Multiple Scattering Polarization of Substellar-mass Objects : T-dwarfs
arXiv:0910.4240 · doi:10.1088/0004-637X/707/1/716
Abstract
While there have been multiple observational programs aimed at detecting linear polarization of optical radiation emitted by ultracool dwarfs, there has been comparatively less rigorous theoretical analysis of the problem. The general expectation has been that the atmospheres of those substellar-mass objects with condensate clouds would give rise to linear polarization due to scattering. Because of rotation-induced non-sphericity, there is expected to be incomplete cancellation of disk-integrated net polarization and thus a finite polarization. For cloudless objects, however, only molecular Rayleigh scattering will contribute to any net polarization and this limit has not been well studied. Hence in this paper we present a detailed multiple scattering analysis of the polarization expected from those T-dwarfs whose spectra show absence of condensates. For this, we develop and solve the full radiative transfer equations for linearly polarized radiation. Only atomic and molecular Rayleigh scattering are considered to be the source of polarization. We compute the local polarization at different angular directions in a plane-parallel atmospheres calculated for the range of effective temperatures of T dwarfs and then average over the whole surface of the object. The effects of gravity and limb darkening as well as rotation induced non-sphericity are included. It is found that the amount of polarization decreases with the increase in effective temperature. It is also found that significant polarization at any local point in the atmosphere arises only in the optical (B-band). However, the disk integrated polarization--even in the B-band--is negligible. Hence we conclude that, unlike the case for cloudy L dwarfs, polarization of cloudless T-dwarfs by atomic and molecular scattering may not be detectable.
31 pages (aastex) including 11 figures (eps), accepted for publication in the Astrophysical Journal
References in corpus (6)
- The Evolution of L and T Dwarfs in Color-Magnitude Diagrams
- Line and Mean Opacities for Ultracool Dwarfs and Extrasolar Planets
- The 0.8-14.5 micron Spectra of Mid-L to Mid-T Dwarfs: Diagnostics of Effective Temperature, Grain Sedimentation, Gas Transport, and Surface Gravity
- Chromospheric Activity, Rotation, and Rotational Braking in M and L Dwarfs
- Physical parameters of T dwarfs derived from high-resolution near-infrared spectra
- Polarisation of very-low-mass stars and brown dwarfs
Cited by in corpus (22)
- A Patchy Cloud Model for the L to T Dwarf Transition
- Probing the Physical Properties of Directly Imaged Gas Giant Exoplanets Through Polarization
- Atmospheric circulation of brown dwarfs and directly imaged exoplanets driven by cloud radiative feedback: global and equatorial dynamics
- A survey of the linear polarization of directly imaged exoplanets and brown dwarf companions with SPHERE-IRDIS. First polarimetric detections revealing disks around DH Tau B and GSC 6214-210 B
- Observed Polarization of Brown Dwarfs Suggests Low Surface Gravity
- Point Source Polarimetry with the Gemini Planet Imager: Sensitivity Characterization with T5.5 Dwarf Companion HD 19467 B
- Near-infrared Linear Polarization of Ultracool Dwarfs
- WIRC+Pol: a low-resolution near-infrared spectropolarimeter
- Linear polarization of rapidly rotating ultracool dwarfs
- The influence of non-isotropic scattering of thermal radiation on spectra of brown dwarfs and hot exoplanets
- Detecting Exomoons Around Self-luminous Giant Exoplanets Through Polarization
- Effects of Thermal Emission on the Transmission Spectra of Hot Jupiters
- Optical Transmission Spectra of Hot-Jupiters: Effects of Scattering
- Polarization of Trappist-1 by the Transit of its Planets
- Photo-polarimetric characteristics of brown dwarfs, Part I: uniform cloud decks
- Polarimetric Detection of Exoplanets Transiting T- and L- Brown Dwarfs
- Effect of multiple scattering on the Transmission spectra and the Polarization phase curves for Earth-like Exoplanets
- Generic Models for Disk-Resolved and Disk-Integrated Phase Dependent Linear Polarization of Light Reflected from Exoplanets
- Polarization of Rotationally Oblate Self-Luminous Exoplanets with Anisotropic Atmospheres
- Effects of thermal emission on Chandrasekhar's semi-infinite diffuse reflection problem
- Atmospheric heat redistribution effect on Emission spectra of Hot-Jupiters
- New models of reflection spectra for terrestrial exoplanets: Present and prebiotic Earth orbiting around stars of different spectral types