Direct emission spectroscopy of exoplanets with the medium resolution imaging spectrometer on board JWST MIRI: I. Molecular mapping and sensitivity to instrumental effects
arXiv:2110.15756 · doi:10.1051/0004-6361/202141663
Abstract
The Medium Resolution Spectrometer on board JWST/MIRI will give access to mid-IR spectra while retaining spatial information. With the unparalleled sensitivity of JWST and the MIRI detectors, the MRS has the potential to revolutionise our understanding of giant exoplanet atmospheres. Molecular mapping is a promising detection and characterisation technique used to study the spectra of directly imaged exoplanets. We aim to examine the feasibility and application of this technique to MRS observations. We used the instrument simulator MIRISIM to create mock observations of resolved star and exoplanet systems. As an input for the simulator, we used stellar and planet parameters from literature, with the planet spectrum being modelled with the radiative transfer code petitRADTRANS. After processing the raw data with the JWST pipeline, we high pass filter the data to account for the stellar point spread function, and used a forward modelling approach to detect the companions and constrain the chemical composition of their atmospheres through their molecular signatures. We identified limiting factors in spectroscopic characterisation of directly imaged exoplanets with the MRS and simulated observations of two representative systems, HR8799 and GJ504. In both systems, we could detect the presence of multiple molecules that were present in the input model of their atmospheres. We used two different approaches with single molecule forward models, used in literature, that are sensitive to detecting mainly HO, CO, CH, and NH, and a log-likelihood ratio test that uses full atmosphere forward models and is sensitive to a larger number of less dominant molecular species. We show that the MIRI MRS can be used to characterise widely separated giant exoplanets in the mid-IR using molecular mapping.
18 pages, 10 figures. Accepted for publication in Astronomy & Astrophysics
References in corpus (41)
- Array Programming with NumPy
- The Gaia mission
- The Transiting Exoplanet Survey Satellite
- The James Webb Space Telescope
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- The Gemini Planet Imager: First Light
- petitRADTRANS: a Python radiative transfer package for exoplanet characterization and retrieval
- The Gemini Planet Imager Exoplanet Survey: Giant Planet and Brown Dwarf Demographics From 10-100 AU
- Two accreting protoplanets around the young star PDS 70
- The fast spin-rotation of a young extrasolar planet
- Detection of Carbon Monoxide and Water Absorption Lines in an Exoplanet Atmosphere
- The imprint of exoplanet formation history on observable present-day spectra of hot Jupiters
- Astrometric exoplanet detection with Gaia
- A Circumplanetary Disk Around PDS70c
- Transmission spectral properties of clouds for hot Jupiter exoplanets
- Retrieving scattering clouds and disequilibrium chemistry in the atmosphere of HR 8799e
- Simultaneous Detection of Water, Methane and Carbon Monoxide in the Atmosphere of Exoplanet HR8799b
- Setting the volatile composition of (exo)planet-building material. Does chemical evolution in disk midplanes matter?
- Constraining the Nature of the PDS 70 Protoplanets with VLTI/GRAVITY
- Characterizing 51 Eri b from 1-5 m: a partly-cloudy exoplanet
- Jupiter's composition suggests its core assembled exterior to the N2 snowline
- Transit Signatures of Inhomogeneous Clouds on Hot Jupiters: Insights From Microphysical Cloud Modeling
- Two Directly Imaged, Wide-orbit Giant Planets around the Young, Solar Analog TYC 8998-760-1
- Radial Velocity Measurements of HR 8799 b and c with Medium Resolution Spectroscopy
- The Role of Ice Compositions for Snowlines and the C/N/O Ratios in Active Disks
- A medium-resolution spectrum of the exoplanet HIP 65426 b
- Deep exploration of the planets HR 8799 b, c, and d with moderate resolution spectroscopy
- Spectral and orbital characterisation of the directly imaged giant planet HIP 65426 b
- Planets Around Low-Mass Stars (PALMS). VI. Discovery of a Remarkably Red Planetary-Mass Companion to the AB Dor Moving Group Candidate 2MASS J22362452+4751425
- Imaging low-mass planets within the habitable zone of α Centauri
- The First Dynamical Mass Measurement in the HR 8799 System
- Discovery of a directly imaged planet to the young solar analog YSES 2
- The nature of point source fringes in mid-infrared spectra acquired with the James Webb Space Telescope
- On the Chemical Abundance of HR 8799 and the Planet c
- Molecular mapping of the PDS70 system: No molecular absorption signatures from the forming planet PDS70 b
- New Extinction and Mass Estimates from Optical Photometry of the Very Low Mass Brown Dwarf Companion CT Chamaeleontis B with the Magellan AO System
- MIRISim: A Simulator for the Mid-Infrared Instrument on JWST
- Modeling synthetic spectra for transiting extrasolar giant planets: detectability of HS and PH with JWST
- The Prototypical Young L/T-Transition Dwarf HD 203030B Likely Has Planetary Mass
- New constraints on the HR 8799 planetary system from mid-infrared direct imaging
- New Mid-Infrared Imaging Constraints on Companions and Protoplanetary Disks around six Young Stars
Cited by in corpus (21)
- Modules for Experiments in Stellar Astrophysics (MESA): Time-Dependent Convection, Energy Conservation, Automatic Differentiation, and Infrastructure
- Four-of-a-kind? Comprehensive atmospheric characterisation of the HR 8799 planets with VLTI/GRAVITY
- JWST MIRI/MRS in-flight absolute flux calibration and tailored fringe correction for unresolved sources
- The Brighter-Fatter Effect in the JWST MIRI Si:As IBC detectors I. Observations, impact on science, and modelling
- Investigating the detectability of hydrocarbons in exoplanet atmospheres with JWST
- Behind the Mask: can HARMONI@ELT detect biosignatures in the reflected light of Proxima b?
- Simulated performance of the molecular mapping for young giant exoplanets with the Medium Resolution Spectrometer of JWST/MIRI
- Rotation and Abundances of the Benchmark Brown Dwarf HD 33632 Ab from Keck/KPIC High-resolution Spectroscopy
- Direct imaging of exoplanets: Legacy and prospects
- High-throughput Quantum Chemistry: Empowering the Search for Molecular Candidates behind Unknown Spectral Signatures in Exoplanetary Atmospheres
- Trade-offs in high-contrast integral field spectroscopy for exoplanet detection and characterisation: Young gas giants in emission
- Detecting Exoplanets Closer to Stars with Moderate Spectral Resolution Integral-Field Spectroscopy
- Machine Learning for Exoplanet Detection in High-Contrast Spectroscopy: Revealing Exoplanets by Leveraging Hidden Molecular Signatures in Cross-Correlated Spectra with Convolutional Neural Networks
- Exoplanets detection limits using spectral cross-correlation with spectro-imaging. An analytical model applied to the case of ELT-HARMONI
- CROCODILE \\ Incorporating medium-resolution spectroscopy of close-in directly imaged exoplanets into atmospheric retrievals via cross-correlation
- High-contrast spectroscopy with the new VLT/ERIS instrument: Molecular maps and radial velocity of the gas giant AF Lep b
- Velocity offset between emission and absorption lines might be an effective indicator of dual core system
- The mid-infrared spectrum of Pictoris b. First VLTI/MATISSE interferometric observations of an exoplanet
- Combining high-contrast imaging with high-resolution spectroscopy: Actual on-sky MIRI/MRS results compared to expectations
- Machine learning for exoplanet detection in high-contrast spectroscopy Combining cross correlation maps and deep learning on medium-resolution integral-field spectra
- JWST-TST High Contrast: First Direct Spectroscopy of GJ 504 b reveals Clouds and Possible Metal Enrichment