Polarization simulations of stellar wind bow shock nebulae. II. The case of dust scattering
arXiv:2011.04314 · doi:10.1093/mnras/staa3508
Abstract
We study the polarization produced by scattering from dust in a bow shock-shaped region of enhanced density surrounding a stellar source, using the Monte Carlo radiative transfer code SLIP. Bow shocks are structures formed by the interaction of the winds of fast-moving stars with the interstellar medium. Our previous study focused on the polarization produced in these structures by electron scattering; we showed that polarization is highly dependent on inclination angle and that multiple scattering changes the shape and degree of polarization. In contrast to electron scattering, dust scattering is wavelength-dependent, which changes the polarization behaviour. Here we explore different dust particle sizes and compositions and generate polarized spectral energy distributions for each case. We find that the polarization SED behaviour depends on the dust composition and grain size. Including dust emission leads to polarization changes with temperature at higher optical depth in ways that are sensitive to the orientation of the bow shock. In various scenarios and under certain assumptions, our simulations can constrain the optical depth and dust properties of resolved and unresolved bow shock-shaped scattering regions.Constraints on optical depth can provide estimates of local ISM density for observed bow shocks. We also study the impact of dust grains filling the region between the star and bow shock. We see that as the density of dust between the star and bow shock increases, the resulting polarization is suppressed for all the optical depth regimes.
21 pages, accepted for publication in MNRAS
References in corpus (12)
- Pre-Supernova Evolution of Massive Single and Binary Stars
- Red supergiants as potential Type IIn supernova progenitors: Spatially resolved 4.6 micron CO emission around VY CMa and Betelgeuse
- Computing the dust distribution in the bowshock of a fast moving, evolved star
- A comprehensive search for stellar bowshock nebulae in the Milky Way: a catalog of 709 mid-infrared selected candidates
- Models of the circumstellar medium of evolving, massive runaway stars moving through the Galactic plane
- Bow shock nebulae of hot massive stars in a magnetized medium
- Bow shocks, bow waves, and dust waves. I. Strong coupling limit
- Polarized near-infrared light of the Dusty S-cluster Object (DSO/G2) at the Galactic Center
- Properties of bow-shock sources at the Galactic center
- Bow shocks, bow waves, and dust waves. II. Beyond the rip point
- Evidence of a Mira-like tail and bow shock about the semi-regular variable V CVn from four decades of polarization measurements
- Using numerical models of bow shocks to investigate the circumstellar medium of massive stars
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