Observing Exoplanets with High Dispersion Coronagraphy. I. The scientific potential of current and next-generation large ground and space telescopes
arXiv:1703.00582 · doi:10.3847/1538-3881/aa6474
Abstract
Direct imaging of exoplanets presents a formidable technical challenge owing to the small angular separation and high contrast between exoplanets and their host stars. High Dispersion Coronagraphy (HDC) is a pathway to achieve unprecedented sensitivity to Earth-like planets in the habitable zone. Here, we present a framework to simulate HDC observations and data analyses. The goal of these simulations is to perform a detailed analysis of the trade-off between raw star light suppression and spectral resolution for various instrument configurations, target types, and science cases. We predict the performance of an HDC instrument at Keck observatory for characterizing directly imaged gas-giant planets in near infrared bands. We also simulate HDC observations of an Earth-like planet using next-generation ground-based (TMT) and spaced-base telescopes (HabEx and LUVOIR). We conclude that ground-based ELTs are more suitable for HDC observations of an Earth-like planet than future space-based missions owing to the considerable difference in collecting area. For ground-based telescopes, HDC observations can detect an Earth-like planet in the habitable zone around an M dwarf star at 10 starlight suppression level. Compared to the 10 planet/star contrast, HDC relaxes the starlight suppression requirement by a factor of 10. For space-based telescopes, detector noise will be a major limitation at spectral resolutions higher than 10. Considering detector noise and speckle chromatic noise, R=400 (1600) is the optimal spectral resolutions for HabEx(LUVOIR). The corresponding starlight suppression requirement to detect a planet with planet/star contrast= is relaxed by a factor of 10 (100) for HabEx (LUVOIR).
28 pages, 21 figures, 8 tables, accepted by AJ
References in corpus (18)
- New evolutionary models for pre-main sequence and main sequence low-mass stars down to the hydrogen-burning limit
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- The Gemini Planet Imager: First Light
- The fast spin-rotation of a young extrasolar planet
- Detection of Carbon Monoxide and Water Absorption Lines in an Exoplanet Atmosphere
- Combining high-dispersion spectroscopy (HDS) with high contrast imaging (HCI): Probing rocky planets around our nearest neighbors
- Carbon monoxide and water vapor in the atmosphere of the non-transiting exoplanet HD 179949 b
- Atmospheric characterization of Proxima b by coupling the Sphere high-contrast imager to the Espresso spectrograph
- Reconnaissance of the HR 8799 Exosolar System II: Astrometry and Orbital Motion
- The slow spin of the young sub-stellar companion GQ Lupi b and its orbital configuration
- Direct Imaging Discovery of a Jovian Exoplanet Within a Triple Star System
- Deep Thermal Infrared Imaging of HR 8799 bcde: New Atmospheric Constraints and Limits on a Fifth Planet
- The LEECH Exoplanet Imaging Survey. Further constraints on the planet architecture of the HR 8799 system
- High Resolution Transmission Spectroscopy as a Diagnostic for Jovian Exoplanet Atmospheres: Constraints from Theoretical Models
- Three years of harvest with the vector vortex coronagraph in the thermal infrared
- Advancing European High-Contrast Imaging R&D Towards the Habitable Worlds Observatory
- The Mid-infrared E-ELT Imager and Spectrograph (METIS)
- Stellar Double Coronagraph: a multistage coronagraphic platform at Palomar observatory
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- SPHERE: the exoplanet imager for the Very Large Telescope
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- Characterizing Earth Analogs in Reflected Light: Atmospheric Retrieval Studies for Future Space Telescopes
- Observing Exoplanets with High-Dispersion Coronagraphy. II. Demonstration of an Active Single-Mode Fiber Injection Unit
- Medium-resolution integral-field spectroscopy for high-contrast exoplanet imaging: Molecule maps of the Pictoris system with SINFONI
- Efficient injection from large telescopes into single-mode fibres: Enabling the era of ultra-precision astronomy
- A Clear View of a Cloudy Brown Dwarf Companion from High-Resolution Spectroscopy
- Adaptive Optics for Extremely Large Telescopes
- CHES: a space-borne astrometric mission for the detection of habitable planets of the nearby solar-type stars
- Efficient spectroscopy of exoplanets at small angular separations with vortex fiber nulling
- Demonstration of an efficient, photonic-based astronomical spectrograph on an 8-m telescope
- Direct characterization of young giant exoplanets at high spectral resolution by coupling SPHERE and CRIRES+
- Detecting Water In the atmosphere of HR 8799 c with L-band High Dispersion Spectroscopy Aided By Adaptive Optics
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- Auto-Differentiable Spectrum Model for High-Dispersion Characterization of Exoplanets and Brown Dwarfs
- An updated visual orbit of the directly-imaged exoplanet 51 Eridani b and prospects for a dynamical mass measurement with Gaia
- Vortex fiber nulling for exoplanet observations. I. Experimental demonstration in monochromatic light
- Potential of commercial SiN MPW platforms for developing mid/high-resolution integrated photonic spectrographs for astronomy
- Behind the Mask: can HARMONI@ELT detect biosignatures in the reflected light of Proxima b?
- Efficient detection and characterization of exoplanets within the diffraction limit: nulling with a mode-selective photonic lantern
- Searching for Planets Orbiting Alpha Centauri A with the James Webb Space Telescope
- High Resolution Spectroscopy and High Contrast Imaging with the ELT : looking for O in Proxima b
- Review of high-contrast imaging systems for current and future ground- and space-based telescopes I. Coronagraph design methods and optical performance metrics
- Diffraction-limited integral-field spectroscopy for extreme adaptive optics systems with the Multi-Core fiber-fed Integral-Field Unit
- Demonstration of an electric field conjugation algorithm for improved starlight rejection through a single mode optical fiber
- The vortex fiber nulling mode of the Keck Planet Imager and Characterizer (KPIC)
- The Keck Planet Imager and Characterizer: Demonstrating advanced exoplanet characterization techniques for future extremely large telescopes
- Trade-offs in high-contrast integral field spectroscopy for exoplanet detection and characterisation: Young gas giants in emission
- The Single-mode Complex Amplitude Refinement (SCAR) coronagraph: I. Concept, theory and design
- Experimental test of a 40 cm-long R=100 000 spectrometer for exoplanet characterisation
- Analytical determination of orbital elements using Fourier analysis. II. Gaia astrometry and its combination with radial velocities
- Vortex Fiber Nulling for Exoplanet Observations: Implementation and First Light
- Characterization of Single-Mode Fiber Coupling at the Large Binocular Telescope
- Vortex fiber nulling for exoplanet observations: conceptual design, theoretical performance, and initial scientific yield predictions
- Exoplanets detection limits using spectral cross-correlation with spectro-imaging. An analytical model applied to the case of ELT-HARMONI
- Spectral unmixing for exoplanet direct detection in hyperspectral data
- Validation of strategies for coupling exoplanet PSFs into single-mode fibres for high-dispersion coronagraphy
- Instrumentation prospects for rocky exoplanet atmospheres studies with high resolution spectroscopy
- Technical description and performance of the phase II version of the Keck Planet Imager and Characterizer
- High-contrast Demonstration of an Apodized Vortex Coronagraph
- Detecting Biosignatures in Nearby Rocky Exoplanets using High-Contrast Imaging and Medium-Resolution Spectroscopy with Extremely Large Telescope
- Enhancing Direct Exoplanet Spectroscopy with Apodizing and Beam Shaping Optics
- The Tianlin Mission: a 6m UV/Opt/IR space telescope to explore the habitable worlds and the universe
- On-sky speckle nulling through a single-mode fiber with the Keck Planet Imager and Characterizer
- An innovative integral field unit upgrade with 3D-printed micro-lenses for the RHEA at Subaru
- Laboratory demonstration of a Photonic Lantern Nuller in monochromatic and broadband light
- Broadband vortex fiber nulling: high-dispersion exoplanet science at the diffraction limit
- Enabling the next generation of scientific discoveries by embracing photonic technologies
- Enhanced high-dispersion coronagraphy with KPIC phase II: design, assembly and status of sub-modules
- Exoplanets Sciences with Nulling Interferometers and a Single-Mode Fiber-Fed Spectrograph
- The Super-Earth Opportunity - Search for Habitable Exoplanets in the 2020s
- Exoplanet Terra Incognita
- Discovery of a Nearby Habitable Zone Super-Earth Candidate Amenable to Direct Imaging
- Bioverse: Potentially Observable Exoplanet Biosignature Patterns Under the UV Threshold Hypothesis for the Origin of Life
- Bringing high-spectral resolution to VLT/SPHERE with a fibre coupling to VLT/CRIRES+
- Optical and Near-IR Microwave Kinetic Inductance Detectors (MKIDs) in the 2020s
- An Atmospheric Dispersion Corrector Design with Milliarcsecond-Level Precision from 1 to 4 microns for High Dispersion Coronagraphy
- Update on the Preliminary Design of SCALES: the Santa Cruz Array of Lenslets for Exoplanet Spectroscopy
- Status of the Keck Planet Imager and Characterizer Phase II Development
- Original use of MUSE's laser tomography adaptive optics to directly image young accreting exoplanets
- Improving the energy resolution of photon counting Microwave Kinetic Inductance Detectors using principal component analysis
- Membrane-less phonon trapping and resolution enhancement in optical microwave kinetic inductance detectors