Semi-Empirical Modeling of the Atmospheres of the M Dwarf Exoplanet Hosts GJ 832 and GJ 581
arXiv:2012.11738 · doi:10.3847/1538-4357/abd62f
Abstract
Stellar ultraviolet (UV) radiation drives photochemistry, and extreme-ultraviolet (EUV) radiation drives mass loss in exoplanet atmospheres. However, the UV flux is partly unobservable due to interstellar absorption, particularly in the EUV range (100--912 A). It is therefore necessary to reconstruct the unobservable spectra in order to characterize the radiation environment of exoplanets. In the present work, we use a radiative transfer code SSRPM to build one-dimensional semi-empirical models of two M dwarf exoplanet hosts, GJ 832 and GJ 581, and synthesize their spectra. SSRPM is equipped with an extensive atomic and molecular database and full-NLTE capabilities. We use observations in the visible, ultraviolet, and X-ray ranges to constrain atmospheric structures of the modeled stars. The synthesized integrated EUV fluxes are found to be in good agreement with other reconstruction techniques, but the spectral energy distributions (SEDs) disagree significantly across the EUV range. More than 2/3 of the EUV flux is formed above K. We find that the far ultraviolet (FUV) continuum contributes 42--54 % of the entire FUV flux between 1450--1700 A. The comparison of stellar structures of GJ 832 and GJ 581 suggests that GJ 832 is a more magnetically active star, which is corroborated by other activity indicators.
20 pages, 16 figures; accepted for publication by ApJ
References in corpus (21)
- A grid of MARCS model atmospheres for late-type stars I. Methods and general properties
- Atmospheric Escape from Hot Jupiters
- Extreme Water Loss and Abiotic O Buildup On Planets Throughout the Habitable Zones of M Dwarfs
- The Structure of the Local Interstellar Medium V: Electron Densities
- Precision Stellar Characterization of FGKM Stars using an Empirical Spectral Library
- Magnetic activity in the HARPS M-dwarf sample. The rotation-activity relationship for very low-mass stars through R'HK
- Fluxes in Hαand Ca II H and K for a sample of Southern stars
- XUV-driven mass loss from extrasolar giant planets orbiting active stars
- Pale Orange Dots: The Impact of Organic Haze on the Habitability and Detectability of Earthlike Exoplanets
- The MUSCLES Treasury Survey IV: Scaling Relations for Ultraviolet, Ca II K, and Energetic Particle Fluxes from M Dwarfs
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: the TRAPPIST-1 System
- Metallicities of M Dwarf Planet Hosts from Spectral Synthesis
- Tracers of Chromospheric Structure I: Observations of Ca II K and H alpha in M Dwarfs
- The effect of Lyman radiation on mini-Neptune atmospheres around M stars: application to GJ 436b
- The Na I D resonance lines in main sequence late-type stars
- Predicting the Extreme Ultraviolet Radiation Environment of Exoplanets Around Low-Mass Stars: GJ 832, GJ 176, GJ 436
- Metallicity determination of M dwarfs - Expanded parameter range in metallicity and effective temperature
- Estimating the Ultraviolet Emission of M dwarfs with Exoplanets from Ca II and H
- A Coupled Analysis of Atmospheric Mass Loss and Tidal Evolution in XUV Irradiated Exoplanets: the TRAPPIST-1 Case Study
- Lyman- Observations of High Radial Velocity Low-Mass Stars Ross 1044 and Ross 825
- H Fluorescence in M Dwarf Systems: A Stellar Origin
Cited by in corpus (12)
- Reconstructing the Extreme Ultraviolet Emission of Cool Dwarfs Using Differential Emission Measure Polynomials
- Effects of UV stellar spectral uncertainty on the chemistry of terrestrial atmospheres
- Intrinsic Lyman alpha Profiles of High-Velocity G, K, and M Dwarfs
- The high-energy spectrum of the nearby planet-hosting inactive mid-M dwarf LHS 3844
- HAZMAT. VIII. A Spectroscopic Analysis of the Ultraviolet Evolution of K Stars: Additional Evidence for K Dwarf Rotational Stalling in the First Gigayear
- FUMES. II. Ly Reconstructions of Young, Active M Dwarfs
- Understanding Sun-as-a-star variability of solar Balmer lines
- Accurate Modeling of Lyman-alpha Profiles and their Impact on Photolysis of Terrestrial Planet Atmospheres
- Modeling the Mg I from the NUV to MIR. II. Testing stellar models
- Modeling the MgI from the NUV to MIR: I. The Solar Case
- Planetary system architectures with low-mass inner planets: Direct imaging exploration of mature systems beyond 1 au
- Far-ultraviolet flares and variability of the young M dwarf AU Mic: a non-detection of planet c in transit at Lyman-alpha