Confirmation of a Retrograde Orbit for Exoplanet WASP-17b
arXiv:1009.5061 · doi:10.1088/2041-8205/722/2/L224
Abstract
We present high-precision radial velocity observations of WASP-17 throughout the transit of its close-in giant planet, using the MIKE spectrograph on the 6.5m Magellan Telescope at Las Campanas Observatory. By modeling the Rossiter-McLaughlin effect, we find the sky-projected spin-orbit angle to be lambda = 167.4 \pm 11.2 deg. This independently confirms the previous finding that WASP-17b is on a retrograde orbit, suggesting it underwent migration via a mechanism other than just the gravitational interaction between the planet and the disk. Interestingly, our result for lambda differs by 45 \pm 13 deg from the previously announced value, and we also find that the spectroscopic transit occurs 15 \pm 5 min earlier than expected, based on the published ephemeris. The discrepancy in the ephemeris highlights the need for contemporaneous spectroscopic and photometric transit observations whenever possible.
4 pages, 3 figures, accepted for publication in ApJ Letters
References in corpus (7)
- Hot Stars with Hot Jupiters Have High Obliquities
- Formation of Hot Planets by a combination of planet scattering, tidal circularization, and Kozai mechanism
- Prospects for the Characterization and Confirmation of Transiting Exoplanets via the Rossiter-McLaughlin Effect
- WASP-1b and WASP-2b: Two new transiting exoplanets detected with SuperWASP and SOPHIE
- Evidence of Possible Spin-Orbit Misalignment Along the Line of Sight in Transiting Exoplanet Systems
- Properties of analytic transit light curve models
- The Transit Light Curve (TLC) Project. II. Two Transits of the Exoplanet OGLE-TR-111b
Cited by in corpus (22)
- Stellar obliquities in exoplanetary systems
- Exoplanet Transit Spectroscopy Using WFC3: WASP-12 b, WASP-17 b, and WASP-19 b
- Thermal emission at 4.5 and 8 micron of WASP-17b, an extremely large planet in a slightly eccentric orbit
- The retrograde orbit of the HAT-P-6b exoplanet
- Constraining Tidal Dissipation in Stars from The Destruction Rates of Exoplanets
- The spin-orbit angles of the transiting exoplanets WASP-1b, WASP-24b, WASP-38b and HAT-P-8b from Rossiter-McLaughlin observations
- High-precision photometry by telescope defocussing. IV. Confirmation of the huge radius of WASP-17b
- Solar Obliquity Induced by Planet Nine
- Solar System Physics for Exoplanet Research
- A Nearly Polar Orbit for the Extrasolar Hot Jupiter WASP-79b
- A highly inclined orbit for the 110-day period M-dwarf companion KOI-368.01
- Detection of sodium absorption in WASP-17b with Magellan
- The MUSCLES Extension for Atmospheric and Transmission Spectroscopy: UV and X-ray Host-star Observations for JWST ERS & GTO Targets
- Activity induced variation in spin-orbit angles as derived from Rossiter-McLaughlin measurements
- A Spin-Orbit Alignment for the Hot Jupiter HATS-3b
- A Window on Exoplanet Dynamical Histories: Rossiter-McLaughlin Observations of WASP-13b and WASP-32b
- The transmission spectrum of WASP-17 b from the optical to the near-infrared wavelengths: combining STIS, WFC3 and IRAC datasets
- The atmosphere of WASP-17b: Optical high-resolution transmission spectroscopy
- Creating retrogradely orbiting planets by prograde stellar fly-bys
- Birth cluster simulations of planetary systems with multiple super-Earths: initial conditions for white dwarf pollution drivers
- A Population Analysis of 20 Exoplanets Observed from the Optical to the Near-infrared Wavelengths with HST: Evidence for Widespread Stellar Contamination
- The Orbit of Warm Jupiter WASP-106 b is aligned with its Star