English

A case of simultaneous star and planet formation

Earth and Planetary Astrophysics 2020-11-25 v1 Solar and Stellar Astrophysics

Abstract

While it is widely accepted that planets are formed in protoplanetary disks, there is still much debate on when this process happens. In a few cases protoplanets have been directly imaged, but for the vast majority of systems, disk gaps and cavities -- seen especially in dust continuum observations -- have been the strongest evidence of recent or on-going planet formation. We present ALMA observations of a nearly edge-on (i=75i = 75^{\circ}) disk containing a giant gap seen in dust but not in 12^{12}CO gas. Inside the gap, the molecular gas has a warm (100 K) component coinciding in position with a tentative free-free emission excess observed with the VLA. Using 1D hydrodynamic models, we find the structure of the gap is consistent with being carved by a planet with 4-70 MJupM_{\rm Jup}. The coincidence of free-free emission inside the planet-carved gap points to the planet being very young and/or still accreting. In addition, the 12^{12}CO observations reveal low-velocity large scale filaments aligned with the disk major axis and velocity coherent with the disk gas that we interpret as ongoing gas infall from the local ISM. This system appears to be an interesting case where both a star (from the environment and the disk) and a planet (from the disk) are growing in tandem.

Keywords

Cite

@article{arxiv.2010.15135,
  title  = {A case of simultaneous star and planet formation},
  author = {Felipe O. Alves and L. Ilsedore Cleeves and Josep M. Girart and Zhaohuan Zhu and Gabriel A. P. Franco and Alice Zurlo and Paola Caselli},
  journal= {arXiv preprint arXiv:2010.15135},
  year   = {2020}
}

Comments

7 pages, 4 figures, Accepted for publication in ApJ Letters