Polarization of Trappist-1 by the Transit of its Planets
arXiv:1805.06722 · doi:10.3847/1538-4357/aac6da
Abstract
As the first and till date the only one multiple planet hosting dwarf star that is sufficiently cool to form condensate cloud in it atmosphere, Trappist-1 provides unique opportunity to test the efficiency of image polarimetry as a tool to detect and characterize exoplanets around L- and late M-dwarfs and Exomoons around directly imaged self-luminous giant exoplanets. Although scattering of light by atmospheric dust particles should produce significant amount of linear polarization in the far optical and near infra-red, the disk-averaged net detectable polarization of the star must be zero owing to spherical symmetry. However, the transit of its planets would give rise to significant asymmetry and produce phase-dependent polarization with the peak polarization occurring at the inner contact points of planetary transit ingress and egress epoch. Adopting the known stellar and planetary physical parameters and employing a self-consistent cloudy atmosphere model of M8 dwarf star, the transit polarization profiles and the expected amount of polarization of Trappist-1 during the transit phase of each individual planets as well as that during simultaneous transit of two planets are presented in this paper. It is emphasized that the amount of polarization expected is within the detection limit of a few existing facilities. If polarization is detected confirming the prediction, time resolved image polarimetry will emerge out as a potential tool to detect and characterize small planets around cloudy ultra-cool dwarfs.
LaTeX (AASTex6.0), 11 pages including 5 figures and 1 table. Accepted for publication in The Astrophysical Journal
References in corpus (11)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- Temperate Earth-sized planets transiting a nearby ultracool dwarf star
- 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
- A seven-planet resonant chain in TRAPPIST-1
- A combined transmission spectrum of the Earth-sized exoplanets TRAPPIST-1 b and c
- Habitable worlds with JWST: transit spectroscopy of the TRAPPIST-1 system?
- Stellar parameters for TRAPPIST-1
- Toward the Detection of Exoplanet Transits with Polarimetry
- Detecting Exomoons Around Self-luminous Giant Exoplanets Through Polarization
- Polarimetric Detection of Exoplanets Transiting T- and L- Brown Dwarfs
Cited by in corpus (6)
- Optical Transmission Spectra of Hot-Jupiters: Effects of Scattering
- Time-resolved image polarimetry of Trappist-1 during planetary transits
- Generic Models for Disk-Resolved and Disk-Integrated Phase Dependent Linear Polarization of Light Reflected from Exoplanets
- Effect of multiple scattering on the Transmission spectra and the Polarization phase curves for Earth-like Exoplanets
- Evolution of spheroidal dust in electrically active sub-stellar atmospheres
- New models of reflection spectra for terrestrial exoplanets: Present and prebiotic Earth orbiting around stars of different spectral types