Magellan/PFS Radial Velocities of GJ 9827, a late K dwarf at 30 pc with Three Transiting Super-Earths
arXiv:1711.01359 · doi:10.3847/1538-3881/aaab56
Abstract
The Kepler mission showed us that planets with sizes between that of Earth and Neptune appear to be the most common type in our Galaxy. These "super-Earths" continue to be of great interest for exoplanet formation, evolution, and composition studies. However, the number of super-Earths with well-constrained mass and radius measurements remains small (40 planets with 25\%), due in part to the faintness of their host stars causing ground-based mass measurements to be challenging. Recently, three transiting super-Earth planets were detected by the K2 mission around the nearby star GJ 9827/HIP 115752, at only 30 pc away. The radii of the planets span the "radius gap"' detected by Fulton et al. (2017), and all orbit within ~6.5 days, easing follow-up observations. Here we report radial velocity (RV) observations of GJ 9827, taken between 2010 and 2016 with the Planet Finder Spectrograph on the Magellan II Telescope. We employ two different RV analysis packages, SYSTEMIC and RadVel, to derive masses and thus densities of the GJ 9827 planets. We also test a Gaussian Process regression analysis, but find the correlated stellar noise is not well constrained by the PFS data, and that the GP tends to over fit the RV semi-amplitudes resulting in a lower K value. Our RV observations are not able to place strong mass constraints on the two outer planets (c & d) but do indicate that planet b, at 1.64 R and ~8 M, is one of the most massive (and dense) super-Earth planets detected to date.
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References in corpus (14)
- The California-Kepler Survey. III. A Gap in the Radius Distribution of Small Planets
- Most 1.6 Earth-Radius Planets are not Rocky
- The evaporation valley in the Kepler planets
- How to Constrain Your M Dwarf: measuring effective temperature, bolometric luminosity, mass, and radius
- The California-Kepler Survey. I. High Resolution Spectroscopy of 1305 Stars Hosting Kepler Transiting Planets
- Precision Stellar Characterization of FGKM Stars using an Empirical Spectral Library
- Compositional imprints in density-distance-time: a rocky composition for close-in low-mass exoplanets from the location of the valley of evaporation
- The California-Kepler Survey. II. Precise Physical Properties of 2025 Kepler Planets and Their Host Stars
- The Kepler-10 planetary system revisited by HARPS-N: A hot rocky world and a solid Neptune-mass planet
- Collisional Stripping and Disruption of Super-Earths
- Large Impacts around a Solar Analog Star in the Era of Terrestrial Planet Formation
- The discovery and mass measurement of a new ultra-short-period planet: EPIC~228732031b
- Three Small Super-Earths Transiting the nearby star GJ 9827
- The Magellan PFS Planet Search Program: Radial Velocity and Stellar Abundance Analyses of the 360 AU, Metal-Poor Binary "Twins" HD 133131A & B
Cited by in corpus (14)
- Cold Jupiters and improved masses in 38 Kepler and K2 small planet systems from 3661 HARPS-N radial velocities. No excess of cold Jupiters in small planet systems
- Homogeneous Analysis of Hot Earths: Masses, Sizes, and Compositions
- JWST/NIRISS reveals the water-rich "steam world" atmosphere of GJ 9827 d
- Non-detection of Helium in the Upper Atmospheres of Three Sub-Neptune Exoplanets
- Masses and radii for the three super-Earths orbiting GJ 9827, and implications for the composition of small exoplanets
- Water absorption in the transmission spectrum of the water-world candidate GJ9827d
- Search for nearby Earth analogs I. 15 planet candidates found in PFS data
- A multi-wavelength look at the GJ 9827 system -- No evidence of extended atmospheres in GJ 9827 b and d from HST and CARMENES data
- Mass determination of the 1:3:5 near-resonant planets transiting GJ 9827 (K2-135)
- The TESS Grand Unified Hot Jupiter Survey. I. Ten TESS Planets
- Physical Parameters of the Multi-Planet Systems HD 106315 and GJ 9827
- Observational constraints on the likelihood of Al in planet-forming environments
- A collage of small planets from the Lick Carnegie Exoplanet Survey : Exploring the super-Earth and sub-Neptune mass regime
- Validation of a Temperate Fourth Planet in the K2-133 Multi-planet System