GW Ori is a hierarchical triple star system with a misaligned circumtriple protoplanetary disc. Recent ALMA observations have identified three dust rings with a prominent gap at 100au and misalignments between each of the rings. A break in the gas disc may be driven either by the torque from the triple star system or a planet that is massive enough to carve a gap in the disc. Once the disc is broken, the rings nodally precess on different timescales and become misaligned. We investigate the origins of the dust rings by means of N-body integrations and 3-dimensional hydrodynamic simulations. We find that for observationally-motivated parameters of protoplanetary discs, the disc does not break due to the torque from the star system. We suggest that the presence of a massive planet (or planets) in the disc separates the inner and outer disc. We conclude that the disc breaking in GW Ori is likely caused by undetected planets -- the first planet(s) in a circumtriple orbit.
@article{arxiv.2109.09776,
title = {GW Ori: circumtriple rings and planets},
author = {Jeremy L. Smallwood and Rebecca Nealon and Cheng Chen and Rebecca G. Martin and Jiaqing Bi and Ruobing Dong and Christophe Pinte},
journal= {arXiv preprint arXiv:2109.09776},
year = {2021}
}