Atmospheric Beacons of Life from Exoplanets Around G and K Stars
arXiv:1801.05341 · doi:10.1038/s41598-017-14192-4
Abstract
The current explosion in detection and characterization of thousands of extrasolar planets from the Kepler mission, the Hubble Space Telescope, and large ground-based telescopes opens a new era in searches for Earth-analog exoplanets with conditions suitable for sustaining life. As more Earth-sized exoplanets are detected in the near future, we will soon have an opportunity to identify habitable worlds. Which atmospheric biosignature gases from habitable planets can be detected with our current capabilities? The detection of the common biosignatures from nitrogen-oxygen rich terrestrial-type exoplanets including molecular oxygen (O2), ozone (O3), water vapor (H2O), carbon dioxide (CO2), nitrous oxide (N2O), and methane (CH4) requires days of integration time with largest space telescopes, and thus are very challenging for current instruments. In this paper we propose to use the powerful emission from rotational-vibrational bands of nitric oxide, hydroxyl and molecular oxygen as signatures of nitrogen, oxygen, and water rich atmospheres of terrestrial type exoplanets highlighted by the magnetic activity from young G and K main-sequence stars. The signals from these fundamental chemical prerequisites of life we call atmospheric beacons of life create a unique opportunity to perform direct imaging observations of Earth-sized exoplanets with high signal-to-noise and low spectral resolution with the upcoming NASA missions.
9 pages, published online in Nature Scientific Reports, November 2, 2017
References in corpus (6)
- Extreme Water Loss and Abiotic O Buildup On Planets Throughout the Habitable Zones of M Dwarfs
- X-Ray Spectroscopy of Stars
- Combining high-dispersion spectroscopy (HDS) with high contrast imaging (HCI): Probing rocky planets around our nearest neighbors
- Abiotic Ozone and Oxygen in Atmospheres Similar to Prebiotic Earth
- Magnetospheric Structure and Atmospheric Joule Heating of Habitable Planets Orbiting M-dwarf Stars
- Nucleosynthesis in a Primordial Supernova: Carbon and Oxygen Abundances in SMSS J031300.36-670839.31
Cited by in corpus (14)
- Persistence of Flare-Driven Atmospheric Chemistry on Rocky Habitable Zone Worlds
- Hydrogen Cyanide in Nitrogen-Rich Atmospheres of Rocky Exoplanets
- The Role of N2 as a Geo-Biosignature for the Detection and Characterization of Earth-like Habitats
- Sun-as-a-star Spectral Irradiance Observations of Transiting Active Regions
- Life as the Only Reason for the Existence of N2-O2-Dominated Atmospheres
- Proxima Centauri b: A Strong Case for including Cosmic-Ray-induced Chemistry in Atmospheric Biosignature Studies
- Did Mars possess a dense atmosphere during the first ~400 million years?
- Universal Scaling Laws for Solar and Stellar Atmospheric Heating
- Effect of Star Rotation Rates on the Characteristics of Energetic Particle Events
- Terrestrial Effects of Nearby Supernovae: Updated Modeling
- Disruption of a Planetary Nitrogen Cycle as Evidence of Extraterrestrial Agriculture
- Biosignature Surveys to Exoplanet Yields and Beyond
- Dual-Backend Multibeam Position Switching Targeted SETI Observations toward Nearby Active Planet-Hosting Systems with FAST
- Evaluating Habitability and Biosignature Detection on TOI-700 d: The Role of UV Environment and Atmospheric Pressure