4.7 Article

Compact Disks in a High-resolution ALMA Survey of Dust Structures in the Taurus Molecular Cloud

期刊

ASTROPHYSICAL JOURNAL
卷 882, 期 1, 页码 -

出版社

IOP PUBLISHING LTD
DOI: 10.3847/1538-4357/ab2d2d

关键词

circumstellar matter; planets and satellites: formation; protoplanetary disks; stars: pre-main sequence

资金

  1. National Science Foundation of China [11773002, 11473005]
  2. NASA through Hubble Fellowship - Space Telescope Science Institute [HST-HF251380.001-A]
  3. European Union A-ERC [291141 CHEMPLAN]
  4. NWO
  5. KNAW professor prize
  6. ESO Fellowship
  7. Deutsche Forschungs-Gemeinschaft (DFG, German Research Foundation) [FOR 2634/1 TE1024/1-1]
  8. DISCSIM project
  9. European Research Council [341137, ERC-2013-ADG]
  10. UK Science and Technology Research Council (STFC)
  11. ANR of France [ANR-16-CE31-0013]
  12. NRC Canada
  13. NSERC Discovery Grant
  14. European Union [823823]
  15. Natural Science Foundation of Jiangsu Province of China [BK20181513]
  16. Natural Science Foundation of China [11503087]
  17. European Research Council (ERC) under the European Union [681601]
  18. LSSTC Data Science Fellowship Program - LSSTC, NSF [1829740]
  19. Brinson Foundation [1829740]
  20. Moore Foundation
  21. US National Science Foundation (NSF)
  22. Korea Astronomy and Space Science Institute (KASI)
  23. US NSF [AST-1229522]
  24. Korean GMT Project of KASI
  25. NASA [NAS 5-26555]
  26. STFC [ST/S000623/1] Funding Source: UKRI
  27. European Research Council (ERC) [341137] Funding Source: European Research Council (ERC)

向作者/读者索取更多资源

We present a high-resolution (similar to 0 ''.12, similar to 16 au, mean sensitivity of 50 mu Jy beam(-1) at 225 GHz) snapshot survey of 32 protoplanetary disks around young stars with spectral type earlier than M3 in the Taurus star-forming region using the Atacama Large Millimeter Array. This sample includes most mid-infrared excess members that were not previously imaged at high spatial resolution, excluding close binaries and objects with high extinction, thereby providing a more representative look at disk properties at 1-2 Myr. Our 1.3 mm continuum maps reveal 12 disks with prominent dust gaps and rings, 2 of which are around primary stars in wide binaries, and 20 disks with no resolved features at the observed resolution (hereafter smooth disks), 8 of which are around the primary star in wide binaries. The smooth disks were classified based on their lack of resolved substructures, but their most prominent property is that they are all compact with small effective emission radii (R-eff,R-95% less than or similar to 50 au). In contrast, all disks with R-eff,R-95% of at least 55 au in our sample show detectable substructures. Nevertheless, their inner emission cores (inside the resolved gaps) have similar peak brightness, power-law profiles, and transition radii to the compact smooth disks, so the primary difference between these two categories is the lack of outer substructures in the latter. These compact disks may lose their outer disk through fast radial drift without dust trapping, or they might be born with small sizes. The compact dust disks, as well as the inner disk cores of extended ring disks, that look smooth at the current resolution will likely show small-scale or low-contrast substructures at higher resolution. The correlation between disk size and disk luminosity correlation demonstrates that some of the compact disks are optically thick at millimeter wavelengths.

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