Are Tidal Effects Responsible for Exoplanetary Spin-Orbit Alignment?
arXiv:1511.05570 · doi:10.3847/0004-637X/818/1/5
Abstract
The obliquities of planet-hosting stars are clues about the formation of planetary systems. Previous observations led to the hypothesis that for close-in giant planets, spin-orbit alignment is enforced by tidal interactions. Here, we examine two problems with this hypothesis. First, Mazeh and coworkers recently used a new technique -- based on the amplitude of starspot-induced photometric variability -- to conclude that spin-orbit alignment is common even for relatively long-period planets, which would not be expected if tides were responsible. We re-examine the data and find a statistically significant correlation between photometric variability and planetary orbital period that is qualitatively consistent with tidal interactions. However it is still difficult to explain quantitatively, as it would require tides to be effective for periods as long as tens of days. Second, Rogers and Lin argued against a particular theory for tidal re-alignment by showing that initially retrograde systems would fail to be re-aligned, in contradiction with the observed prevalence of prograde systems. We investigate a simple model that overcomes this problem by taking into account the dissipation of inertial waves and the equilibrium tide, as well as magnetic braking. We identify a region of parameter space where re-alignment can be achieved, but it only works for close-in giant planets, and requires some fine tuning. Thus, while we find both problems to be more nuanced than they first appeared, the tidal model still has serious shortcomings.
12 pages, 9 figures. Accepted for publication in ApJ
References in corpus (17)
- Dynamical Outcomes of Planet-Planet Scattering
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Tidal dissipation in stars and giant planets
- Misaligned spin-orbit in the XO-3 planetary system?
- Calibrating Gyrochronology using Kepler Asteroseismic targets
- Photometric Amplitude Distribution of Stellar Rotation of Kepler KOIs-Indication for Spin-Orbit Alignment of Cool Stars and High Obliquity for Hot Stars
- Obliquities of Kepler Stars: Comparison of Single- and Multiple-Transit Systems
- On the Spin-Orbit Misalignment of the XO-3 Exoplanetary System
- The Turbulent Origin of Spin-Orbit Misalignment in Planetary Systems
- Cross Sections for Planetary Systems Interacting with Passing Stars and Binaries
- On the tidal origin of hot Jupiter stellar obliquity trends
- Tidal Dissipation and Obliquity Evolution in Hot Jupiter Systems
- Early Excitation of Spin-Orbit Misalignments in Close-in Planetary Systems
- Why is there a Dearth of Close-In Planets around Fast-Rotating stars?
- Magnetic Origins of the Stellar Mass-Obliquity Correlation in Planetary Systems
- The Dynamics of the Multi-planet System Orbiting Kepler-56
- A hot Jupiter for breakfast? --- Early stellar ingestion of planets may be common
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- Planet Formation in Disks with Inclined Binary Companions: Can Primordial Spin-Orbit Misalignment be Produced?
- TOI-677 b: A Warm Jupiter (P=11.2d) on an eccentric orbit transiting a late F-type star
- WASP-167b/KELT-13b: Joint discovery of a hot Jupiter transiting a rapidly-rotating F1V star
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- Tidal interactions in spin-orbit misaligned systems
- Nonlinear tides in a homogeneous rotating planet or star: global simulations of the elliptical instability
- Effects of Disk Warping on the Inclination Evolution of Star-Disk-Binary Systems
- Warm Jupiters in TESS Full-Frame Images: A Catalog and Observed Eccentricity Distribution for Year 1
- Obliquities of Exoplanet Host Stars: 19 New and Updated Measurements, and Trends in the Sample of 205 Measurements
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- A warm Jupiter transiting an M dwarf: A TESS single transit event confirmed with the Habitable-zone Planet Finder
- The gravitational interaction between planets on inclined orbits and protoplanetary disks as the origin of primordial spin--orbit misalignments
- Tidal erasure of stellar obliquities constrains the timing of hot Jupiter formation
- Spin-Orbit Misalignments of Three Jovian Planets via Doppler Tomography
- On turbulence driven by axial precession and tidal evolution of the spin-orbit angle of close-in giant planets
- EPIC247098361b: a transiting warm Saturn on an eccentric days orbit around a star
- Statistical Trends in the Obliquity Distribution of Exoplanet Systems
- Zodiacal Exoplanets in Time. XI. The Orbit and Radiation Environment of the Young M Dwarf-Hosted Planet K2-25b
- On a Possible Solution to the Tidal Realignment Problem for Hot Jupiters
- Evidence for Primordial Alignment: Insights from Stellar Obliquity Measurements for Compact Sub-Saturn Systems
- Two warm, low-density sub-Jovian planets orbiting bright stars in K2 campaigns 13 and 14
- The resilience of Kepler systems to stellar obliquity
- A Secular Resonant Origin for the Loneliness of Hot Jupiters
- Prospects from TESS and Gaia to constrain the flatness of planetary systems
- Three low-mass companions around aged stars discovered by TESS
- EPIC 246851721 b: A Tropical Jupiter Transiting a Rapidly Rotating Star in a Well-Aligned Orbit
- Significant mutual inclinations between the stellar spin and the orbits of both planets in the HAT-P-11 system
- Characterization of seven transiting systems including four warm Jupiters from SOPHIE and TESS
- A highly mutually-inclined, compact warm-Jupiter system KOI-984 ?
- Revisiting the Full Sets of Orbital Parameters for the XO-3 System: No evidence for Temporal Variation of the Spin-Orbit Angle
- Obliquities of Exoplanet Host Stars from Precise Distances and Stellar Angular Diameters
- A Homogeneous Catalog of Rossiter-McLaughlin Systems: Distinct - Trends in Three Gas-Giant Mass Regimes
- Evidence for the Late Arrival of Hot Jupiters in Systems with High Host-star Obliquities