Submillimeter Array Observations of the RX J1633.9-2442 Transition Disk: Evidence for Multiple Planets in the Making
arXiv:1204.5722 · doi:10.1088/0004-637X/752/1/75
Abstract
We present continuum high resolution Submillimeter Array (SMA) observations of the transition disk object RX J1633.9-2442, which is located in the Ophiuchus molecular cloud and has recently been identified as a likely site of ongoing giant planet formation. The observations were taken at 340 GHz (880 micron) with the SMA in its most extended configuration, resulting in an angular resolution of 0.3" (35 AU at the distance of the target). We find that the disk is highly inclined (i ~50 deg) and has an inner cavity ~25 AU in radius, which is clearly resolved by our observations. We simultaneously model the entire optical to millimeter wavelength spectral energy distribution (SED) and SMA visibilities of RX J1633.9-2442 in order to constrain the structure of its disk. We find that an empty cavity ~25 AU in radius is inconsistent with the excess emission observed at 12, 22, and 24 micron. Instead, the mid-IR excess can be modeled by either a narrow, optically thick ring at ~10 AU or an optically thin region extending from ~7 AU to ~25 AU. The inner disk (r < 5 AU) is mostly depleted of small dust grains as attested by the lack of detectable near-IR excess. We also present deep Keck aperture masking observations in the near-IR, which rule out the presence of a companion up to 500 times fainter than the primary star (in K-band) for projected separations in the 5-20 AU range. We argue that the complex structure of the RX J1633.9-2442 disk is best explained by multiple planets embedded within the disk. We also suggest that the properties and incidence of objects such as RX J1633.9-2442, T Cha, and LkCa 15 (and those of the companions recently identified to these two latter objects) are most consistent with the runaway gas accretion phase of the core accretion model, when giant planets gain their envelopes and suddenly become massive enough to open wide gaps in the disk.
Accepted for publication in ApJ
References in corpus (20)
- Coagulation, fragmentation and radial motion of solid particles in protoplanetary disks
- Protoplanetary Disk Structures in Ophiuchus
- On the Luminosity of Young Jupiters
- Photoevaporation of protoplanetary discs II: evolutionary models and observable properties
- Monte Carlo radiative transfer in protoplanetary disks
- Accretion in the Rho-Oph pre-main sequence stars
- A Submillimeter View of Circumstellar Dust Disks in Ophiuchus
- Photoevaporation of protoplanetary discs I: hydrodynamic models
- The Two Modes of Gas Giant Planet Formation
- Dust size distributions in coagulation/fragmentation equilibrium: Numerical solutions and analytical fits
- Demographics of Transition Objects
- The Disk Around CoKu Tau/4: Circumbinary, not Transitional
- LkH 330: Evidence for dust clearing through resolved submillimeter imaging
- Mapping the Shores of the Brown Dwarf Desert I.: Upper Scorpius
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- Millimeter imaging of HD 163296: probing the disk structure and kinematics
- Gravitational Instabilities, Chondrule Formation, and the FU Orionis Phenomenon
- The Nature of Transition Circumstellar Disks II. Southern Molecular Clouds
- A SCUBA survey of L1689 - The dog that didn't bark
- Dynamical Mass of GJ 802B: a brown dwarf in a triple system
Cited by in corpus (26)
- Our astrochemical heritage
- The Ophiuchus DIsc Survey Employing ALMA (ODISEA) - I : project description and continuum images at 28 au resolution
- An azimuthal asymmetry in the LkHa 330 disk
- The Ophiuchus DIsc Survey Employing ALMA (ODISEA)-III: the evolution of substructures in massive discs at 3-5 au resolution
- Origin of apparent period variations in eclipsing post-common-envelope binaries
- Searching for circumplanetary disks around LkCa 15
- The (w)hole survey: an unbiased sample study of transition disk candidates based on Spitzer catalogs
- Non-azimuthal linear polarization in protoplanetary disks
- The Structure of Pre-transitional Protoplanetary Disks I: Radiative Transfer Modeling of the Disk+Cavity in the PDS 70 system
- The SEEDS High Contrast Imaging Survey of Exoplanets around Young Stellar Objects
- Fluctuations and Flares in the Ultraviolet Line Emission of Cool Stars: Implications for Exoplanet Transit Observations
- The Herschel DIGIT Survey of Weak-line T Tauri Stars: implications for disk evolution and dissipation
- Gaps in Protoplanetary Disks as Signatures of Planets: II. Inclined Disks
- Resolving structure of the disk around HD100546 at 7 mm with ATCA
- ALMA observations of Elias 2-24: a protoplanetary disk with multiple gaps in the Ophiuchus Molecular Cloud
- Gas inside the 97 au cavity around the transition disk Sz\,91
- The Frequency Of Binary Star Interlopers Amongst Transitional Discs
- High-Resolution Submillimeter and Near-Infrared Studies of the Transition Disk around Sz 91
- GW Ori: Inner disk readjustments in a triple system
- A gas density drop in the inner 6 AU of the transition disk around the Herbig Ae star HD 139614: Further evidence for a giant planet inside the disk?
- Interpreting Brightness Asymmetries in Transition Disks: Vortex at Dead Zone or Planet Carved Gap Edges?
- A SCUBA-2 850 micron Survey of Protoplanetary Discs in the IC 348 Cluster
- 3.3 cm JVLA observations of transitional disks: searching for centimeter pebbles
- The Ophiuchus DIsk Survey Employing ALMA (ODISEA): A Unified Evolutionary Sequence of Planet-Driven Substructures Explaining the Diversity of Disk Morphologies
- Gas distribution in ODISEA sources from ALMA long-baseline observations in CO(2-1)
- Constraining the mass of the planet(s) sculpting a disk cavity. The intriguing case of 2MASS J16042165-2130284