Exploring Polarized Millimeter Emission from Protoplanetary Disks with Irregular Dust Grains
arXiv:2604.17779 · doi:10.3847/1538-4357/ae6247
Abstract
Polarization at millimeter wavelengths provides a powerful diagnostic of dust grain properties in protoplanetary disks. Standard models based on solid spherical grains often struggle to reproduce the observed polarization fractions and morphologies in systems where self-scattering is expected to dominate. We investigate the impact of grain morphology on polarized millimeter emission by comparing models that adopt solid spherical grains with models that employ solid irregular hexahedral particles drawn from the TAMUdust2020 database. Both grain populations share identical size distributions, enabling us to isolate the effects of geometry while preserving the same internal structure and material density. We explore three optical-depth regimes-optically thick, optically thin, and an intermediate hybrid case-to assess how grain morphology modifies the polarization structure under different conditions. For size distributions with , where scattering-induced polarization is expected to peak, we find that the polarization morphology and fraction are nearly indistinguishable between spherical and irregular grains. The primary quantitative difference is an enhancement of the scattering opacity by up to a factor of for irregular particles, implying that disk dust masses inferred under the assumption of spherical grains may be systematically overestimated. Irregular grains also suppress the polarization reversal predicted by Mie theory at large size parameters (). Nevertheless, modifying grain geometry alone is insufficient to reproduce the observed polarization fractions within a pure self-scattering framework. These results suggest that additional physical effects, such as dust porosity, warrant dedicated investigation.
15 pages, 8 figures. Accepted for publication in The Astrophysical Journal (ApJ)
References in corpus (40)
- Astropy: A Community Python Package for Astronomy
- The Astropy Project: Building an inclusive, open-science project and status of the v2.0 core package
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- Spectral Energy Distributions of T Tauri Stars With Passive Circumstellar Disks
- First Results from High Angular Resolution ALMA Observations Toward the HL Tau Region
- The Disk Substructures at High Angular Resolution Project (DSHARP): I. Motivation, Sample, Calibration, and Overview
- Discovery of a planetary-mass companion within the gap of the transition disk around PDS 70
- Gaps and Rings in an ALMA Survey of Disks in the Taurus Star-forming Region
- Two accreting protoplanets around the young star PDS 70
- The Disk Substructures at High Angular Resolution Project (DSHARP): V. Interpreting ALMA maps of protoplanetary disks in terms of a dust model
- Orbital and atmospheric characterization of the planet within the gap of the PDS 70 transition disk
- Millimeter-wave polarization of protoplanetary disks due to dust scattering
- Constraints on the Radial Variation of Grain Growth in the AS 209 Circumstellar Disk
- The Radial Distribution of Dust Particles in the HL Tau Disk from ALMA and VLA Observations
- The evidence of radio polarization induced by the radiative grain alignment and self-scattering of dust grains in a protoplanetary disk
- Inclination-Induced Polarization of Scattered Millimeter Radiation from Protoplanetary Disks: The Case of HL Tau
- Radiative grain alignment in protoplanetary disks: Implications for polarimetric observations
- ALMA Reveals Transition of Polarization Pattern with Wavelength in HL Tau's Disk
- Grain size constraints on HL Tau with polarization signature
- Characterizing the dust content of disk substructures in TW Hya
- Submillimeter polarization observation of the protoplanetary disk around HD 142527
- The VLA view of the HL Tau Disk - Disk Mass, Grain Evolution, and Early Planet Formation
- Light scattering by fractal dust aggregates: I. Angular dependence of scattering
- Grain Alignment and Polarized Emission from Magnetized T Tauri Disks
- ALMA observations of polarization from dust scattering in the IM Lup protoplanetary disk
- Two Different Grain Size Distributions within the Protoplanetary Disk around HD 142527 Revealed by ALMA Polarization Observation
- Planet Formation Theory in the Era of ALMA and Kepler: from Pebbles to Exoplanets
- Unveiling Dust Aggregate Structure in Protoplanetary Disks by Millimeter-wave Scattering Polarization
- Disk Polarization From Both Emission and Scattering of Magnetically Aligned Grains: The Case of NGC 1333 IRAS4A1
- Effects of scattering, temperature gradients, and settling on the derived dust properties of observed protoplanetary disks
- Stringent Limits on the Polarized Submillimeter Emission from Protoplanetary Disks
- Does HL Tau Disk Polarization in ALMA Band 3 Come from Radiatively Aligned Grains?
- Intrinsic polarisation of elongated porous dust grains
- Porous Dust Particles in Protoplanetary Disks: Application to the HL Tau Disk
- Retrieving Dust Grain Sizes from Photopolarimetry: An Experimental Approach
- Millimeter-wave polarization due to grain alignment by the gas flow in protoplanetary disks
- Dust Polarization in Four Protoplanetary Disks at 3 mm: Further Evidence of Multiple Origins
- Self-scattering of non-spherical dust grains
- (Sub)millimeter Dust Polarization of Protoplanetary Disks from Scattering by Large Millimeter-Sized Irregular Grains
- Dust mass in protoplanetary disks with porous dust opacities