Hunting for exoplanets via magnetic star-planet interactions: geometrical considerations for radio emission
arXiv:2307.02555 · doi:10.1093/mnras/stad2035
Abstract
Recent low-frequency radio observations suggest that some nearby M dwarfs could be interacting magnetically with undetected close-in planets, powering the emission via the electron cyclotron maser (ECM) instability. Confirmation of such a scenario could reveal the presence of close-in planets around M dwarfs, which are typically difficult to detect via other methods. ECM emission is beamed, and is generally only visible for brief windows depending on the underlying system geometry. Due to this, detection may be favoured at certain orbital phases, or from systems with specific geometric configurations. In this work, we develop a geometric model to explore these two ideas. Our model produces the visibility of the induced emission as a function of time, based on a set of key parameters that characterise magnetic star-planet interactions. Utilising our model, we find that the orbital phases where emission appears are highly dependent on the underlying parameters, and does not generally appear at the quadrature points in the orbit as is seen for the Jupiter-Io interaction. Then using non-informative priors on the system geometry, we show that untargeted radio surveys are biased towards detecting emission from systems with planets in near face-on orbits. While transiting exoplanets are still likely to be detectable, they are less likely to be seen than those in near face-on orbits. Our forward model serves to be a powerful tool for both interpreting and appropriately scheduling radio observations of exoplanetary systems, as well as inverting the system geometry from observations.
19 pages, 16 figures. Accepted for publication in MNRAS
References in corpus (31)
- Array Programming with NumPy
- Large-scale magnetic topologies of late M dwarfs
- Astrometric exoplanet detection with Gaia
- Large-scale magnetic topologies of early M dwarfs
- The New Generation Planetary Population Synthesis (NGPPS). IV. Planetary systems around low-mass stars
- The CARMENES search for exoplanets around M dwarfs: Different roads to radii and masses of the target stars
- The Solar Neighborhood XLV. The Stellar Multiplicity Rate of M Dwarfs Within 25 pc
- Magnetic fields of M dwarfs
- Strong dipole magnetic fields in fast rotating fully convective stars
- The CARMENES search for exoplanets around M dwarfs. Guaranteed time observations Data Release 1 (2016-2020)
- The population of M dwarfs observed at low radio frequencies
- The Warm Neptune GJ 3470b has a Polar Orbit
- Planet-induced radio emission from the coronae of M dwarfs: the case of Prox Cen and AU Mic
- Direct discovery of the inner exoplanet in the HD206893 system. Evidence for deuterium burning in a planetary-mass companion
- Monitoring the radio emission of Proxima Centauri
- Coherent radio bursts from known M-dwarf planet host YZ Ceti
- RV-detected planets around M dwarfs: Challenges for core accretion models
- One year of AU Mic with HARPS: II -- stellar activity and star-planet interaction
- Evaluating Rotation Periods of M Dwarfs Across the Ages
- Rapid destruction of protoplanetary discs due to externalphotoevaporation in star-forming regions
- Bridging the gap -- the disappearance of the intermediate period gap for fully convective stars, uncovered by new ZTF rotation periods
- MOVES II. Tuning in to the radio environment of HD189733b
- Centrifugal breakout reconnection as the electron acceleration mechanism powering the radio magnetospheres of early-type stars
- Joint Constraints on Exoplanetary Orbits from Gaia DR3 and Doppler Data
- Diagnosing large-scale stellar magnetic fields using PCA on spectropolarimetric data
- The CARMENES search for exoplanets around M dwarfs. A long-period planet around GJ 1151 measured with CARMENES and HARPS-N data
- Radio masers on WX UMa: hints of a Neptune-sized planet, or magnetospheric reconnection?
- Investigating ionospheric calibration for LOFAR 2.0 with simulated observations
- Determining the beaming of Io decametric emissions : a remote diagnostic to probe the Io-Jupiter interaction
- 3D orbital architecture of a dwarf binary system and its planetary companion
- Star-Planet Interaction at radio wavelengths in YZ Ceti: Inferring planetary magnetic field
Cited by in corpus (12)
- Radio Burst from a Stellar Coronal Mass Ejection
- Magnetic Field Evolution of Hot Exoplanets
- Star-Planet Interactions: A Computational View
- Unravelling sub-stellar magnetospheres
- Catching the wisps: Stellar mass-loss limits from low-frequency radio observations
- Atmospheric heating and magnetism driven by Ne distillation in isolated white dwarfs
- Searching for star-planet interactions in GJ 486 at radio wavelengths with the uGMRT
- An improved algorithm for separating clock delays from ionospheric effects in radio astronomy
- Radio prospects of extrasolar aurorae polaris as a probe of planetary magnetism
- Observability of radio reflections from exoplanet ionospheres with next generation radio telescopes
- Upper Limits on Planet-Induced GHz Radio Emission from Inactive M Dwarfs
- Spectroscopic Characterization of LOFAR Radio-emitting M dwarfs