Classification of magnetized star--planet interactions: bow shocks, tails, and inspiraling flows
arXiv:1503.03551 · doi:10.1051/0004-6361/201425593
Abstract
Close-in exoplanets interact with their host stars gravitationally as well as via their magnetized plasma outflows. The rich dynamics that arises may result in distinct observable features. Our objective is to study and classify the morphology of the different types of interaction that can take place between a giant close-in planet (a Hot Jupiter) and its host star, based on the physical parameters that characterize the system. We perform 3D magnetohydrodynamic numerical simulations to model the star--planet interaction, incorporating a star, a Hot Jupiter, and realistic stellar and planetary outflows. We explore a wide range of parameters and analyze the flow structures and magnetic topologies that develop. Our study suggests the classification of star--planet interactions into four general types, based on the relative magnitudes of three characteristic length scales that quantify the effects of the planetary magnetic field, the planetary outflow, and the stellar gravitational field in the interaction region. We describe the dynamics of these interactions and the flow structures that they give rise to, which include bow shocks, cometary-type tails, and inspiraling accretion streams. We point out the distinguishing features of each of the classified cases and discuss some of their observationally relevant properties. The magnetized interactions of star--planet systems can be categorized, and their general morphologies predicted, based on a set of basic stellar, planetary, and orbital parameters.
Accepted for publication in A&A
References in corpus (24)
- PLUTO: a Numerical Code for Computational Astrophysics
- Atmospheric Escape from Hot Jupiters
- Self-consistent Coronal Heating and Solar Wind Acceleration from Anisotropic Magnetohydrodynamic Turbulence
- The On/Off Nature of Star-Planet Interactions
- Lyman- Transit Spectroscopy and the Neutral Hydrogen Tail of the Hot Neptune GJ436b
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- Accretion-Powered Stellar Winds II: Numerical Solutions for Stellar Wind Torques
- Atmospheric escape from HD 189733b observed in HI Lyman-alpha: detailed analysis of HST/STIS September 2011 observations
- Exoplanet HD209458b: inflated hydrogen atmosphere but no sign of evaporation
- New observations of the extended hydrogen exosphere of the extrasolar planet HD209458b
- Magnetically controlled mass loss from extrasolar planets in close orbits
- Magnetospheric Structure and Atmospheric Joule Heating of Habitable Planets Orbiting M-dwarf Stars
- Hubble Space Telescope detection of oxygen in the atmosphere of exoplanet HD189733b
- Hot Jupiters and stellar magnetic activity
- On the diversity of magnetic interactions in close-in star-planet systems
- MOST detects variability on tau Bootis possibly induced by its planetary companion
- The shocking transit of WASP-12b: Modelling the observed early ingress in the near ultraviolet
- Magnetohydrodynamic Simulations of Hot Jupiter Upper Atmospheres
- The corona of HD 189733 and its X-ray activity
- From Hot Jupiters to Super-Earths via Roche Lobe Overflow
- Spectral, Spatial, and Time properties of the hydrogen nebula around exoplanet HD209458b
- Modeling magnesium escape from HD209458b atmosphere
- Interaction of Close-in Planets with the Magnetosphere of their Host Stars I: Diffusion, Ohmic Dissipation of Time Dependent Field, Planetary Inflation, and Mass Loss
- Simulating radiative astrophysical flows with the PLUTO code: A non-equilibrium, multi-species cooling function
Cited by in corpus (32)
- Hubble PanCET: An extended upper atmosphere of neutral hydrogen around the warm Neptune GJ 3470 b
- The long egress of GJ~436b's giant exosphere
- Hydrogen dominated atmospheres on terrestrial mass planets: evidence, origin and evolution
- Global 3D hydrodynamic modeling of in-transit Lyα absorption of GJ436b
- Two regimes of interaction of a Hot Jupiter's escaping atmosphere with the stellar wind and generation of energized atomic hydrogen corona
- Assessing magnetic torques and energy fluxes in close-in star-planet systems
- Investigating the physical properties of transiting hot Jupiters with the 1.5-m Kuiper Telescope
- Lyα Absorption at Transits of HD 209458b: A Comparative Study of Various Mechanisms Under Different Conditions
- Effects of the stellar wind on the Ly-alpha transit of close-in planets
- Ultraviolet C II and Si III Transit Spectroscopy and Modeling of the Evaporating Atmosphere of GJ436b
- MOVES I. The evolving magnetic field of the planet-hosting star HD189733
- The Effects of Magnetic Fields on Observational Signatures of Atmospheric Escape in Exoplanets: Double Tail Structures
- The impact of intrinsic magnetic field on the absorption signatures of elements probing the upper atmosphere of HD209458b
- MOVES III. Simultaneous X-ray and ultraviolet observations unveiling the variable environment of the hot Jupiter HD 189733b
- Effect of stellar wind induced magnetic fields on planetary obstacles of non-magnetized hot Jupiters
- GJ 436b and the stellar wind interaction: simulations constraints using Ly and H transits
- SALT observations of the Chromospheric Activity of Transiting Planet Hosts: Mass Loss and Star Planet Interactions
- Investigating the visible phase-curve variability of 55 Cnc e
- Modeling star-planet interactions in far-out planetary and exoplanetary systems
- A Comparison Between Physics-based and Polytropic MHD Models for Stellar Coronae and Stellar Winds of Solar Analogs
- Is the activity level of HD 80606 influenced by its eccentric planet?
- X-ray variability of HD 189733 across eight years of XMM-Newton observations
- Unraveling the evolution of hot Jupiter systems under the effect of tidal and magnetic interactions and mass loss
- Interacting Fields and Flows: Magnetic Hot Jupiters
- Star-Planet Interactions: A Computational View
- Planetary transits at radio wavelengths: secondary eclipses of hot Jupiter extended atmospheres
- The X-ray activity of F stars with hot Jupiters: KELT-24 versus WASP-18
- Helium escaping from the atmosphere of a nearby rocky exoplanet orbiting in a habitable zone
- On stellar hotspots due to star-planet magnetic interactions: How much power can actually be transmitted to the chromosphere?
- Large-scale structures in the stellar wind of fast-rotating stars spawned by the presence of Earth-like planets
- Mass loss by atmospheric escape from extremely close-in planets
- Atmospheric mass loss and stellar wind effects in young and old systems I: comparative 3D study of TOI-942 and TOI-421 systems