Polarization as a probe of thick dust disk in edge-on galaxies: application to NGC 891
arXiv:1806.06101 · doi:10.3847/1538-4357/aacd06
Abstract
Radiative transfer models were developed to understand the optical polarizations in edge-on galaxies, which are observed to occur even outside the geometrically thin dust disk, with a scale height of ~ 0.2 kpc. In order to reproduce the vertically extended polarization structure, we find it is essential to include a geometrically thick dust layer in the radiative transfer model, in addition to the commonly-known thin dust layer. The models include polarizations due to both dust scattering and dichroic extinction which is responsible for the observed interstellar polarization in the Milky Way. We also find that the polarization level is enhanced if the clumpiness of the interstellar medium, and the dichroic extinction by vertical magnetic fields in the outer regions of the dust lane are included in the radiative transfer model. The predicted degree of polarization outside the dust lane was found to be consistent with that (ranging from 1% to 4%) observed in NGC 891.
Accepted for publication in ApJ, 1 table, 4 figures
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Cited by in corpus (7)
- HAWC+ Far-Infrared Observations of the Magnetic Field Geometry in M51 and NGC 891
- Ly-alpha Radiative Transfer: A Stokes Vector Approach to Ly-alpha Polarization
- The distribution of dust in edge-on galaxies: I. The global structure
- Optical depth in polarised Monte Carlo radiative transfer
- Seeking Edge-on Galaxies with Substantial Extraplanar Dust Using a Radiative Transfer Model: Determination of the Model Parameter Uncertainties for EON_10.477_41.954 (FGC 79)
- Exploring the Magnetic Field Geometry in NGC 891 with SOFIA/HAWC+
- Paradigmatic examples for testing models of optical light polarization by spheroidal dust