Impact of atmospheric refraction: How deeply can we probe exo-Earth's atmospheres during primary eclipse observations?
arXiv:1312.6625 · doi:10.1088/0004-637X/791/1/7
Abstract
Most models used to predict or fit exoplanet transmission spectra do not include all the effects of atmospheric refraction. Namely, the angular size of the star with respect to the planet can limit the lowest altitude, or highest density and pressure, probed during primary eclipses, as no rays passing below this critical altitude can reach the observer. We discuss this geometrical effect of refraction for all exoplanets, and tabulate the critical altitude, density and pressure for an exoplanet identical to Earth with a 1 bar N2/O2 atmosphere, as a function of both the incident stellar flux (Venus, Earth, and Mars-like) at the top of the atmosphere, and the spectral type (O5-M9) of the host star. We show that such a habitable exo-Earth can be probed to a surface pressure of 1 bar only around the coolest stars. We present 0.4-5.0 micron model transmission spectra of Earth's atmosphere viewed as a transiting exoplanet, and show how atmospheric refraction modifies the transmission spectrum depending on the spectral type of the host star. We demonstrate that refraction is another phenomenon that can potentially explain flat transmission spectra over some spectral regions.
16 pages, 11 Figures, 2 Tables, Accepted for publication in ApJ
References in corpus (3)
- Atmospheric Retrieval for Super-Earths: Uniquely Constraining the Atmospheric Composition with Transmission Spectroscopy
- Feasibility Studies for the Detection of in an Earth-like Exoplanet
- The effect of stellar limb darkening values on the accuracy of the planet radii derived from photometric transit observations
Cited by in corpus (68)
- Exoplanet Biosignatures: A Review of Remotely Detectable Signs of Life
- Exoplanet Biosignatures: Understanding Oxygen as a Biosignature in the Context of Its Environment
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- How to Characterize Habitable Worlds and Signs of Life
- The Detectability and Characterization of the TRAPPIST-1 Exoplanet Atmospheres with JWST
- Exoplanet Biosignatures: Observational Prospects
- Observations of Exoplanet Atmospheres
- The Habitability of Proxima Centauri b: II: Environmental States and Observational Discriminants
- Resolving Orbital and Climate Keys of Earth and Extraterrestrial Environments with Dynamics 1.0: A General Circulation Model for Simulating the Climates of Rocky Planets
- Detectability of atmospheric features of Earth-like planets in the habitable zone around M dwarfs
- The High-Resolution Transmission Spectrum of HD 189733b Interpreted with Atmospheric Doppler Shifts from Three-Dimensional General Circulation Models
- Titan solar occultation observations reveal transit spectra of a hazy world
- Detecting and Constraining N Abundances in Planetary Atmospheres Using Collisional Pairs
- Deciphering thermal phase curves of dry, tidally locked terrestrial planets
- Detecting Ocean Glint on Exoplanets Using Multiphase Mapping
- A Review of Exoplanetary Biosignatures
- TRIDENT: A Rapid 3D Radiative Transfer Model for Exoplanet Transmission Spectra
- NIR-Driven Moist Upper Atmospheres of Synchronously Rotating Temperate Terrestrial Exoplanets
- Transient Sulfate Aerosols as a Signature of Exoplanet Volcanism
- A Theory of Exoplanet Transits with Light Scattering
- Telling twins apart: Exo-Earths and Venuses with transit spectroscopy
- The White Dwarf Opportunity: Robust Detections of Molecules in Earth-like Exoplanet Atmospheres with the James Webb Space Telescope
- An analytical formalism accounting for clouds and other "surfaces" for exoplanet transmission spectroscopy
- Distinguishing between wet and dry atmospheres of TRAPPIST-1 e and f
- Observing Isotopologue Bands in Terrestrial Exoplanet Atmospheres with the James Webb Space Telescope---Implications for Identifying Past Atmospheric and Ocean Loss
- Optimizing Ground-based Observations of O2 in Earth Analogs
- Exploring and Validating Exoplanet Atmospheric Retrievals with Solar System Analog Observations
- Discriminating Between Cloudy, Hazy and Clearsky Exoplanets Using Refraction
- Differentiating Modern and Prebiotic Earth Scenarios for TRAPPIST-1e: High-resolution Transmission Spectra and Predictions for JWST
- Using the Rossiter-McLaughlin effect to observe the transmission spectrum of Earth's atmosphere
- Is ozone a reliable proxy for molecular oxygen? I. The O2-O3 relationship for Earth-like atmospheres
- Testing the Detectability of Extraterrestrial with the ELTs using Real Data with Real Noise
- The Transit Transmission Spectrum of a Cold Gas Giant Planet
- Assessment of Ammonia as a Biosignature Gas in Exoplanet Atmospheres
- Detecting the proposed CH4-CO2 biosignature pair with the James Webb Space Telescope: TRAPPIST-1e and the effect of cloud/haze
- Analytic Scattering and Refraction Models for Exoplanet Transit Spectra
- A mirage of the cosmic shoreline: Venus-like clouds as a statistical false positive for exoplanet atmospheric erosion
- An empirical infrared transit spectrum of Earth: opacity windows and biosignatures
- Refraction in planetary atmospheres: improved analytical expressions and comparison with a new ray-tracing algorithm
- Effects of refraction on transmission spectra of gas giants: decrease of the Rayleigh scattering slope and breaking of retrieval degeneracies
- High-resolution Spectra and Biosignatures of Earth-like Planets Transiting White Dwarfs
- How surfaces shape the climate of habitable exoplanets
- Stellar Activity Effects on Moist Habitable Terrestrial Atmospheres Around M dwarfs
- Constraining Exoplanet Metallicities and Aerosols with ARIEL: An Independent Study by the Contribution to ARIEL Spectroscopy of Exoplanets (CASE) Team
- High-Resolution Transmission Spectra of Earth through Geological Time
- Colors of an Earth-like exoplanet -- Temporal flux and polarization signals of the Earth
- In Search of the Edge: A Bayesian Exploration of the Detectability of Red Edges in Exoplanet Reflection Spectra
- Lowest Earth's atmosphere layers probed during a lunar eclipse
- Finding Signs of Life on Earth-like Planets: High-resolution Transmission Spectra of Earth through time around FGKM stars
- The hidden depths of planetary atmospheres
- Out-of-Transit Refracted Light in the Atmospheres of Transiting and Non-Transiting Exoplanets
- H-dominated Atmosphere as an Indicator of Second-generation Rocky White Dwarf Exoplanets
- Higher Water Loss on Earth-like Exoplanets in Eccentric Orbits
- Finding Signs of Life in Transit: High-resolution Transmission Spectra of Earth-like Planets around FGKM Host Stars
- A Geologically Robust Procedure For Observing Rocky Exoplanets to Ensure that Detection of Atmospheric Oxygen is an Earth-Like Biosignature
- Polarized Signatures of a Habitable World: Comparing Models of an Exoplanet Earth with Visible and Near-infrared Earthshine Spectra
- Stratospheric Clouds Do Not Impede JWST Transit Spectroscopy for Exoplanets with Earth-Like Atmospheres
- High-resolution spectroscopy and spectropolarimetry of the total lunar eclipse January 2019
- Refraction in exoplanet atmospheres: Photometric signatures, implications for transmission spectroscopy, and search in Kepler data
- The Habitability of GJ 357 d : Possible Climates and Observability
- Quantifying the Impact of Spectral Coverage on the Retrieval of Molecular Abundances from Exoplanet Transmission Spectra
- Influence of Biomass Emissions upon Habitability, Biosignatures and Detectability in Earth-like Atmospheres
- The Hubble Space Telescope's near-UV and optical transmission spectrum of Earth as an exoplanet
- Fundamental Challenges to Remote Sensing of Exo-Earths
- The Oxyometer: A Novel Instrument Concept for Characterizing Exoplanet Atmospheres
- From Global Climate Models (GCMs) to Exoplanet Spectra with the Global Emission Spectra (GlobES)
- The Color of Habitability
- Extension of ATLAST/LUVOIR's Capabilities to 5 Microns, or Beyond