The misaligned orbit of the Earth-sized planet Kepler-408b
arXiv:1902.02057 · doi:10.3847/1538-3881/ab04a9
Abstract
Kepler-408 is one of the 33 planet-hosting {\it Kepler} stars for which asteroseismology has been used to investigate the orientation of the stellar rotation axis relative to the planetary orbital plane. The transiting "hot Earth," Kepler-408b, has an orbital period of 2.5 days and a radius of ~, making it much smaller than the planets for which spin-orbit alignment has been studied using the Rossiter-McLaughlin effect. Because conflicting asteroseismic results have been reported in the literature, we undertake a thorough re-appraisal of this system and perform numerous checks for consistency and robustness. We find that the conflicting results are due to the different models for the low-frequency noise in the power spectrum. A careful treatment of the background noise resolves these conflicts, and shows that the stellar inclination is $\is=42^{+5}_{-4}$ degrees. Kepler-408b is, by far, the smallest planet known to have a significantly misaligned orbit.
20 pages, 12 figures, accepted for publication in AJ
References in corpus (8)
- Correcting stellar oscillation frequencies for near-surface effects
- A new correction of stellar oscillation frequencies for near-surface effects
- Inferring probabilistic stellar rotation periods using Gaussian processes
- Orbital misalignment of the Neptune-mass exoplanet GJ 436b with the spin of its cool star
- Determination of Three-dimensional Spin-orbit Angle with Joint Analysis of Asteroseismology, Transit Lightcurve, and the Rossiter-McLaughlin Effect: Cases of HAT-P-7 and Kepler-25
- How do External Companions Affect Spin-Orbit Misalignment of Hot Jupiters?
- Limits on radial differential rotation in Sun-like stars from parametric fits to oscillation power spectra
- On the potentially dramatic history of the super-Earth rho 55 Cancri e
Cited by in corpus (26)
- Stellar obliquities in exoplanetary systems
- The Rossiter-McLaughlin effect Revolutions: An ultra-short period planet and a warm mini-Neptune on perpendicular orbits
- A 20-Second Cadence View of Solar-Type Stars and Their Planets with TESS: Asteroseismology of Solar Analogs and a Re-characterization of pi Men c
- The TESS-Keck Survey IV: A Retrograde, Polar Orbit for the Ultra-Low-Density, Hot Super-Neptune WASP-107b
- Mutual Orbital Inclinations Between Cold Jupiters and Inner Super-Earths
- Hot Stars With Kepler Planets Have High Obliquities
- Star-disk alignment in the protoplanetary disks: SPH simulation of the collapse of turbulent molecular cloud cores
- Long Period Jovian Tilts the Orbits of Two sub-Neptunes Relative to Stellar Spin Axis in Kepler-129
- A low-eccentricity migration pathway for a 13-h-period Earth analogue in a four-planet system
- Stellar Oblateness versus Distant Giants in Exciting Kepler Planet Mutual Inclinations
- TOI-942b: A Prograde Neptune in a ~60 Myr old Multi-transiting System
- TESS Asteroseismic Analysis of the Known Exoplanet Host Star HD 222076
- The HD 93963 A transiting system: A 1.04d super-Earth and a 3.65 d sub-Neptune discovered by TESS and CHEOPS
- Bayesian hierarchical inference of asteroseismic inclination angles
- Cosmic evolution of black hole-spin and galaxy orientations: clues from the NewHorizon and Galactica simulations
- The Formation of Protoplanetary Disks through Pre-Main Sequence Bondi-Hoyle Accretion
- Search for Alignment of Disk Orientations in Nearby Star-Forming Regions: Lupus, Taurus, Upper Scorpius, Ophiuchi, and Orion
- Origin and Evolution of Angular Momentum of Class II Disks
- Meta-analysis of photometric and asteroseismic measurements of stellar rotation periods: the Lomb-Scargle periodogram, autocorrelation function, wavelet and rotational splitting analysis for 92 Kepler asteroseismic targets
- The signature of granulation in a solar power spectrum as seen with COBOLD
- TESS Asteroseismic Analysis of HD 76920: The Giant Star Hosting An Extremely Eccentric Exoplanet
- True spin-orbit obliquities distribution: data-driven confirmation of no clustering of misaligned planets
- Asteroseismic determination of the stellar rotation period of the Kepler transiting planetary systems and its implications for the spin-orbit architecture
- A new formation scenario of a counter-rotating circumstellar disk: spiral-arm accretion from a circumbinary disk in a triple protostar system
- Disentangling the stellar inclination of transiting planetary systems: fully analytic approach to the Rossiter-McLaughlin effect incorporating the stellar differential rotation
- Analytic model for photometric variation due to starspots on a differentially rotating star