Molecular Detectability in Exoplanetary Emission Spectra
arXiv:1308.4986 · doi:10.1016/j.icarus.2013.08.022
Abstract
Of the many recently discovered worlds orbiting distant stars, very little is yet known of their chemical composition. With the arrival of new transit spectroscopy and direct imaging facilities, the question of molecular detectability as a function of signal-to-noise (SNR), spectral resolving power and type of planets has become critical. In this paper, we study the detectability of key molecules in the atmospheres of a range of planet types, and report on the minimum detectable abundances at fixed spectral resolving power and SNR. The planet types considered - hot Jupiters, hot super-Earths, warm Neptunes, temperate Jupiters and temperate super-Earths - cover most of the exoplanets characterisable today or in the near future. We focus on key atmospheric molecules, such as CH4, CO, CO2, NH3, H2O, C2H2, C2H6, HCN, H2S and PH3. We use two methods to assess the detectability of these molecules: a simple measurement of the deviation of the signal from the continuum, and an estimate of the level of confidence of a detection through the use of the likelihood ratio test over the whole spectrum (from 1 to 16). We find that for most planetary cases, SNR=5 at resolution R=300 () and R=30 () is enough to detect the very strongest spectral features for the most abundant molecules, whereas an SNR comprised between 10 and 20 can reveal most molecules with abundances 10^-6 or lower, often at multiple wavelengths. We test the robustness of our results by exploring sensitivity to parameters such as vertical thermal profile, mean molecular weight of the atmosphere and relative water abundances. We find that our main conclusions remain valid except for the most extreme cases. Our analysis shows that the detectability of key molecules in the atmospheres of a variety of exoplanet cases is within realistic reach, even with low SNR and spectral resolving power.
ICARUS Accepted
References in corpus (28)
- The false positive rate of Kepler and the occurrence of planets
- Planetary Candidates Observed by Kepler, III: Analysis of the First 16 Months of Data
- Characteristics of planetary candidates observed by Kepler, II: Analysis of the first four months of data
- Core-collapse supernova equations of state based on neutron star observations
- Infrared Transmission Spectroscopy of the Exoplanets HD209458b and XO-1b Using the Wide Field Camera-3 on the Hubble Space Telescope
- Disequilibrium Carbon, Oxygen, and Nitrogen Chemistry in the Atmospheres of HD 189733b and HD 209458b
- Sodium Absorption From the Exoplanetary Atmosphere of HD189733b Detected in the Optical Transmission Spectrum
- ExoMol: molecular line lists for exoplanet and other atmospheres
- Possible thermochemical disequilibrium in the atmosphere of the exoplanet GJ 436b
- Strong Water Absorption in the Dayside Emission Spectrum of the Planet HD 189733b
- Theoretical Spectra and Light Curves of Close-in Extrasolar Giant Planets and Comparison with Data
- A Super-Earth Transiting a Naked-Eye Star
- Ground-based detection of sodium in the transmission spectrum of exoplanet HD209458b
- Using Stellar Limb-Darkening to Refine the Properties of HD 209458b
- A chemical model for the atmosphere of hot Jupiters
- Detection of carbon monoxide in the high-resolution day-side spectrum of the exoplanet HD 189733b
- Bulk Composition of GJ 1214b and other sub-Neptune exoplanets
- Optimal Estimation Retrievals of the Atmospheric Structure and Composition of HD 189733b from Secondary Eclipse Spectroscopy
- Transit Detection in the MEarth Survey of Nearby M Dwarfs: Bridging the Clean-First, Search-Later Divide
- Information Content of Exoplanetary Transit Spectra: An Initial Look
- A New 24 micron Phase Curve for upsilon Andromedae b
- Probing the extreme planetary atmosphere of WASP-12b
- Is Gliese 581d habitable? Some constraints from radiative-convective climate modeling
- Acoustic scale from the angular power spectra of SDSS-III DR8 photometric luminous galaxies
- EChO - Exoplanet Characterisation Observatory
- Blind extraction of an exoplanetary spectrum through Independent Component Analysis
- Transmission spectroscopy of exoplanet XO-2b observed with HST NICMOS
- SDSS Observations of Kuiper Belt Objects: Colors and Variability
Cited by in corpus (16)
- Phosphine as a Biosignature Gas in Exoplanet Atmospheres
- Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
- Atmospheric effects of stellar cosmic rays on Earth-like exoplanets orbiting M-dwarfs
- Carbon-rich planet formation in a solar composition disk
- The Influence of Host Star Spectral Type on Ultra-Hot Jupiter Atmospheres
- The atmospheric chemistry of the warm Neptune GJ 3470b: influence of metallicity and temperature on the CH4/CO ratio
- Assessment of Isoprene as a Possible Biosignature Gas in Exoplanets with Anoxic Atmospheres
- Ionisation in atmospheres of brown dwarfs and extrasolar planets VI: Properties of large-scale discharge events
- The EChO science case
- Repeatability of Spitzer/IRAC exoplanetary eclipses with Independent Component Analysis
- EChOSim: The Exoplanet Characterisation Observatory software simulator
- A spectroscopic thermometer: individual vibrational band spectroscopy with the example of OH in the atmosphere of WASP-33b
- Galactic planetary science
- Generation of an optimal target list for the Exoplanet Characterisation Observatory (EChO)
- A Large-scale Approach to Modelling Molecular Biosignatures: The Diatomics
- Multi-Wavelength High-Resolution Spectroscopy for Exoplanet Detection: Motivation, Instrumentation and First Results