first target for a radial velocity follow-up to test the performance of ESPRESSO, the new high-resolution spectrograph at the ESO's Very-Large Telescope (VLT). The star hosts a multi-planet system (a transiting 4 M_\oplus planet at \sim0.07 au, and a sub-stellar companion on a \sim2100-day eccentric orbit) which is particularly appealing for a precise multi-technique characterization. With the new ESPRESSO observations, that cover a time span of 200 days, we aim to improve the precision and accuracy of the planet parameters and search for additional low-mass companions. We also take advantage of new photometric transits of π\pi Men c observed by TESS over a time span that overlaps with that of the ESPRESSO follow-up campaign. We analyse the enlarged spectroscopic and photometric datasets and compare the results to those in the literature. We further characterize the system by means of absolute astrometry with Hipparcos and Gaia. We used the spectra of ESPRESSO for an independent determination of the stellar fundamental parameters. We present a precise characterization of the planetary system around π\pi Men. The ESPRESSO radial velocities alone (with typical uncertainty of 10 cm/s) allow for a precise retrieval of the Doppler signal induced by π\pi Men c. The residuals show an RMS of 1.2 m/s, and we can exclude companions with a minimum mass less than \sim2 M_\oplus within the orbit of π\pi Men c). We improve the ephemeris of π\pi Men c using 18 additional TESS transits, and in combination with the astrometric measurements, we determine the inclination of the orbital plane of π\pi Men b with high precision (ib=45.81.1+1.4i_{b}=45.8^{+1.4}_{-1.1} deg). This leads to the precise measurement of its absolute mass mb=14.10.4+0.5m_{b}=14.1^{+0.5}_{-0.4} MJup_{Jup}, and shows that the planetary orbital planes are highly misaligned.

Keywords

Cite

@article{arxiv.2007.06410,
  title  = {A precise architecture characterization of the $\pi$ Men planetary system},
  author = {M. Damasso and A. Sozzetti and C. Lovis and S. C. C. Barros and S. G. Sousa and O. D. S. Demangeon and J. P. Faria and J. Lillo-Box and S. Cristiani and F. Pepe and R. Rebolo and N. C. Santos and M. R. Zapatero Osorio and J. I. González Hernández and M. Amate and L. Pasquini and F. M. Zerbi and V. Adibekyan and M. Abreu and M. Affolter and Y. Alibert and M. Aliverti and R. Allart and C. Allende Prieto and D. Álvarez and D. Alves and G. Avila and V. Baldini and T. Bandy and W. Benz and A. Bianco and F. Borsa and D. Bossini and V. Bourrier and F. Bouchy and C. Broeg and A. Cabral and G. Calderone and R. Cirami and J. Coelho and P. Conconi and I. Coretti and C. Cumani and G. Cupani and V. D'Odorico and S. Deiries and H. Dekker and B. Delabre and P. Di Marcantonio and X. Dumusque and D. Ehrenreich and P. Figueira and A. Fragoso and L. Genolet and M. Genoni and R. Génova Santos and I. Hughes and O. Iwert and F. Kerber and J. Knudstrup and M. Landoni and B. Lavie and J. -L. Lizon and G. Lo Curto and C. Maire and C. J . A. P. Martins and D. Mégevand and A. Mehner and G. Micela and A. Modigliani and P. Molaro and M. A. Monteiro and M. J. P. F. G. Monteiro and M. Moschetti and E. Mueller and M. T. Murphy and N. Nunes and L. Oggioni and A. Oliveira and M. Oshagh and E. Pallé and G. Pariani and E. Poretti and J. L. Rasilla and J. Rebordão and E. M. Redaelli and M. Riva and S. Santana Tschudi and P. Santin and P. Santos and D. Ségransan and T. M. Schmidt and A. Segovia and D. Sosnowska and P. Spanò and A. Suárez Mascareño and H. Tabernero and F. Tenegi and S. Udry and A. Zanutta},
  journal= {arXiv preprint arXiv:2007.06410},
  year   = {2020}
}

Comments

Accepted for publication on A&A

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