Observability of ultraviolet N I lines in the atmosphere of transiting Earth-like planets
arXiv:2011.05613 · doi:10.1002/asna.202013842
Abstract
Nitrogen is a biosignature gas that cannot be maintained in its Earth-like ratio with CO under abiotic conditions. It has also proven to be notoriously hard to detect at optical and infrared wavelengths. Fortunately, the ultraviolet region, which has only recently started being explored for terrestrial exoplanets, may provide new opportunities to characterise exoplanetary atmospheric nitrogen. In this work, the future prospects for detecting atomic nitrogen absorption lines in the transmission spectrum of an Earth-like planet orbiting in the habitable zone of a Sun-like star with LUVOIR are explored. Using the non-local thermodynamic equilibrium spectral synthesis code Cloudy, we produce a far-ultraviolet atomic transmission spectrum for an Earth-Sun-like system, and identify several nitrogen features, including both N I and N II lines. We calculate the number of transits required for 1 and 3 detections of the planetary N{\sc i} triplet signal with the G120M grating of the LUMOS spectrograph designed for LUVOIR, as a function of distance to the system and stellar ultraviolet emission. The minimum number of transit observations necessary for 1 and 3 detections of atomic N are 188 and 1685, respectively, for a system located at a distance of one pc with 100 times the Solar ultraviolet flux. Given that the orbital period of an Earth-Sun system is one year, it is not feasible to detect atomic N in the transmission spectrum for these systems. Future studies in this direction should therefore focus on Earth-like planets orbiting in the habitable zone of M dwarfs.
Accepted for publication in Astronomische Nachrichten
References in corpus (13)
- The NumPy array: a structure for efficient numerical computation
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- One or more bound planets per Milky Way star from microlensing observations
- The Pale Orange Dot: The Spectrum and Habitability of Hazy Archean Earth
- Spectropolarimetric signatures of Earth-like extrasolar planets
- Occurrence and core-envelope structure of 1--4x Earth-size planets around Sun-like stars
- TESS delivers its first Earth-sized planet and a warm sub-Neptune
- High resolution transmission spectrum of the Earth's atmosphere -- Seeing Earth as an exoplanet using a lunar eclipse
- Lessons from early Earth: UV surface radiation should not limit the habitability of active M star systems
- Non-Local Thermodynamic Equilibrium Transmission Spectrum Modelling of HD209458b
- The Hubble Space Telescope's near-UV and optical transmission spectrum of Earth as an exoplanet
Cited by in corpus (3)
- Non-local thermodynamic equilibrium effects determine the upper atmospheric temperature structure of the ultra-hot Jupiter KELT-9b
- The Atmospheres of Rocky Exoplanets II. Influence of surface composition on the diversity of cloud condensates
- Searching for NLTE effects in the high-resolution transmission spectrum of WASP-121 b with Cloudy for Exoplanets