Lower Limits on Aperture Size for an ExoEarth-Detecting Coronagraphic Mission
arXiv:1506.01723 · doi:10.1088/0004-637X/808/2/149
Abstract
The yield of Earth-like planets will likely be a primary science metric for future space-based missions that will drive telescope aperture size. Maximizing the exoEarth candidate yield is therefore critical to minimizing the required aperture. Here we describe a method for exoEarth candidate yield maximization that simultaneously optimizes, for the first time, the targets chosen for observation, the number of visits to each target, the delay time between visits, and the exposure time of every observation. This code calculates both the detection time and multi-wavelength spectral characterization time required for planets. We also refine the astrophysical assumptions used as inputs to these calculations, relying on published estimates of planetary occurrence rates as well as theoretical and observational constraints on terrestrial planet sizes and classical habitable zones. Given these astrophysical assumptions, optimistic telescope and instrument assumptions, and our new completeness code that produces the highest yields to date, we suggest lower limits on the aperture size required to detect and characterize a statistically-motivated sample of exoEarths.
Accepted for publication in ApJ; 38 pages, 16 Figures, 3 Tables
References in corpus (4)
- Exoplanet population inference and the abundance of Earth analogs from noisy, incomplete catalogs
- A Statistical Reconstruction of the Planet Population Around Kepler Solar-Type Stars
- Prospects for Detecting Oxygen, Water, and Chlorophyll on an Exo-Earth
- Apodized Pupil Lyot Coronagraphs for Arbitrary Apertures. IV. Reduced Inner Working Angle and Increased Robustness to Low-Order Aberrations
Cited by in corpus (59)
- Planetary Candidates Observed by Kepler. VIII. A Fully Automated Catalog With Measured Completeness and Reliability Based on Data Release 25
- Terrestrial Planet Occurrence Rates for the Kepler GK Dwarf Sample
- Impact of Space Weather on Climate and Habitability of Terrestrial Type Exoplanets
- Large Interferometer For Exoplanets (LIFE): I. Improved exoplanet detection yield estimates for a large mid-infrared space-interferometer mission
- The Occurrence of Rocky Habitable Zone Planets Around Solar-Like Stars from Kepler Data
- The HOSTS survey for exozodiacal dust: Observational results from the complete survey
- Exoplanet Classification and Yield Estimates for Direct Imaging Missions
- Characterizing Rocky and Gaseous Exoplanets with 2-meter Class Space-based Coronagraphs
- A more comprehensive habitable zone for finding life on other planets
- A Statistical Comparative Planetology Approach to the Hunt for Habitable Exoplanets and Life Beyond the Solar System
- Apodized pupil Lyot coronagraphs for arbitrary apertures. V. Hybrid Shaped Pupil designs for imaging Earth-like planets with future space observatories
- The HOSTS survey - Exozodiacal dust measurements for 30 stars
- From Cosmic Birth to Living Earths: The Future of UVOIR Space Astronomy
- The Habitable Exoplanet Observatory (HabEx) Mission Concept Study Interim Report
- Nulling Data Reduction and On-Sky Performance of the Large Binocular Telescope Interferometer
- A Limited Habitable Zone for Complex Life
- Early evolution of purple retinal pigments on Earth and implications for exoplanet biosignatures
- Vortex coronagraphs for the Habitable Exoplanet Imaging Mission (HabEx) concept: theoretical performance and telescope requirements
- Distinguishing between wet and dry atmospheres of TRAPPIST-1 e and f
- Simulating the Exoplanet Yield of a Space-based MIR Interferometer Based on Kepler Statistics
- The impact of stripped cores on the frequency of Earth-size planets in the habitable zone
- Atmospheric Beacons of Life from Exoplanets Around G and K Stars
- Detectors and cooling technology for direct spectroscopic biosignature characterization
- Large Interferometer For Exoplanets (LIFE): VI. Detecting rocky exoplanets in the habitable zones of Sun-like stars
- Theoretical Reflectance Spectra of Earth-Like Planets through Their Evolutions: Impact of Clouds on the Detectability of Oxygen, Water, and Methane with Future Direct Imaging Missions
- Finding the Needles in the Haystacks: High-Fidelity Models of the Modern and Archean Solar System for Simulating Exoplanet Observations
- Directly imaged exoplanets in reflected starlight. The importance of knowing the planet radius
- The Near Infrared Imager and Slitless Spectrograph for the James Webb Space Telescope -- IV. Aperture Masking Interferometry
- Efficient detection and characterization of exoplanets within the diffraction limit: nulling with a mode-selective photonic lantern
- Analytical tolerancing of segmented telescope co-phasing for exo-Earth high-contrast imaging
- The direct imaging search for Earth 2.0: Quantifying biases and planetary false positives
- Analytical formulation of the single-visit completeness joint probability density function
- Review of high-contrast imaging systems for current and future ground- and space-based telescopes I. Coronagraph design methods and optical performance metrics
- Climate Diversity in the Solar-Like Habitable Zone due to Varying Background Gas Pressure
- Laser Guide Star for Large Segmented-Aperture Space Telescopes, Part I: Implications for Terrestrial Exoplanet Detection and Observatory Stability
- Testing Earth-like atmospheric evolution on exo-Earths through oxygen absorption: required sample sizes and the advantage of age-based target selection
- Millisecond Exoplanet Imaging, I: Method and Simulation Results
- Optimized Bandpasses for the Habitable Worlds Observatory's ExoEarth Survey
- The HOSTS survey: evidence for an extended dust disk and constraints on the presence of giant planets in the Habitable Zone of Leo
- High-contrast imager for complex aperture telescopes (HiCAT): 5. first results with segmented-aperture coronagraph and wavefront control
- Simulating reflected light coronagraphy of Earth-like exoplanets with a large IR/O/UV space telescope: impact and calibration of smooth exozodiacal dust
- Sensitivity of the Roman Coronagraph Instrument to Exozodiacal Dust
- Space Technology for Directly Imaging and Characterizing Exo-Earths
- ATLAST detector needs for direct spectroscopic biosignature characterization in the visible and near-IR
- A Framework for Relative Biosignature Yields from Future Direct Imaging Missions
- HWO Yield Sensitivities in the NIR and NUV
- Three direct imaging epochs could constrain the orbit of Earth 2.0 inside the habitable zone
- Fast Linearized Coronagraph Optimizer (FALCO) IV. Coronagraph design survey for obstructed and segmented apertures
- A Simple Depth of Search Metric for Exoplanet Imaging Surveys
- Prospects for the characterisation of exo-zodiacal dust with the VLTI
- A Statistical Framework for the Utilization of Simultaneous Pupil Plane and Focal Plane Telemetry for Exoplanet Imaging, Part I: Accounting for Aberrations in Multiple Planes
- Wavefront error tolerancing for direct imaging of exo-Earths with a large segmented telescope in space
- Future Exoplanet Research: Science Questions and How to Address Them
- Multi-Amplifier Sensing Charge-coupled Devices for Next Generation Spectroscopy
- Apodized Pupil Lyot Coronagraphs with arbitrary aperture telescopes: novel designs using hybrid focal plane masks
- Millisecond Exoplanet Imaging, II: Regression Equations and Technical Discussion
- Empirical Green's Function Approach for Utilizing Millisecond Focal and Pupil Plane Telemetry in Exoplanet Imaging
- Correcting for the effects of pupil discontinuities with the ACAD method
- SUPERSHARP - Segmented Unfolding Primary for Exoplanet Research via Spectroscopic High Angular Resolution Photography