English

A possible misaligned orbit for the young planet AU Mic c

Earth and Planetary Astrophysics 2024-12-24 v2 Instrumentation and Methods for Astrophysics Solar and Stellar Astrophysics

Abstract

The AU Microscopii planetary system is only 24 Myr old, and its geometry may provide clues about the early dynamical history of planetary systems. Here, we present the first measurement of the Rossiter-McLaughlin effect for the warm sub-Neptune AU Mic c, using two transits observed simultaneously with the European Southern Observatory's (ESO's) Very Large Telescope (VLT)/Echelle SPectrograph for Rocky Exoplanets and Stable Spectroscopic Observations (ESPRESSO), CHaracterising ExOPlanet Satellite (CHEOPS), and Next-Generation Transit Survey (NGTS). After correcting for flares and for the magnetic activity of the host star, and accounting for transit-timing variations, we find the sky-projected spin-orbit angle of planet c to be in the range λc=67.849.0+31.7\lambda_c=67.8_{-49.0}^{+31.7}\,degrees (1-σ\sigma). We examine the possibility that planet c is misaligned with respect to the orbit of the inner planet b (λb=2.9610.30+10.44\lambda_b=-2.96_{-10.30}^{+10.44}\,degrees), and the equatorial plane of the host star, and discuss scenarios that could explain both this and the planet's high density, including secular interactions with other bodies in the system or a giant impact. We note that a significantly misaligned orbit for planet c is in some degree of tension with the dynamical stability of the system, and with the fact that we see both planets in transit, though these arguments alone do not preclude such an orbit. Further observations would be highly desirable to constrain the spin-orbit angle of planet c more precisely.

Keywords

Cite

@article{arxiv.2411.16958,
  title  = {A possible misaligned orbit for the young planet AU Mic c},
  author = {H. Yu and Z. Garai and M. Cretignier and Gy. M. Szabó and S. Aigrain and D. Gandolfi and E. M. Bryant and A. C. M. Correia and B. Klein and A. Brandeker and J. E. Owen and M. N. Günther and J. N. Winn and A. Heitzmann and H. M. Cegla and T. G. Wilson and S. Gill and L. Kriskovics and O. Barragán and A. Boldog and L. D. Nielsen and N. Billot and M. Lafarga and A. Meech and Y. Alibert and R. Alonso and T. Bárczy and D. Barrado and S. C. C. Barros and W. Baumjohann and D. Bayliss and W. Benz and M. Bergomi and L. Borsato and C. Broeg and A. Collier Cameron and Sz. Csizmadia and P. E. Cubillos and M. B. Davies and M. Deleuil and A. Deline and O. D. S. Demangeon and B. O. Demory and A. Derekas and L. Doyle and B. Edwards and J. A. Egger and D. Ehrenreich and A. Erikson and A. Fortier and L. Fossati and M. Fridlund and K. Gazeas and M. Gillon and M. Güdel and Ch. Helling and K. G. Isaak and L. L. Kiss and J. Korth and K. W. F. Lam and J. Laskar and A. Lecavelier des Etangs and M. Lendl and D. Magrin and P. F. L. Maxted and J. McCormac and B. Merín and C. Mordasini and V. Nascimbeni and S. M. O'Brien and G. Olofsson and R. Ottensamer and I. Pagano and E. Pallé and G. Peter and D. Piazza and G. Piotto and D. Pollacco and D. Queloz and R. Ragazzoni and N. Rando and H. Rauer and I. Ribas and N. C. Santos and G. Scandariato and D. Ségransan and A. E. Simon and A. M. S. Smith and S. G. Sousa and R. Southworth and M. Stalport and M. Steinberger and S. Sulis and S. Udry and B. Ulmer and S. Ulmer-Moll and V. Van Grootel and J. Venturini and E. Villaver and N. A. Walton and P. J. Wheatley},
  journal= {arXiv preprint arXiv:2411.16958},
  year   = {2024}
}

Comments

Accepted for publication in MNRAS

R2 v1 2026-06-28T20:12:22.301Z