Direct Imaging of Exoplanets Beyond the Radial Velocity Limit: Application to the HD 134987 System
arXiv:2104.13531 · doi:10.3847/1538-3881/abf831
Abstract
Future direct imaging missions will primarily observe planets that have been previously detected, mostly via the radial velocity (RV) technique, to characterize planetary atmospheres. In the meantime, direct imaging may discover new planets within existing planetary systems that have bright enough reflected flux, yet with insufficient signals for other methods to detect. Here, we investigate the parameter space within which planets are unlikely to be detected by RV in the near future due to precision limitations, but could be discovered through reflected light with future direct imaging missions. We use the HD 134987 system as a working example, combine RV and direct imaging detection limit curves in the same parameter space through various assumptions, and insert a fictitious planet into the system while ensuring it lies between the RV and imaging detection limits. Planet validity tested through dynamical simulations and retrieval tests revealed that the planet could indeed be detected by imaging while remaining hidden from RV surveys. Direct imaging retrieval was carried out using starshade simulations for two mission concepts: the Starshade Rendezvous Probe that could be coupled with the Nancy Grace Roman Space Telescope, and the Habitable Exoplanet Observatory. This method is applicable to any other systems and high contrast direct imaging instruments, and could help inform future imaging observations and data analysis on the discovery of new exoplanets.
16 pages, 8 figures. Accepted for publication in the Astronomical Journal
References in corpus (18)
- The Transiting Exoplanet Survey Satellite
- Direct Imaging of Multiple Planets Orbiting the Star HR 8799
- Wide-Field InfrarRed Survey Telescope-Astrophysics Focused Telescope Assets WFIRST-AFTA 2015 Report
- Habitable Zones Around Main-Sequence Stars: Dependence on Planetary Mass
- Contributions to the Nearby Stars (NStars) Project: Spectroscopy of Stars Earlier than M0 within 40 parsecs: The Southern Sample
- ESPRESSO@VLT -- On-sky performance and first results
- Accurate, Empirical Radii and Masses of Planets and their Host Stars with Gaia Parallaxes
- Detection of Carbon Monoxide and Water Absorption Lines in an Exoplanet Atmosphere
- Planetary Candidates Observed by Kepler VI: Planet Sample from Q1-Q16 (47 Months)
- Planetary Candidates Observed by Kepler V: Planet Sample from Q1-Q12 (36 Months)
- A Catalog of Kepler Habitable Zone Exoplanet Candidates
- The Precision of Mass Measurements Required for Robust Atmospheric Characterization of Transiting Exoplanets
- Astrophysical Insights into Radial Velocity Jitter from an Analysis of 600 Planet-search Stars
- Unexpectedly strong effect of supergranulation on the detectability of Earth twins orbiting Sun-like stars with radial velocities
- Finding the Needles in the Haystacks: High-Fidelity Models of the Modern and Archean Solar System for Simulating Exoplanet Observations
- The effects of granulation and supergranulation on Earth-mass planet detectability in the habitable zone around F6-K4 stars
- Multi-orbital-phase and multi-band characterization of exoplanetary atmospheres with reflected light spectra
- Optical Verification Experiments of Sub-scale Starshades