Color measurements of the polarized light scattered by the dust in protoplanetary disks
arXiv:2312.14045 · doi:10.1051/0004-6361/202347782
Abstract
Ground-based high-contrast instruments have yielded reflected light images of protoplanetary disks. Quantitative measurements of the reflected radiation provide strong constraints on the scattering dust which can clarify the dust particle evolution in these disks and the composition of the forming planets. This study aimed to derive the wavelength dependence of polarized reflectivity for 11 disks, constraining dust properties and identifying systematic differences. Using ESO archive data from SPHERE/ZIMPOL and SPHERE/IRDIS instruments, we obtained accurate intrinsic polarized reflectivity values at wavelengths from 0.62m to 2.2m. Polarized reflectivities ranged from to 1.0, with PSF-corrected values averaging 1.6 times higher than observed. Accurate PSF calibrations reduced systematic errors to or less. For each disk, we derived a polarized reflectivity color between a visible band m and a near-IR band m and other wavelength combinations. Wavelength gradients varied significantly among objects. Disks around Herbig stars (HD 169142, HD 135334B, HD 100453, MWC 758, and HD 142527) showed a red color , suggesting rather compact dust grains. T-Tauri star disks (PDS 70, TW Hya, RX J1615, and PDS 66) were predominantly gray , with an absence of blue colors incompatible with porous aggregates. Exceptional red colors for LkCa15 and MWC758 were attributed to potential extra reddening from hot dust near the star. Future studies incorporating parameters like fractional polarization hold promise for advancing our understanding of dust properties within protoplanetary disks.
15 pages, 9 figures, 5 tables, 2 appendices. Accepted by A&A
References in corpus (24)
- Asymmetric features in the protoplanetary disk MWC758
- Shadows cast by a warp in the HD 142527 protoplanetary disk
- Three radial gaps in the disk of TW Hydrae imaged with SPHERE
- Shadows and spirals in the protoplanetary disk HD 100453
- The polarimetric imaging mode of VLT/SPHERE/IRDIS II: Characterization and correction of instrumental polarization effects
- Multiple rings in the transition disk and companion candidates around RXJ1615.3-3255. High contrast imaging with VLT/SPHERE
- Disks Around T Tauri Stars with SPHERE (DARTTS-S) II: Twenty-one new polarimetric images of young stellar disks
- Resolving the planet-hosting inner regions of the LkCa 15 disk
- Perturbers: SPHERE detection limits to planetary-mass companions in protoplanetary disks
- Multiple spiral arms in the disk around intermediate-mass binary HD 34700A
- Variable dynamics in the inner disk of HD 135344B revealed with multi-epoch scattered light imaging
- Effect of dust size and structure on scattered light images of protoplanetary discs
- Scattered light mapping of protoplanetary disks
- How large are the monomers of dust aggregates in planet-forming disks?: Insights from quantitative optical and near-infrared polarimetry
- Fractal aggregates of sub-micron-sized grains in the young planet-forming disk around IM Lup
- Transition disks: the observational revolution from SEDs to imaging
- HD142527: Quantitative disk polarimetry with SPHERE
- Multiband GPI Imaging of the HR 4796A Debris Disk
- Observed polarized scattered light phase functions of planet-forming disks
- Quantitative polarimetry of the disk around HD 169142
- Revealing asymmetrical dust distribution in the inner regions of HD 141569
- Apocenter pile-up and arcs: a narrow dust ring around HD 129590
- A model grid for the reflected light from transition disks
- Quantitative polarimetry for the transition disk in RX J1604.3-213010
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- SPHERE/ZIMPOL insights into discs around evolved stars: arcs, asymmetries and dust properties
- Resolution and calibration effects in high contrast polarimetric imaging of circumstellar scattering regions