Stringent Limits on the Polarized Submillimeter Emission from Protoplanetary Disks
arXiv:0909.1345 · doi:10.1088/0004-637X/704/2/1204
Abstract
We present arcsecond-resolution Submillimeter Array (SMA) polarimetric observations of the 880 um continuum emission from the protoplanetary disks around two nearby stars, HD 163296 and TW Hydrae. Although previous observations and theoretical work have suggested that a 2-3% polarization fraction should be common for the millimeter continuum emission from such disks, we detect no polarized continuum emission above a 3-sigma upper limit of 7 mJy in each arcsecond-scale beam, or <1% in integrated continuum emission. We compare the SMA upper limits with the predictions from the exploratory Cho & Lazarian (2007) model of polarized emission from T Tauri disks threaded by toroidal magnetic fields, and rule out their fiducial model at the ~10-sigma level. We explore some potential causes for this discrepancy, focusing on model parameters that describe the shape, magnetic field alignment, and size distribution of grains in the disk. We also investigate related effects like the magnetic field strength and geometry, scattering off of large grains, and the efficiency of grain alignment, including recent advances in grain alignment theory, which are not considered in the fiducial model. We discuss the impact each parameter would have on the data and determine that the suppression of polarized emission plausibly arises from rounding of large grains, reduced efficiency of grain alignment with the magnetic field, and/or some degree of magnetic field tangling (perhaps due to turbulence). A poloidal magnetic field geometry could also reduce the polarization signal, particularly for a face-on viewing geometry like the TW Hya disk. The data provided here offer the most stringent limits to date on the polarized millimeter-wavelength emission from disks around young stars.
15 pages, 6 figures, accepted for publication in ApJ
References in corpus (16)
- Tracing Magnetic Fields with Aligned Grains
- Magnetic Fields in the Formation of Sun-Like Stars
- Magnetic fields in protoplanetary disks
- Dust dynamics during protoplanetary disc clearing
- Turbulent Mixing and the Dead Zone in Protostellar Disks
- Radiative torque alignment: Essential Physical Processes
- Gas and Dust Emission at the Outer Edge of Protoplanetary Disks
- An Inner Hole in the Disk around TW Hydrae Resolved in 7 Millimeter Dust Emission
- Millimeter imaging of HD 163296: probing the disk structure and kinematics
- Subsonic Mechanical Alignment of Irregular Grains
- Grain alignment induced by radiative torques: effects of internal relaxation of energy and complex radiation fields
- Gas-phase CO in protoplanetary disks: a challenge for turbulent mixing
- Grain Alignment and Polarized Emission from Magnetized T Tauri Disks
- Mean-Field Magnetohydrodynamics of Accretion Disks
- Planet Formation with Migration
- Alignment of Dust with Magnetic Inclusions: Radiative Torques and Superparamagnetic Barnett and Nuclear Relaxation
Cited by in corpus (44)
- Protoplanetary Disks and Their Evolution
- Resolved Images of Large Cavities in Protoplanetary Transition Disks
- Dynamics of Protoplanetary Disks
- Observations of Protoplanetary Disk Structures
- Turbulence in the TW Hya Disk
- A Millimeter Continuum Size-Luminosity Relationship for Protoplanetary Disks
- Hall-effect Controlled Gas Dynamics in Protoplanetary Disks: II. Full 3D Simulations toward the Outer Disk
- Magnetorotational Instability Driven Accretion in Protoplanetary Disks
- Radiative transfer with POLARIS: I. Analysis of magnetic fields through synthetic dust continuum polarization measurements
- Empirical Constraints on Turbulence in Protoplanetary Accretion Disks
- A unified model of grain alignment: radiative alignment of interstellar grains with magnetic inclusions
- The evidence of radio polarization induced by the radiative grain alignment and self-scattering of dust grains in a protoplanetary disk
- Radiative grain alignment in protoplanetary disks: Implications for polarimetric observations
- Grain Alignment by Radiative Torques in Special Conditions and Implications
- Emission Lines from the Gas Disk around TW Hydra and the Origin of the Inner Hole
- Interferometric observations of magnetic fields in forming stars
- Submillimeter polarization observation of the protoplanetary disk around HD 142527
- Temperature, Mass and Turbulence: A Spatially Resolved Multi-Band Non-LTE Analysis of CS in TW~Hya
- Single peaked CO emission line profiles from the inner regions of protoplanetary disks
- ALMA observations of polarization from dust scattering in the IM Lup protoplanetary disk
- Scattering-Produced (Sub)millimeter Polarization in Inclined Disks: Optical Depth Effects, Near-Far Side Asymmetry, and Dust Settling
- Detection of a Magnetized Disk around a Very Young Protostar
- Submillimetre dust polarisation and opacity in the HD163296 protoplanetary ring system
- Observations of Solids in Protoplanetary Disks
- Two Different Grain Size Distributions within the Protoplanetary Disk around HD 142527 Revealed by ALMA Polarization Observation
- Stringent limits on the magnetic field strength in the disc of TW Hya: ALMA observations of CN polarisation
- Global evolution of the magnetic field in a thin disc and its consequences for protoplanetary systems
- Disk Polarization From Both Emission and Scattering of Magnetically Aligned Grains: The Case of NGC 1333 IRAS4A1
- Dead, Undead and Zombie Zones in Protostellar Disks as a Function of Stellar Mass
- SILCC-Zoom: Polarisation and depolarisation in molecular clouds
- An Ordered Magnetic Field in the Protoplanetary Disk of AB Aur Revealed by Mid-Infrared Polarimetry
- Turbulent Linewidths in Protoplanetary Disks: Predictions from Numerical Simulations
- Interferometric Upper Limits on Millimeter Polarization of the Disks around DG Tau, GM Aur, and MWC 480
- Tracing the ISM magnetic field morphology: The potential of multi-wavelength polarization measurements
- Detection of Linearly Polarized 6.9 mm Continuum Emission from the Class 0 Young Stellar Object NGC1333 IRAS4A
- Modeling of the ALMA HL Tau Polarization by Mixture of Grain Alignment and Self-scattering
- Two modes of carbonaceous dust alignment
- 3D radiative transfer of intrinsically polarized dust emission based on aligned aspherical grains
- Mid-Infrared Polarization of Herbig Ae/Be Discs
- A wind-driving disc model for the mm-wavelength polarization structure of HL Tau
- Synthetic dust polarization emission maps at 353 GHz for an observer placed inside a Local Bubble-like cavity
- Wavelength-dependent far-infrared polarization of HL Tau observed with SOFIA/HAWC+
- Exploring Polarized Millimeter Emission from Protoplanetary Disks with Irregular Dust Grains
- History of the Solar Nebula from Meteorite Paleomagnetism