Prospects for Detection of Exoplanet Magnetic Fields Through Bow-Shock Observations During Transits
arXiv:1011.3455 · doi:10.1111/j.1745-3933.2010.00991.x
Abstract
An asymmetry between the ingress and egress times was observed in the near-UV light curve of the transit planet WASP-12b. Such asymmetry led us to suggest that the early ingress in the UV light curve of WASP-12b, compared to the optical observations, is caused by a shock around the planet, and that shocks should be a common feature in transiting systems. Here, we classify all the transiting systems known to date according to their potential for producing shocks that could cause observable light curve asymmetries. We found that 36/92 of known transiting systems would lie above a reasonable detection threshold and that the most promising candidates to present shocks are: WASP-19b, WASP-4b, WASP-18b, CoRoT-7b, HAT-P-7b, CoRoT-1b, TrES-3, and WASP-5b. For prograde planets orbiting outside the co-rotation radius of fast rotating stars, the shock position, instead of being ahead of the planetary motion as in WASP-12b, trails the planet. In this case, we predict that the light curve of the planet should present a late-egress asymmetry. We show that CoRoT-11b is a potential candidate to host such a behind shock and show a late egress. If observed, these asymmetries can provide constraints on planetary magnetic fields. For instance, for a planet that has a magnetic field intensity similar to Jupiter's field (~ 14 G) orbiting a star whose magnetic field is between 1 and 100G, the stand-off distance between the shock and the planet, which we take to be the size of the planet's magnetosphere, ranges from 1 to 40 planetary radii.
7 pages (including the complete version of Table 1), 2 Tables, 3 Figures. Accepted by MNRAS Letters
References in corpus (5)
- 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
- New observations of the extended hydrogen exosphere of the extrasolar planet HD209458b
- Transiting exoplanets from the CoRoT space mission XIV. CoRoT-11b: a transiting massive "hot-Jupiter" in a prograde orbit around a rapidly rotating F-type star
Cited by in corpus (44)
- The Intrinsic Extreme Ultraviolet Fluxes of F5 V to M5 V Stars
- Three-Dimensional Atmospheric Circulation Models of HD 189733b and HD 209458b with Consistent Magnetic Drag and Ohmic Dissipation
- 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
- Catastrophic Evaporation of Rocky Planets
- The evolution of the solar wind
- On the environment surrounding close-in exoplanets
- Hubble Space Telescope detection of oxygen in the atmosphere of exoplanet HD189733b
- Ground-based near-UV observations of 15 transiting exoplanets: Constraints on their atmospheres and no evidence for asymmetrical transits
- The search for radio emission from the exoplanetary systems 55 Cancri, Andromedae, and Boötis using LOFAR beam-formed observations
- The shocking transit of WASP-12b: Modelling the observed early ingress in the near ultraviolet
- A comprehensive statistical assessment of star-planet interaction
- Star-planet magnetic interaction and activity in late-type stars with close-in planets
- Transit Variability in Bow Shock-Hosting Planets
- Exoplanet-induced radio emission from M-dwarfs
- The Influence of Thermal Evolution in the Magnetic Protection of Terrestrial Planets
- Hubble Space Telescope observations of the NUV transit of WASP-12b
- Cloud property trends in hot and ultra-hot giant gas planets (WASP-43b, WASP-103b, WASP-121b, HAT-P-7b, and WASP-18b)
- Stellar wind-magnetosphere interaction at exoplanets: computations of auroral radio powers
- Types of Gaseous Envelopes of "Hot Jupiter" Exoplanets
- The Effect of Magnetic Variability on Stellar Angular Momentum Loss I: The Solar Wind Torque During Sunspot Cycles 23 & 24
- Investigation of the environment around close-in transiting exoplanets using CLOUDY
- Photometric observation of HAT-P-16b in the near-UV
- Axisymmetric Simulations of Hot Jupiter-Stellar Wind Hydrodynamic Interaction
- Near-UV and optical observations of the transiting exoplanet TrES-3b
- Shock formation around planets orbiting M-dwarf stars
- A New Model Suite to Determine the Influence of Cosmic Rays on (Exo)planetary Atmospheric Biosignatures -- Validation based on Modern Earth
- Candidates for detecting exoplanetary radio emissions generated by magnetosphere-ionosphere coupling
- Ionization in Atmospheres of Brown Dwarfs and Extrasolar Planets V: Alfvén Ionization
- A binary merger origin for inflated hot Jupiter planets
- Understanding the atmospheric properties and chemical composition of the ultra-hot Jupiter HAT-P-7b: III. Changing ionisation and the emergence of an ionosphere
- Near-UV transit photometry of HAT-P-32 b with the LBT: Silicate aerosols in the planetary atmosphere
- Magnetospheres of hot Jupiters: hydrodynamic models & ultraviolet absorption
- Space environment and magnetospheric Poynting fluxes of the exoplanet Boötis b
- Non-Axisymmetric Flows on Hot Jupiters with Oblique Magnetic Fields
- UVMag: stellar formation, evolution, structure and environment with space UV and visible spectropolarimetry
- Stellar Coronal and Wind Models: Impact on Exoplanets
- Different types of star-planet interactions
- The effects of stellar winds and magnetic fields on exoplanets
- Inhomogeneous magnetic coupling in exoplanets: the stop & go of WASP-18 b's atmospheric flows
- Magnetohydrodynamic simulation assessment of a potential near-ultraviolet early ingress in WASP-189b
- Hot Jupiters accreting onto their parent stars: effects on the stellar activity
- Aspects of Multi-Dimensional Modelling of Substellar Atmospheres