English

First Images of the Protoplanetary Disk Around PDS 201

Solar and Stellar Astrophysics 2020-05-13 v2 Earth and Planetary Astrophysics

Abstract

Scattered light imaging has revealed nearly a dozen circumstellar disks around young Herbig Ae/Be stars-enabling studies of structures in the upper disk layers as potential signs of on-going planet formation. We present the first images of the disk around the variable Herbig Ae star PDS 201 (V* V351 Ori), and an analysis of the images and spectral energy distribution through 3D Monte-Carlo radiative transfer simulations and forward modelling. The disk is detected in three datasets with LBTI/LMIRCam at the LBT, including direct observations in the KsKs and LL' filters, and an LL' observation with the 360^\circ vector apodizing phase plate coronagraph. The scattered light disk extends to a very large radius of \sim250 au, which places it among the largest of such disks. Exterior to the disk, we establish detection limits on substellar companions down to \sim5 MJup_{Jup} at \gtrsim1.5" (\gtrsim500 au), assuming the Baraffe et al. (2015) models. The images show a radial gap extending to \sim0.4" (\sim140 au at a distance of 340 pc) that is also evident in the spectral energy distribution. The large gap is a possible signpost of multiple high-mass giant planets at orbital distances (\sim60-100 au) that are unusually massive and widely-separated compared to those of planet populations previously inferred from protoplanetary disk substructures.

Keywords

Cite

@article{arxiv.2004.06157,
  title  = {First Images of the Protoplanetary Disk Around PDS 201},
  author = {Kevin Wagner and Jordan Stone and Ruobing Dong and Steve Ertel and Daniel Apai and David Doelman and Alexander Bohn and Joan Najita and Sean Brittain and Matthew Kenworthy and Miriam Keppler and Ryan Webster and Emily Mailhot and Frans Snik},
  journal= {arXiv preprint arXiv:2004.06157},
  year   = {2020}
}

Comments

Accepted for publication in AJ