Explaining the Observed Polarization from Brown Dwarfs by Single Dust Scattering
arXiv:astro-ph/0301516 · doi:10.1086/374305
Abstract
Recent observation of linear optical polarization from brown dwarfs confirms the dust hypothesis in the atmospheres of brown dwarfs with effective temperature higher than 1400 K. The observed polarization could arise due to dust scattering in the rotation induced oblate photosphere or due to the scattering by non-spherical grains in the spherical atmosphere or by the anisotropic distribution of dust clouds. Assuming single scattering by spherical grains in a slightly oblate photosphere consistent with the projected rotational velocity, the observed optical linear polarization is modeled by taking grains of different sizes located at different pressure height and of different number density. Minimum possible oblateness of the object due to rotation is considered in order to constrain the grain size. It is shown that the observed polarization from the L-dwarfs 2MASSW J0036+1821 and DENIS-P J0255-4700 can well be explained by several sets of dust parameters and with the minimum possible oblateness. Models for the observed polarization constrain the maximum size of grains. It is emphasized that future observation of polarization at the blue region will further constrain the grain size.
11 pages (Latex AAS v4.0) including 1 postscript figure, Accepted for publication by the Astrophysical Journal Letters
References in corpus (1)
Cited by in corpus (16)
- Optical Linear Polarization of Late M- and L-Type Dwarfs
- Cloudy Atmosphere of the Extra-solar Planet HD189733b : A Possible Explanation of the Detected B-band Polarization
- Polarization of Starlight by Unresolved and Oblate Extra-solar Planet in Elliptical Orbit
- Simultaneous optical and near-infrared linear spectropolarimetry of the earthshine
- Multiple Scattering Polarization of Substellar-mass Objects : T-dwarfs
- Linear polarization of rapidly rotating ultracool dwarfs
- Polarisation of very-low-mass stars and brown dwarfs
- Optical linear polarization in ultra cool dwarfs: A tool to probe dust in the ultra cool dwarf atmospheres
- Optical and near-infrared linear polarization of low and intermediate-gravity ultra-cool dwarfs
- Polarization of L Dwarfs by Dust Scattering
- Observation of R-Band Variability of L Dwarfs
- Polarization of Trappist-1 by the Transit of its Planets
- Polarimetric Detection of Exoplanets Transiting T- and L- Brown Dwarfs
- Testing the existence of optical linear polarization in young brown dwarfs
- Time-resolved Optical Polarization Monitoring of the Most Variable Brown Dwarf
- Evolution of spheroidal dust in electrically active sub-stellar atmospheres