Large Interferometer For Exoplanets (LIFE): VI. Detecting rocky exoplanets in the habitable zones of Sun-like stars
arXiv:2210.01782 · doi:10.1051/0004-6361/202243846
Abstract
While previous studies have shown a strong preference for a future mid-infrared nulling interferometer space mission to detect planets within the HZ around M dwarfs, we here focus on a more conservative approach toward the concept of habitability and present yield estimates for two stellar samples consisting of nearby (d<20 pc) Sun-like stars (4800-6300 K) and nearby FGK-type stars (3940-7220 K) accessible to such a mission. Our yield estimates are based on recently derived occurrence rates of rocky planets from the Kepler mission and our LIFE exoplanet observation simulation tool LIFEsim, which includes all main astrophysical noise sources, but no instrumental noise sources as yet. Depending on a pessimistic or optimistic extrapolation of the Kepler results, we find that during a 2.5-year search phase, LIFE could detect between ~10-16 (average) or ~5-34 (including 1 uncertainties) rocky planets (0.5-1.5 R${}_\rm{Earth}$) within the optimistic HZ of Sun-like stars and between ~4-6 (average) or ~1-13 (including 1 uncertainties) exo-Earth candidates (EECs) assuming four collector spacecraft equipped with 2 m mirrors and a conservative instrument throughput of 5%. With D=3.5 m or 1 m mirrors, the yield changes strongly, following approximately . With the larger sample of FGK-type stars, the yield increases to ~16-22 (average) rocky planets within the optimistic HZ and ~5-8 (average) EECs. Furthermore, we find that in addition to the mirror diameter, the yield depends strongly on the total throughput, but only weakly on the exozodiacal dust level and the accessible wavelength range of the mission. When the focus lies entirely on Sun-like stars, larger mirrors (~3 m with 5% total throughput) or a better total throughput (~20% with 2 m mirrors) are required to detect a statistically relevant sample of ~30 rocky planets within the optimistic HZ.
19 pages, 13 figures, accepted for publication in A&A
References in corpus (13)
- Seven temperate terrestrial planets around the nearby ultracool dwarf star TRAPPIST-1
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Combining high-dispersion spectroscopy (HDS) with high contrast imaging (HCI): Probing rocky planets around our nearest neighbors
- The Detectability and Characterization of the TRAPPIST-1 Exoplanet Atmospheres with JWST
- Maximizing the ExoEarth Candidate Yield from a Future Direct Imaging Mission
- The Occurrence of Rocky Habitable Zone Planets Around Solar-Like Stars from Kepler Data
- Instrumentation for the detection and characterization of exoplanets
- DARWIN - A Mission to Detect, and Search for Life on, Extrasolar Planets
- Direct detection of exoplanets in the 3 -- 10 micron range with E-ELT/METIS
- Revealing Asymmetries in the HD 181327 Debris Disk: A Recent Massive Collision or ISM Warping
- Nulling interferometry: impact of exozodiacal clouds on the performance of future life-finding space missions
- Simulating the Exoplanet Yield of a Space-based MIR Interferometer Based on Kepler Statistics
- Exoplanets with ELT-METIS I: Estimating the direct imaging exoplanet yield around stars within 6.5 parsecs
Cited by in corpus (10)
- Bioverse: A Comprehensive Assessment of the Capabilities of Extremely Large Telescopes to Probe Earth-like O Levels in Nearby Transiting Habitable Zone Exoplanets
- JWST COMPASS: NIRSpec/G395H Transmission Observations of the Super-Earth TOI-776b
- Large Interferometer For Exoplanets (LIFE). X. Detectability of currently known exoplanets and synergies with future IR/O/UV reflected-starlight imaging missions
- Interior Controls on the Habitability of Rocky Planets
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Fully fluorinated non-carbon compounds NF3 and SF6 as ideal technosignature gases
- KOBE-1: The first planetary system from the KOBE survey. Two planets likely residing in the sub-Neptune mass regime around a late K-dwarf
- What if we find nothing? Bayesian analysis of the statistical information of null results in future exoplanet habitability and biosignature surveys
- Consequences of Non-Gaussian Instrumental Noise in Perturbed Nulling Interferometers
- Robust Data Interpretation for Perturbed Nulling Interferometers via Proper Handling of Correlated Errors