Characterisation of the HD219134 multi-planet system II. Stellar-wind sputtered exospheres in rocky planets b & c
arXiv:1808.00404 · doi:10.1093/mnras/sty2130
Abstract
We present a 3D study of the formation of refractory-rich exospheres around the rocky planets HD219134b and c. These exospheres are formed by surface particles that have been sputtered by the wind of the host star. The stellar wind properties are derived from magnetohydrodynamic simulations, which are driven by observationally-derived stellar magnetic field maps, and constrained by Ly-alpha observations of wind mass-loss rates, making this one of the most well constrained model of winds of low-mass stars. The proximity of the planets to their host star implies a high flux of incident stellar wind particles, thus the sputtering process is sufficiently effective to build up relatively dense, refractory-rich exospheres. The sputtering releases refractory elements from the entire dayside surfaces of the planets, with elements such as O and Mg creating an extended neutral exosphere with densities larger than 10/cm3, extending to several planetary radii. For planet b, the column density of OI along the line of sight reaches 10^{13}/cm2, with the highest values found ahead of its orbital motion. This asymmetry would create asymmetric transit profiles. To assess its observability, we use a ray tracing technique to compute the expected transit depth of the OI exosphere of planet b. We find that the transit depth in the OI 1302.2A line is 0.042%, which is a small increase relative to the continuum transit (0.036%). This implies that the sputtered exosphere of HD219134b is unlikely to be detectable with our current UV instruments.
Accepted to MNRAS. This paper is the second of a pair. Paper I: Folsom et al "Characterisation of the HD219134 multi-planet system I: Observations of stellar magnetism, wind, and high-energy flux"
References in corpus (9)
- The Extreme Ultraviolet and X-Ray Sun in Time: High-Energy Evolutionary Tracks of a Solar-Like Star
- A New Window into Escaping Exoplanet Atmospheres: 10830 Å Line of Helium
- Ranges of Atmospheric Mass and Composition of Super Earth Exoplanets
- Chemistry of Silicate Atmospheres of Evaporating Super-Earths
- Early UV Ingress in WASP-12b: Measuring Planetary Magnetic Fields
- On the environment surrounding close-in exoplanets
- Hubble Space Telescope detection of oxygen in the atmosphere of exoplanet HD189733b
- Two massive rocky planets transiting a K-dwarf 6.5 parsecs away
- Magnetised winds and their influence in the escaping upper atmosphere of HD 209458b
Cited by in corpus (29)
- A grid of upper atmosphere models for 1--40 MEARTH planets: application to CoRoT-7 b and HD219134 b,c
- The evolution of the solar wind
- Morphology of Hydrodynamic Winds: A Study of Planetary Winds in Stellar Environments
- Stellar wind effects on the atmospheres of close-in giants: a possible reduction in escape instead of increased erosion
- The impact of coronal mass ejections and flares on the atmosphere of the hot Jupiter HD189733b
- Evolution of atmospheric escape in close-in giant planets and their associated Ly and H transit predictions
- Effects of the stellar wind on the Ly-alpha transit of close-in planets
- The young HD 73583 (TOI-560) planetary system: Two 10-M mini-Neptunes transiting a 500-Myr-old, bright, and active K dwarf
- Ca II H&K stellar activity parameter: a proxy for stellar Extreme Ultraviolet Fluxes
- Characterisation of the HD 219134 multi-planet system I. Observations of stellar magnetism, wind, and high-energy flux
- The GAPS Programme at TNG. XXXII. The revealing non-detection of metastable HeI in the atmosphere of the hot Jupiter WASP-80b
- The PEPSI Exoplanet Transit Survey (PETS) I: Investigating the presence of a silicate atmosphere on the super-Earth 55 Cnc e
- A multi-wavelength look at the GJ 9827 system -- No evidence of extended atmospheres in GJ 9827 b and d from HST and CARMENES data
- The HD 137496 system: A dense, hot super-Mercury and a cold Jupiter
- An ablating super-Earth in an eccentric binary from the Dispersed Matter Planet Project
- Catalogue of exoplanets accessible in reflected starlight to the Nancy Grace Roman Space Telescope. A population study and prospects for phase-curve measurements
- Influence of the Sun-like magnetic cycle on exoplanetary atmospheric escape
- Determination of small-scale magnetic fields on Sun-like stars in the near-infrared using CRIRES
- The Exosphere as a Boundary: Origin and Evolution of Airless Bodies in the Inner Solar System and Beyond Including Planets with Silicate Atmospheres
- Probing Kepler's hottest small planets via homogeneous search and analysis of optical secondary eclipses and phase variations
- The Space Environment and Atmospheric Joule Heating of the Habitable Zone Exoplanet TOI700-d
- A compact multi-planet system around a bright nearby star from the Dispersed Matter Planet Project
- Evolution of helium triplet transits of close-in gas giants orbiting K-dwarfs
- Atmospheric escape in hot Jupiters under sub-Alfvénic interactions
- Star-Planet Interactions: A Computational View
- Different types of star-planet interactions
- Observability of ultraviolet N I lines in the atmosphere of transiting Earth-like planets
- Evolution of Earth-like extended exospheres orbiting solar-like stars
- Atmospheric mass loss and stellar wind effects in young and old systems I: comparative 3D study of TOI-942 and TOI-421 systems