English

Protoplanetary Disk Polarization at Multiple Wavelengths: Are Dust Populations Diverse?

Solar and Stellar Astrophysics 2024-04-17 v1 Earth and Planetary Astrophysics

Abstract

Millimeter and sub-millimeter observations of continuum linear dust polarization provide insight into dust grain growth in protoplanetary disks, which are the progenitors of planetary systems. We present the results of the first survey of dust polarization in protoplanetary disks at 870 μ\mum and 3 mm. We find that protoplanetary disks in the same molecular cloud at similar evolutionary stages can exhibit different correlations between observing wavelength and polarization morphology and fraction. We explore possible origins for these differences in polarization, including differences in dust populations and protostar properties. For RY Tau and MWC 480, which are consistent with scattering at both wavelengths, we present models of the scattering polarization from several dust grain size distributions. These models aim to reproduce two features of the observational results for these disks: (1) both disks have an observable degree of polarization at both wavelengths and (2) the polarization fraction is higher at 3 mm than at 870 μ\mum in the centers of the disks. For both disks, these features can be reproduced by a power-law distribution of spherical dust grains with a maximum radius of 200 μ\mum and high optical depth. In MWC 480, we can also reproduce features (1) and (2) with a model containing large grains (amaxa_{max} = 490 μ\mum ) near the disk midplane and small grains (amaxa_{max} = 140 μ\mum) above and below the midplane.

Keywords

Cite

@article{arxiv.2404.10217,
  title  = {Protoplanetary Disk Polarization at Multiple Wavelengths: Are Dust Populations Diverse?},
  author = {Rachel E. Harrison and Zhe-Yu Daniel Lin and Leslie W. Looney and Zhi-Yun Li and Haifeng Yang and Ian Stephens and Manuel Fernández-López},
  journal= {arXiv preprint arXiv:2404.10217},
  year   = {2024}
}

Comments

22 pages, 12 figures