Hot planetary winds near a star: dynamics, wind-wind interactions, and observational signatures
arXiv:1604.08532 · doi:10.1093/mnras/stw3307
Abstract
Signatures of "evaporative" winds from exo-planets on short (hot) orbits around their host star have been observed in a number of systems. In this paper we present global AMR simulations that track the launching of the winds, their expansion through the circumstellar environment, and their interaction with a stellar wind. We focus on purely hydrodynamic flows including the anisotropy of the wind launching and explore the orbital/fluid dynamics of the resulting flows in detail. In particular we find that a combination of the tidal and Coriolis forces strongly distorts the planetary "Parker" wind creating "up-orbit" and "down-orbit" streams. We characterize the flows in terms of their orbital elements which change depending on their launch position on the planet. We find that the anisotropy in the atmospheric temperature leads to significant backflow on to the planet. The planetary wind interacts strongly with the stellar wind creating instabilities that cause eventual deposition of planetary gas onto the star. We present synthetic observations of both transit and absorption line-structure for our simulations. For our initial conditions, we find that the orbiting wind material produces absorption signatures at significant distances from the planet and substantial orbit to orbit variability. Ly-α absorption shows red and blueshifted features out to 70 km/s. Finally, using semi-analytic models we constrain the effect of radiation pressure, given the approximation of uniform stellar absorption.
17 pages, 14 figures
References in corpus (14)
- Atmospheric Escape from Hot Jupiters
- A Re-appraisal of the Habitability of Planets Around M Dwarf Stars
- The On/Off Nature of Star-Planet Interactions
- Energetic neutral atoms as the explanation for the high velocity hydrogen around HD 209458b
- Classification of magnetized star--planet interactions: bow shocks, tails, and inspiraling flows
- New observations of the extended hydrogen exosphere of the extrasolar planet HD209458b
- Magnetically controlled mass loss from extrasolar planets in close orbits
- Simulating Magnetohydrodynamical Flow with Constrained Transport and Adaptive Mesh Refinement; Algorithms & Tests of the AstroBEAR Code
- Survival probability and energy modification of hydrogen Energetic Neutral Atoms on their way from the termination shock to Earth orbit
- Magnetohydrodynamic Simulations of Hot Jupiter Upper Atmospheres
- The corona of HD 189733 and its X-ray activity
- Axisymmetric Simulations of Hot Jupiter-Stellar Wind Hydrodynamic Interaction
- Photo-ionization of planetary winds: case study HD209458b
- Hot Jupiter Breezes: Time-dependent Outflows from Extrasolar Planets
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