English

Radiative scale-height and shadows in protoplanetary disks

Earth and Planetary Astrophysics 2021-03-31 v1

Abstract

Planets form in young circumstellar disks called protoplanetary disks. However, it is still difficult to catch planet formation in-situ. Nevertheless, from recent ALMA/SPHERE data, encouraging evidence of the direct and indirect presence of embedded planets has been identified in disks around young stars: co-moving point sources, gravitational perturbations, rings, cavities, and emission dips or shadows cast on disks. The interpretation of these observations needs a robust physical framework to deduce the complex disk geometry. In particular, protoplanetary disk models usually assume the gas pressure scale-height given by the ratio of the sound speed over the azimuthal velocity H/r=cs/vkH/r = c_{s\rm }/v_{\rm k}. By doing so, \textit{radiative} pressure fields are often ignored, which could lead to a misinterpretation of the real vertical structure of such disks. We follow the evolution of a gaseous disk with an embedded Jupiter mass planet through hydrodynamical simulations, computing the disk scale-height including radiative pressure, which was derived from a generalization of the stellar atmosphere theory. We focus on the vertical impact of the radiative pressure in the vicinity of circumplanetary disks, where temperatures can reach 1000\gtrsim 1000 K for an accreting planet, and radiative forces can overcome gravitational forces from the planet. The radiation-pressure effects create a vertical optically thick column of gas and dust at the proto-planet location, casting a shadow in scattered light. This mechanism could explain the peculiar illumination patterns observed in some disks around young stars such as HD 169142 where a moving shadow has been detected, or the extremely high aspect-ratio H/r0.2H/r \sim 0.2 observed in systems like AB Aur and CT Cha.

Keywords

Cite

@article{arxiv.2102.02874,
  title  = {Radiative scale-height and shadows in protoplanetary disks},
  author = {Matías Montesinos and Nicolás Cuello and Johan Olofsson and Jorge Cuadra and Amelia Bayo and Gesa H. -M. Bertrang and Clément Perrot},
  journal= {arXiv preprint arXiv:2102.02874},
  year   = {2021}
}

Comments

12 pages, 7 figures. Accepted for publication by ApJ

R2 v1 2026-06-23T22:51:15.277Z