Using Lyman- transits to constrain models of atmospheric escape
arXiv:2310.18486 · doi:10.1093/mnras/stae1976
Abstract
Lyman- transits provide an opportunity to test models of atmospheric escape directly. However, translating observations into constraints on the properties of the escaping atmosphere is challenging. The major reason for this is that the observable parts of the outflow often comes from material outside the planet's Hill sphere, where the interaction between the planetary outflow and circumstellar environment is important. As a result, 3D models are required to match observations. Whilst 3D hydrodynamic simulations are able to match observational features qualitatively, they are too computationally expensive to perform a statistical retrieval of properties of the outflow. Here, we develop a model that determines the trajectory, ionization state and 3D geometry of the outflow as a function of its properties and system parameters. We then couple this model to a ray tracing routine in order to produce synthetic transits. We demonstrate the validity of this approach, reproducing the trajectory of the outflows seen in 3D simulations. We illustrate the use of this model by performing a retrieval on the transit spectrum of GJ 436 b. Our model constrains the sound speed of the outflow , indicating that we can rule out core-powered mass loss as the mechanism driving the outflow for this planet. The bound on planetary outflow velocity and mass loss rates are consistent with a photoevaporative wind.
References in corpus (32)
- Atmospheric Escape from Hot Jupiters
- Growth Model Interpretation of Planet Size Distribution
- A giant comet-like cloud of hydrogen escaping the warm Neptune-mass exoplanet GJ 436b
- Density, not radius, separates rocky and water-rich small planets orbiting M dwarf stars
- Lyman- Transit Spectroscopy and the Neutral Hydrogen Tail of the Hot Neptune GJ436b
- Energetic neutral atoms as the explanation for the high velocity hydrogen around HD 209458b
- Magnetic moment and plasma environment of HD 209458b as determined from Ly observations
- 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
- The long egress of GJ~436b's giant exosphere
- Confirmation of WASP-107b's extended Helium atmosphere with Keck II/NIRSPEC
- Three-fluid plasmas in star formation II. Momentum transfer rate coefficients
- The Exoplanet Radius Valley from Gas-driven Planet Migration and Breaking of Resonant Chains
- Detection of Atmospheric Escape from Four Young Mini Neptunes
- p-winds: an open-source Python code to model planetary outflows and upper atmospheres
- Signatures of Strong Magnetization and Metal-Poor Atmosphere for a Neptune-Size Exoplanet
- Global 3D hydrodynamic modeling of in-transit Lyα absorption of GJ436b
- No hydrogen exosphere detected around the super-Earth HD97658 b
- Is pi Men c's atmosphere hydrogen-dominated? Insights from a non-detecton of Hy Ly-alpha absorption
- Effects of the stellar wind on the Ly-alpha transit of close-in planets
- The Effects of Magnetic Fields on Observational Signatures of Atmospheric Escape in Exoplanets: Double Tail Structures
- The high-energy environment and atmospheric escape of the mini-Neptune K2-18 b
- The polar orbit of the warm Neptune GJ436b seen with VLT/ESPRESSO
- GJ 436b and the stellar wind interaction: simulations constraints using Ly and H transits
- Using helium 10830 Å transits to constrain planetary magnetic fields
- Aiolos- A multi-purpose 1-D hydrodynamics code for planetary atmospheres
- Global 3D hydrodynamic modeling of absorption in Lyα and He 10830 A lines at transits of GJ3470b
- A Lyman-alpha transit left undetected: the environment and atmospheric behavior of K2-25b
- The Variable Detection of Atmospheric Escape around the young, Hot Neptune AU Mic b
- Testing Lyman alpha emission line reconstruction routines at multiple velocities in one system
- Empirical relations between the intensities of Lyman lines of H and He
- Effects of Charge Exchange on the Evaporative Wind of HD 209458b
Cited by in corpus (4)
- Blowin' in the non-isothermal wind: core-powered mass loss with hydrodynamic radiative transfer
- Characterizing the bolometric-photoevaporative transition in young sub-Neptunes with radiation-hydrodynamic simulations
- Analytical modeling of helium absorption signals of isothermal atmospheric escape
- Using observations of escaping H/He to constrain the atmospheric composition of sub-Neptunes