An empirical infrared transit spectrum of Earth: opacity windows and biosignatures
arXiv:1908.10873 · doi:10.1093/mnras/stz2047
Abstract
The Atmospheric Chemistry Experiment's Fourier Transform Spectrometer on the SCISAT satellite has been measuring infrared transmission spectra of Earth during Solar occultations since 2004. We use these data to build an infrared transit spectrum of Earth. Regions of low atmospheric opacity, known as windows, are of particular interest, as they permit observations of the planet's lower atmosphere. Even in the absence of clouds or refraction, imperfect transmittance leads to a minimum effective thickness of km in the 10--12m opacity window at a spectral resolution of . Nonetheless, at , the maximum transmittance at the surface is around 70%. In principle, one can probe the troposphere of an Earth-like planet via high-dispersion transit spectroscopy in the mid-infrared; in practice aerosols and/or refraction likely make this impossible. We simulate the transit spectrum of an Earth-like planet in the TRAPPIST-1 system. We find that a long-term near-infrared campaign with JWST could readily detect CO, establishing the presence of an atmosphere. A mid-IR campaign or longer NIR campaign would be more challenging, but in principle could detect HO and the biosignatures O and CH.
9 pages, 7 figures; updated figures 3, 6, and 7 to relabel the CO feature at 2.7 m; water vapour is more difficult to detect than originally stated
References in corpus (29)
- The Transiting Exoplanet Survey Satellite
- The James Webb Space Telescope
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Sodium Absorption From the Exoplanetary Atmosphere of HD189733b Detected in the Optical Transmission Spectrum
- Atmospheric Retrieval for Super-Earths: Uniquely Constraining the Atmospheric Composition with Transmission Spectroscopy
- Rayleigh scattering in the transit spectrum of HD 189733b
- The nature of the TRAPPIST-1 exoplanets
- How to Characterize Habitable Worlds and Signs of Life
- Observing the Atmospheres of Known Temperate Earth-sized Planets with JWST
- Atmospheric reconnaissance of the habitable-zone Earth-sized planets orbiting TRAPPIST-1
- The Detectability and Characterization of the TRAPPIST-1 Exoplanet Atmospheres with JWST
- Detectability of biosignatures in anoxic atmospheres with the James Webb Space Telescope: A TRAPPIST-1e case study
- Detectability of atmospheric features of Earth-like planets in the habitable zone around M dwarfs
- Transit surveys for Earths in the habitable zones of white dwarfs
- Theoretical Transit Spectra for GJ 1214b and Other "Super-Earths"
- Early 2017 observations of TRAPPIST-1 with
- Strategies for Constraining the Atmospheres of Temperate Terrestrial Planets with JWST
- The Effects of Refraction on Transit Transmission Spectroscopy: Application to Earth-like Exoplanets
- Atmospheric Retrieval of Exoplanets
- An analytical formalism accounting for clouds and other "surfaces" for exoplanet transmission spectroscopy
- The MEarth project: searching for transiting habitable super-Earths around nearby M-dwarfs
- SPIRou: a nIR spectropolarimeter / high-precision velocimeter for the CFHT
- Transmission Spectroscopy with the ACE-FTS Infrared Spectral Atlas of Earth: A Model Validation and Feasibility Study
- Analytic Scattering and Refraction Models for Exoplanet Transit Spectra
- SPECULOOS exoplanet search and its prototype on TRAPPIST
- Finding Mountains with Molehills: The Detectability of Exotopography
- The hidden depths of planetary atmospheres
- Earth as an Exoplanet
Cited by in corpus (13)
- SPECULOOS -- Ultracool Dwarf Transit Survey: Target List and Strategy
- The White Dwarf Opportunity: Robust Detections of Molecules in Earth-like Exoplanet Atmospheres with the James Webb Space Telescope
- Characterizing Atmospheres of Transiting Earth-like Exoplanets Orbiting M Dwarfs with James Webb Space Telescope
- Exploring and Validating Exoplanet Atmospheric Retrievals with Solar System Analog Observations
- The Fundamental Connections Between the Solar System and Exoplanetary Science
- High-resolution Spectra and Biosignatures of Earth-like Planets Transiting White Dwarfs
- Finding Signs of Life on Earth-like Planets: High-resolution Transmission Spectra of Earth through time around FGKM stars
- Stratospheric Clouds Do Not Impede JWST Transit Spectroscopy for Exoplanets with Earth-Like Atmospheres
- Development of the SPECULOOS exoplanet search project
- Artificial Greenhouse Gases as Exoplanet Technosignatures
- Hot Earth or Young Venus? A nearby transiting rocky planet mystery
- An Informational-Entropic Approach to Exoplanet Characterization
- Climate uncertainties caused by unknown land distribution on habitable M-Earths