Large Interferometer For Exoplanets (LIFE): II. Signal simulation, signal extraction and fundamental exoplanet parameters from single epoch observations
arXiv:2203.00471 · doi:10.1051/0004-6361/202141958
Abstract
The Large Interferometer For Exoplanets (LIFE) initiative is developing the science and a technology roadmap for an ambitious space mission featuring a space-based mid-infrared (MIR) nulling interferometer in order to detect the thermal emission of hundreds of exoplanets and characterize their atmospheres. In order to quantify the science potential of such a mission, in particular in the context of technical trade-offs, an instrument simulator is required. In addition, signal extraction algorithms are needed to verify that exoplanet properties (e.g., angular separation, spectral flux) contained in simulated exoplanet datasets can be accurately retrieved. We present LIFEsim, a software tool developed for simulating observations of exoplanetary systems with an MIR space-based nulling interferometer. It includes astrophysical noise sources (i.e., stellar leakage and thermal emission from local zodiacal and exo-zodiacal dust) and offers the flexibility to include instrumental noise terms in the future. LIFEsim provides an accessible way for predicting the expected SNR of future observations as a function of various key instrument and target parameters. The SNRs of the extracted spectra are photon-noise dominated, as expected from our current simulations. From single epoch observations in our mock survey of small () planets orbiting within the habitable zones of their stars, we find that typical uncertainties in the estimated effective temperature of the exoplanets are 10%, for the exoplanet radius 20%, and for the separation from the host star 2%. SNR values obtained in the signal extraction process deviate less than 10% from purely photon-counting statistics based SNRs. (abridged)
Accepted for publication in A&A; 15 pages (main text incl. 13 figures and 1 table) + appendix; comments are welcome
References in corpus (8)
- The NumPy array: a structure for efficient numerical computation
- The Gaia mission
- The Habitable Exoplanet Observatory (HabEx) Mission Concept Study Final Report
- The LUVOIR Mission Concept Study Final Report
- Nulling interferometry: impact of exozodiacal clouds on the performance of future life-finding space missions
- The quantum efficiency and diffractive image artifacts of Si:As IBC mid-IR detector arrays at 5 10 m: Implications for the JWST/MIRI detectors
- Exo-zodi modelling for the Large Binocular Telescope Interferometer
- Characterization of a 15 Cutoff HgCdTe Detector Array for Astronomy
Cited by in corpus (30)
- Large Interferometer For Exoplanets (LIFE): V. Diagnostic potential of a mid-infrared space-interferometer for studying Earth analogs
- Super-Earths and Earth-like Exoplanets
- Exploring and Validating Exoplanet Atmospheric Retrievals with Solar System Analog Observations
- Doppler Constraints on Planetary Companions to Nearby Sun-like Stars: An Archival Radial Velocity Survey of Southern Targets for Proposed NASA Direct Imaging Missions
- Large Interferometer For Exoplanets (LIFE): VI. Detecting rocky exoplanets in the habitable zones of Sun-like stars
- Asgard/NOTT: L-band nulling interferometry at the VLTI I. Simulating the expected high-contrast performance
- Bioverse: The Habitable Zone Inner Edge Discontinuity as an Imprint of Runaway Greenhouse Climates on Exoplanet Demographics
- Large Interferometer For Exoplanets (LIFE): VIII. Where is the phosphine? Observing exoplanetary PH3 with a space based MIR nulling interferometer
- Large Interferometer For Exoplanets (LIFE): IX. Assessing the Impact of Clouds on Atmospheric Retrievals at Mid-Infrared Wavelengths with a Venus-Twin Exoplanet
- Large Interferometer For Exoplanets (LIFE): XIII. The Value of Combining Thermal Emission and Reflected Light for the Characterization of Earth Twins
- Large Interferometer For Exoplanets (LIFE). X. Detectability of currently known exoplanets and synergies with future IR/O/UV reflected-starlight imaging missions
- Eta-Earth Revisited II: Deriving a Maximum Number of Earth-like Habitats in the Galactic Disk
- Large Interferometer For Exoplanets (LIFE): VII. Practical implementation of a five-telescope kernel-nulling beam combiner with a discussion on instrumental uncertainties and redundancy benefits
- Earth as an Exoplanet. III. Using Empirical Thermal Emission Spectra as an Input for Atmospheric Retrieval of an Earth-twin Exoplanet
- Parameterizing pressure-temperature profiles of exoplanet atmospheres with neural networks
- Pursuing Truth: Improving Retrievals on Mid-Infrared Exo-Earth Spectra with Physically Motivated Water Abundance Profiles and Cloud Models
- Imaging of exocomets with infrared interferometry
- 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
- Large Interferometer For Exoplanets (LIFE). XIV. Finding terrestrial protoplanets in the galactic neighborhood
- What if we find nothing? Bayesian analysis of the statistical information of null results in future exoplanet habitability and biosignature surveys
- L 363-38 b: a planet newly discovered with ESPRESSO orbiting a nearby M dwarf star
- Artificial Greenhouse Gases as Exoplanet Technosignatures
- Database of Candidate Targets for the LIFE Mission
- Projections of Earth's Technosphere: Strategies for Observing Technosignatures on Terrestrial Exoplanets
- Consequences of Non-Gaussian Instrumental Noise in Perturbed Nulling Interferometers
- Robust Data Interpretation for Perturbed Nulling Interferometers via Proper Handling of Correlated Errors
- Photobombing for the Large Interferometer For Exoplanets (LIFE). A new criterion for target confusion and application to a MIR rotating nulling interferometer
- The influence of stellar activity on detecting Earth-like planets via nulling interferometry
- Resonant structures in exozodiacal clouds created by exo-Earths in the habitable zone of late-type stars
- A preliminary exploration of the effects of baseline length for the LIFE space mission