English

A faint companion around CrA-9: protoplanet or obscured binary?

Earth and Planetary Astrophysics 2021-02-23 v1 Solar and Stellar Astrophysics

Abstract

Understanding how giant planets form requires observational input from directly imaged protoplanets. We used VLT/NACO and VLT/SPHERE to search for companions in the transition disc of 2MASS J19005804-3645048 (hereafter CrA-9), an accreting M0.75 dwarf with an estimated age of 1-2 Myr. We found a faint point source at \sim0.7'' separation from CrA-9 (\sim108 au projected separation). Our 3-epoch astrometry rejects a fixed background star with a 5σ5\sigma significance. The near-IR absolute magnitudes of the object point towards a planetary-mass companion. However, our analysis of the 1.0-3.8μ\mum spectrum extracted for the companion suggests it is a young M5.5 dwarf, based on both the 1.13-μ\mum Na index and comparison with templates of the Montreal Spectral Library. The observed spectrum is best reproduced with high effective temperature (305736+1193057^{+119}_{-36}K) BT-DUSTY and BT-SETTL models, but the corresponding photometric radius required to match the measured flux is only 0.600.04+0.010.60^{+0.01}_{-0.04} Jovian radius. We discuss possible explanations to reconcile our measurements, including an M-dwarf companion obscured by an edge-on circum-secondary disc or the shock-heated part of the photosphere of an accreting protoplanet. Follow-up observations covering a larger wavelength range and/or at finer spectral resolution are required to discriminate these two scenarios.

Keywords

Cite

@article{arxiv.2102.10288,
  title  = {A faint companion around CrA-9: protoplanet or obscured binary?},
  author = {V. Christiaens and M. -G. Ubeira-Gabellini and H. Cánovas and P. Delorme and B. Pairet and O. Absil and S. Casassus and J. H. Girard and A. Zurlo and Y. Aoyama and G-D. Marleau and L. Spina and N. van der Marel and L. Cieza and G. Lodato and S. Pérez and C. Pinte and D. J. Price and M. Reggiani},
  journal= {arXiv preprint arXiv:2102.10288},
  year   = {2021}
}

Comments

24 pages, 14 figures, 4 tables, to be published in MNRAS