The polar orbit of the warm Neptune GJ436b seen with VLT/ESPRESSO
arXiv:2203.06109 · doi:10.1051/0004-6361/202142559
Abstract
GJ436b might be the prototype of warm Neptunes that have undergone late migration induced by an outer companion. Precise determination of the orbital architecture of such systems is critical to constraining their dynamical history and evaluating the role of delayed migration in the exoplanet population. To this purpose we analyzed the Rossiter-McLaughlin (RM) signal of GJ436 b in two transits - recently observed with ESPRESSO - using three different techniques. The high level of precision achieved in radial velocity (RV) measurements allows us to detect the deviation from the Keplerian orbit, despite the slow rotation of the M dwarf host (vsini = 272.0+40.0-34.0 m/s), and to measure the sky-projected obliquity ( = 102.5+17.2-18.5). The Reloaded RM technique, which allows the stellar RV field along the transit chord to be analyzed, yields = 107.5+23.6-19.3 and vsini = 292.9+41.9-49.9 m/s. The RM Revolutions technique, which allows us to fit the spectral profiles from all planet-occulted regions together, yields = 114.1+22.8-17.8 and vsini = 300.5+45.9-57.0 m/s. The consistent results between these three techniques, and with published results from HARPS/HARPS-N data, confirm the polar orbit of GJ436b and support the hypothesis that its origin lies in Kozai migration. Results from a joint RM Revolutions analysis of the ESPRESSO, HARPS, and HARPS-N datasets ( = 113.5+23.3-17.3; vsini = 293.5+43.7-52.2 m/s) combined with a revised stellar inclination ( = 35.7+5.9-7.6 or 144.2+7.6-5.9) lead us to constrain the 3D obliquity to 103.2+12.8-11.5.
10 pages, 9 figures, accepted for publication in A&A (27 January 2022)
References in corpus (26)
- ESPRESSO@VLT -- On-sky performance and first results
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Simulations of dynamo action in fully convective stars
- Lyman- Transit Spectroscopy and the Neutral Hydrogen Tail of the Hot Neptune GJ436b
- Hubble Space Telescope Near-IR Transmission Spectroscopy of the Super-Earth HD 97658b
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- Orbital misalignment of the Neptune-mass exoplanet GJ 436b with the spin of its cool star
- A global analysis of Spitzer and new HARPS data confirms the loneliness and metal-richness of GJ 436 b
- The long egress of GJ~436b's giant exosphere
- High-resolution confirmation of an extended helium atmosphere around WASP-107b
- A Preponderance of Perpendicular Planets
- WASP-107b's density is even lower: a case study for the physics of planetary gas envelope accretion and orbital migration
- Confirmation of WASP-107b's extended Helium atmosphere with Keck II/NIRSPEC
- The Warm Neptune GJ 3470b has a Polar Orbit
- A He I upper atmosphere around the warm Neptune GJ 3470b
- Analysis of Early Science observations with the CHaracterising ExOPlanets Satellite (CHEOPS) using pycheops
- The atmosphere of HD 209458b seen with ESPRESSO. No detectable planetary absorptions at high resolution
- A disk-driven resonance as the origin of high inclinations of close-in planets
- Signatures of Strong Magnetization and Metal-Poor Atmosphere for a Neptune-Size Exoplanet
- The Rossiter-McLaughlin effect Revolutions: An ultra-short period planet and a warm mini-Neptune on perpendicular orbits
- Why do warm Neptunes present nonzero eccentricity?
- The post-transit tail of WASP-107b observed at 10830A
- Detecting the spin-orbit misalignment of the super-Earth 55 Cnc e
- The JADE code: Coupling secular exoplanetary dynamics and photo-evaporation
- Refined architecture of the WASP-8 system: a cautionary tale for traditional Rossiter-McLaughlin analysis
- The impact of atmospheric dispersion in the performance of high-resolution spectrographs
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- NEID Reveals that The Young Warm Neptune TOI-2076 b Has a Low Obliquity
- Using Lyman- transits to constrain models of atmospheric escape
- ATREIDES I. Embarking on a trek across the exo-Neptunian landscape with the TOI-421 system
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- Tighter constraints on the atmosphere of GJ 436 b from combined high-resolution CARMENES and CRIRES observations
- Hot Exoplanet Atmospheres Resolved with Transit Spectroscopy (HEARTS) VIII. Nondetection of sodium in the atmosphere of the aligned planet KELT-10b
- Ohmic heating in the upper atmosphere of hot exoplanets The influence of a time-varying magnetic field
- Far-ultraviolet flares and variability of the young M dwarf AU Mic: a non-detection of planet c in transit at Lyman-alpha
- POSEIDON II: The Anti-Aligned Orbit of the Warm Neptune TOI-1710 A b