Exoplanet Transit Variability: Bow Shocks and Winds Around HD 189733b
arXiv:1309.2938 · doi:10.1093/mnras/stt1725
Abstract
By analogy with the solar system, it is believed that stellar winds will form bow shocks around exoplanets. For hot Jupiters the bow shock will not form directly between the planet and the star, causing an asymmetric distribution of mass around the exoplanet and hence an asymmetric transit. As the planet orbits thorough varying wind conditions, the strength and geometry of its bow shock will change, thus producing transits of varying shape. We model this process using magnetic maps of HD 189733 taken one year apart, coupled with a 3D stellar wind model, to determine the local stellar wind conditions throughout the orbital path of the planet. We predict the time-varying geometry and density of the bow shock that forms around the magnetosphere of the planet and simulate transit light curves. Depending on the nature of the stellar magnetic field, and hence its wind, we find that both the transit duration and ingress time can vary when compared to optical light curves. We conclude that consecutive near-UV transit light curves may vary significantly and can therefore provide an insight into the structure and evolution of the stellar wind.
9 Pages, 7 figures. Accepted for publication in Monthly Notices of The Royal Astronomical Society
References in corpus (9)
- Improved parameters for extrasolar transiting planets
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- Near-UV Absorption, Chromospheric Activity, and Star-Planet Interactions in the WASP-12 system
- Effects of M dwarf magnetic fields on potentially habitable planets
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- Atmospheric escape from HD 189733b observed in HI Lyman-alpha: detailed analysis of HST/STIS September 2011 observations
- Transit observations of the Hot Jupiter HD 189733b at X-ray wavelengths
- Hubble Space Telescope detection of oxygen in the atmosphere of exoplanet HD189733b
- The shocking transit of WASP-12b: Modelling the observed early ingress in the near ultraviolet
Cited by in corpus (53)
- An evaporating planet in the wind: stellar wind interactions with the radiatively braked exosphere of GJ436 b
- Classification of magnetized star--planet interactions: bow shocks, tails, and inspiraling flows
- Magnetic field strengths of hot Jupiters from signals of star-planet interactions
- The evolution of the solar wind
- On the environment surrounding close-in exoplanets
- Ground-based near-UV observations of 15 transiting exoplanets: Constraints on their atmospheres and no evidence for asymmetrical transits
- Atmospheric dynamics and the variable transit of KELT-9 b
- Stellar Winds on the Main-Sequence I: Wind Model
- The mineral clouds on HD 209458b and HD189733b
- Simulated Photoevaporative Mass Loss from Hot Jupiters in 3D
- Optical hydrogen absorption consistent with a thin bow shock leading the hot Jupiter HD 189733b
- Simulating the environment around planet-hosting stars - II. Stellar winds and inner astrospheres
- Mass Loss from the Exoplanet WASP-12b Inferred from Phase Curves
- A decade of H transits for HD 189733 b: stellar activity versus absorption in the extended atmosphere
- Studying stellar spin-down with Zeeman-Doppler magnetograms
- Exoplanets as probes of the winds of host stars: the case of the M dwarf GJ 436
- FUV variability of HD 189733. Is the star accreting material from its hot Jupiter?
- Assessing magnetic torques and energy fluxes in close-in star-planet systems
- An Overabundance of Low-density Neptune-like Planets
- The impact of coronal mass ejections and flares on the atmosphere of the hot Jupiter HD189733b
- Time-scales of close-in exoplanet radio emission variability
- Simultaneous Multiwavelength Observations of Magnetic Activity in Ultracool Dwarfs. IV. The Active, Young Binary NLTT 33370 AB (=2MASS J13142039+1320011)
- Simulating the Environment Around Planet-Hosting Stars - I. Coronal Structure
- Transiting the Sun: The impact of stellar activity on X-ray and ultraviolet transits
- Investigation of the environment around close-in transiting exoplanets using CLOUDY
- MOVES I. The evolving magnetic field of the planet-hosting star HD189733
- Axisymmetric Simulations of Hot Jupiter-Stellar Wind Hydrodynamic Interaction
- Temporal variability of the wind from the star τ Boötis
- Variation in the pre-transit Balmer line signal around the hot Jupiter HD 189733 b
- Evidence of magnetic star-planet interactions in the HD 189733 system from orbitally-phased Ca II K variations
- MOVES III. Simultaneous X-ray and ultraviolet observations unveiling the variable environment of the hot Jupiter HD 189733b
- MOVES II. Tuning in to the radio environment of HD189733b
- Modeling the Ly transit absorption of the hot Jupiter HD 189733b
- Stellar versus Galactic: The intensity of cosmic rays at the evolving Earth and young exoplanets around Sun-like stars
- Can we detect aurora in exoplanets orbiting M dwarfs?
- Hot Jupiter accretion: 3D MHD simulations of star-planet wind interaction
- The GAPS Programme with HARPS-N at TNG. XXXI. The WASP-33 system revisited with HARPS-N
- The winds of young Solar-type stars in the Hyades
- The space weather around the exoplanet GJ 436b
- Models of Star-Planet Magnetic Interaction
- Inhibition of the electron cyclotron maser instability in the dense magnetosphere of a hot Jupiter
- The winds of young Solar-type stars in the Pleiades, AB Doradus, Columba and Pictoris
- Magnetospheres of hot Jupiters: hydrodynamic models & ultraviolet absorption
- High-energy environment of super-Earth 55 Cnc e I: Far-UV chromospheric variability as a possible tracer of planet-induced coronal rain
- The Weird Detector: Flagging periodic, coherent signals of arbitrary shape in time series photometry
- Extrasolar giant magnetospheric response to steady-state stellar wind pressure at 10, 5, 1, and 0.2 AU
- Star-Planet Interactions: A Computational View
- Non-thermal emission from the interaction of magnetized exoplanets with the wind of their host star
- Five new hot-Jupiter transits investigated with Swift-UVOT
- Stellar Coronal and Wind Models: Impact on Exoplanets
- Hot Jupiters accreting onto their parent stars: effects on the stellar activity
- Incorporating magnetic field observations in wind models of low-mass stars
- The winds of young Solar-type stars in Coma Berenices and Hercules-Lyra