Transit Variability in Bow Shock-Hosting Planets
arXiv:1102.1559 · doi:10.1111/j.1365-2966.2011.18491.x
Abstract
We investigate the formation of bow shocks around exoplanets as a result of the interaction of the planet with the coronal material of the host star, focusing on physical causes that can lead to temporal variations in the shock characteristics. We recently suggested that WASP-12b may host a bow shock around its magnetosphere, similarly to the one observed around the Earth. For WASP12b, the shock is detected in the near-UV transit light curve. Observational follow-up suggests that the near-UV light curve presents temporal variations, which may indicate that the stand-off distance between the shock and the planet is varying. This implies that the size of the planet's magnetosphere is adjusting itself in response to variations in the surrounding ambient medium. We investigate possible causes of shock variations for the known eccentric (e>0.3) transiting planets. We show that, because the distance from the star changes along the orbit of an eccentric planet, the shock characteristics are modulated by orbital phase. We predict time offsets between the beginnings of the near-UV and optical light curves that are, in general, less than the transit duration. Variations in shock characteristics caused in eccentric systems can only be probed if the shock is observed at different orbital phases, which is, in general, not the case for transit observations. However, non-thermal radio emission produced by the interaction of the star and planet should be modulated by orbital phase. We also quantify the response of the shock to variations in the coronal material itself due to, e.g., a non-axisymmetric stellar corona, planetary obliquity, intrinsic variations of the stellar magnetic field. Such variations do not depend on the system eccentricity. We conclude that, for systems where a shock is detectable through transit light curve observations, shock variations should be a common occurrence. (Abridged)
10 pages, 11 figures, 1 table. MNRAS accepted
References in corpus (11)
- Atmospheric Escape from Hot Jupiters
- Metals in the Exosphere of the Highly Irradiated Planet WASP-12b
- Evidence of Possible Spin-Orbit Misalignment Along the Line of Sight in Transiting Exoplanet Systems
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- WASP-8b: a retrograde transiting planet in a multiple system
- Photometric and spectroscopic detection of the primary transit of the 111-day-period planet HD 80606 b
- CoRoT-10b: a giant planet in a 13.24 day eccentric orbit
- Prospects for Detection of Exoplanet Magnetic Fields Through Bow-Shock Observations During Transits
- Radio emission from exoplanets: the role of the stellar coronal density and magnetic field strength
- Simulations of Winds of Weak-Lined T Tauri Stars. II.: The Effects of a Tilted Magnetosphere and Planetary Interactions
- Radio Observations of HD 80606 Near Planetary Periastron
Cited by in corpus (46)
- Near-UV Absorption, Chromospheric Activity, and Star-Planet Interactions in the WASP-12 system
- Effects of M dwarf magnetic fields on potentially habitable planets
- M-dwarf stellar winds: the effects of realistic magnetic geometry on rotational evolution and planets
- An evaporating planet in the wind: stellar wind interactions with the radiatively braked exosphere of GJ436 b
- Atmospheric escape from HD 189733b observed in HI Lyman-alpha: detailed analysis of HST/STIS September 2011 observations
- Classification of magnetized star--planet interactions: bow shocks, tails, and inspiraling flows
- 3D Gas Dynamic Simulation of the Interaction Between the Exoplanet WASP-12b and Its Host Star
- Magnetic field strengths of hot Jupiters from signals of star-planet interactions
- The stellar wind cycles and planetary radio emission of the Tau Boo system
- Catastrophic Evaporation of Rocky Planets
- Magnetospheric Structure and Atmospheric Joule Heating of Habitable Planets Orbiting M-dwarf Stars
- 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
- Optical hydrogen absorption consistent with a thin bow shock leading the hot Jupiter HD 189733b
- Exoplanet Transit Variability: Bow Shocks and Winds Around HD 189733b
- Stellar wind effects on the atmospheres of close-in giants: a possible reduction in escape instead of increased erosion
- 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
- Hubble Space Telescope observations of the NUV transit of WASP-12b
- Predicting radio emission from the newborn hot Jupiter V830 Tau and its host star
- Multi-site campaign for transit timing variations of WASP-12 b: possible detection of a long-period signal of planetary origin
- Types of Gaseous Envelopes of "Hot Jupiter" Exoplanets
- Investigation of the environment around close-in transiting exoplanets using CLOUDY
- Photometric observation of HAT-P-16b in the near-UV
- Variation in the pre-transit Balmer line signal around the hot Jupiter HD 189733 b
- Near-UV and optical observations of the transiting exoplanet TrES-3b
- Shock formation around planets orbiting M-dwarf stars
- Ionization in Atmospheres of Brown Dwarfs and Extrasolar Planets V: Alfvén Ionization
- Can we detect aurora in exoplanets orbiting M dwarfs?
- The space weather around the exoplanet GJ 436 b. II. Stellar wind-exoplanet interactions
- Effect of the exoplanet magnetic field topology on its magnetospheric radio emission
- Reassessing the Evidence for Time Variability in the Atmosphere of the Exoplanet HAT-P-7 b
- The winds of young Solar-type stars in the Hyades
- The winds of young Solar-type stars in the Pleiades, AB Doradus, Columba and Pictoris
- Is the activity level of HD 80606 influenced by its eccentric planet?
- Searching for star-planet magnetic interaction in CoRoT observations
- 3D MHD simulations and synthetic radio emission from an oblique rotating magnetic massive star
- Multi-filter transit observations of HAT-P-3b and TrES-3b with multiple Northern Hemisphere telescopes
- Star-Planet Interactions: A Computational View
- Stellar wind induced soft X-ray emission from close-in exoplanets
- Planetary transits at radio wavelengths: secondary eclipses of hot Jupiter extended atmospheres
- Destination exoplanet: Habitability conditions influenced bystellar winds properties
- The effects of stellar winds and magnetic fields on exoplanets
- Hot Jupiters accreting onto their parent stars: effects on the stellar activity
- Radio prospects of extrasolar aurorae polaris as a probe of planetary magnetism
- The winds of young Solar-type stars in Coma Berenices and Hercules-Lyra