English

An Atmospheric Structure Equation for Grain Growth

Earth and Planetary Astrophysics 2015-06-22 v1

Abstract

We present a method to include the evolution of the grain size and grain opacity κgr\kappa_\mathrm{gr} in the equations describing the structure of protoplanetary atmospheres. The key assumption of this method is that a single grain size dominates the grain size distribution at any height rr. In addition to following grain growth, the method accounts for mass deposition by planetesimals and grain porosity. We illustrate this method by computation of a simplified atmosphere structure model. In agreement with previous works, grain coagulation is seen to be very efficient. The opacity drops to values much below the often-used `ISM-opacities' (\sim1 cm2 g11\ \mathrm{cm^2\ g}^{-1}) and the atmosphere structure profiles for temperature and density resemble that of the grain-free case. Deposition of planetesimals in the radiative part of the atmosphere hardly influences this outcome as the added surface is quickly coagulated away. We observe a modest dependence on the internal structure (porosity), but show that filling factors cannot become too large because of compression by gas drag.

Keywords

Cite

@article{arxiv.1406.4146,
  title  = {An Atmospheric Structure Equation for Grain Growth},
  author = {Chris W. Ormel},
  journal= {arXiv preprint arXiv:1406.4146},
  year   = {2015}
}

Comments

6 pages; accepted for publication in APJ Letters

R2 v1 2026-06-22T04:39:39.442Z