Protoplanetary Disk Structures in Ophiuchus

نویسندگان

  • Sean M. Andrews
  • D. J. Wilner
  • A. M. Hughes
  • Chunhua Qi
چکیده

We present the results of a high angular resolution (0. 3 ≈ 40AU) Submillimeter Array survey of the 345GHz (870μm) thermal continuum emission from 9 of the brightest, and therefore most massive, circumstellar disks in the ∼1Myr-old Ophiuchus starforming region. Using two-dimensional radiative transfer calculations, we simultaneously fit the observed continuum visibilities and broadband spectral energy distribution for each disk with a parametric structure model. Compared to previous millimeter studies, this survey includes significant upgrades in modeling, data quality, and angular resolution that provide improved constraints on key structure parameters, particularly those that characterize the spatial distribution of mass in the disks. In the context of a surface density profile motivated by similarity solutions for viscous accretion disks, Σ ∝ (R/Rc) exp [−(R/Rc) ], the best-fit models for the sample disks have characteristic radii Rc ≈ 20-200AU, high disk masses Md ≈ 0.005-0.14M⊙ (a sample selection bias), and a narrow range of radial Σ gradients (γ ≈ 0.4-1.0) around a median γ = 0.9. These density structures are used in conjunction with accretion rate estimates from the literature to help characterize the viscous evolution of the disk material. Using the standard prescription for disk viscosities, those combined constraints indicate that α ≈ 0.0005-0.08. Three of the sample disks show large (R ≈ 20-40AU) central cavities in their continuum emission morphologies, marking extensive zones where dust has been physically removed and/or has significantly diminished opacities. Based on the current requirements of planet formation models, these emission cavities and the structure constraints for the sample as a whole suggest that these young disks may eventually produce planetary systems, and have perhaps already started. Subject headings: accretion, accretion disks — circumstellar matter — planetary systems: protoplanetary disks — solar system: formation — stars: pre-main-sequence Harvard-Smithsonian Center for Astrophysics, 60 Garden Street, Cambridge, MA 02138; sandrews, dwilner, mhughes, [email protected] Hubble Fellow Max Planck Institut für Astronomie, Königstuhl 17, 69117 Heidelberg, Germany; [email protected]

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تاریخ انتشار 2009