Observations of edge-on protoplanetary disks with ALMA I. Results from continuum data
M. Villenave, F. Menard, W. R. F. Dent, G. Duchene, K. R. Stapelfeldt,, M. Benisty, Y. Boehler, G. van der Plas, C. Pinte, Z. Telkamp, S. Wolff, C., Flores, G. Lesur, F. Louvet, A. Riols, C. Dougados, H. Williams, and D., Padgett

TL;DR
This study uses high-resolution ALMA continuum images of 12 edge-on protoplanetary disks to investigate the vertical and radial distribution of millimeter grains, revealing significant vertical settling and disk structure details.
Contribution
First direct measurements of vertical grain distribution in edge-on disks using ALMA continuum data, demonstrating grain settling and disk flaring.
Findings
Millimeter emission is more compact than scattered light.
Vertical extent varies among disks, indicating grain settling.
Large grains show significant vertical settling, with scale heights of a few au.
Abstract
We analyze a sample of 12 HST-selected edge-on protoplanetary disks for which the vertical extent of the emission layers can be constrained directly. We present ALMA high angular resolution continuum images (0.1arcsec) of these disks at two wavelengths, 0.89mm and 2.06mm (respectively ALMA bands 7 and 4), supplemented with archival band 6 data (1.33mm) where available. For most sources, the millimeter continuum emission is more compact than the scattered light, both in the vertical and radial directions. Six sources are resolved along their minor axis in at least one millimeter band, providing direct information on the vertical distribution of the millimeter grains. For the second largest disk of the sample, the significant difference in vertical extent between band 7 and band 4 suggests efficient size-selective vertical settling of large grains. Furthermore, the only Class I object in…
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Taxonomy
TopicsAstrophysics and Star Formation Studies · Stellar, planetary, and galactic studies · Astro and Planetary Science
