Upper Limits on Planet-Induced GHz Radio Emission from Inactive M Dwarfs
arXiv:2606.19671 · doi:10.3847/1538-4357/ae6b80
Abstract
Nearby short-period exoplanet systems may produce detectable stellar radio emission due to sub-Alfvénic star-planet interaction (SPI), but there are no confirmed cases yet. We targeted five slowly-rotating M dwarfs with transiting terrestrial planets, observing at GHz frequencies throughout their sub-day orbital periods. We did not detect any bursty SPI-like emission, but detected two stars in quiescence: LHS 3844 (unpolarized) and LHS 1678 (circularly polarized). These detections imply persistent magnetic activity at Gyr ages, especially notable for LHS 1678 given its low photometric variability, and can serve as targets for radio transit experiments. Our SPI non-detections may be due to radio beaming geometry, a sub-GHz maximum emission frequency, or undetectable flux density. If the last case applies, then flux density upper limits constrain the exoplanet magnetosphere. GJ 367 b has the tightest constraints -- no extended magnetosphere and an exoplanet field <0.8 G -- although these results depend strongly on unknown stellar wind parameters inferred from stellar rotation period. Due to their small orbital distance, our non-detection systems a priori appear to have more favorable conditions for SPI than most radio-detected SPI candidate systems in the literature, a tension that can either be resolved by favorable wind/geometry conditions on the detected candidates or by a non-SPI (stellar activity) explanation for those candidate detections. Our results favor the approach of sub-GHz searches for radio SPI, especially with the sensitivity of new/upcoming facilities such as MeerKAT, and underscore the need for observational and theoretical work to constrain the magnetized stellar wind parameters.
Accepted to ApJ
References in corpus (37)
- The Astropy Project: Sustaining and Growing a Community-oriented Open-source Project and the Latest Major Release (v5.0) of the Core Package
- A terrestrial planet candidate in a temperate orbit around Proxima Centauri
- Stellar magnetism: empirical trends with age and rotation
- Magnetism, rotation, and nonthermal emission in cool stars -- Average magnetic field measurements in 292 M dwarfs
- New Observational Constraints on the Winds of M Dwarf Stars
- Magnetic field strengths of hot Jupiters from signals of star-planet interactions
- On the magnetic topology of partially and fully convective stars
- Stellar Winds on the Main-Sequence I: Wind Model
- Planet-induced radio emission from the coronae of M dwarfs: the case of Prox Cen and AU Mic
- Flare Rates, Rotation Periods. and Spectroscopic Activity Indicators of a Volume-Complete Sample of Mid-to-Late M dwarfs within 15 Parsecs
- GJ 367b: A dense ultra-short period sub-Earth planet transiting a nearby red dwarf star
- Monitoring the radio emission of Proxima Centauri
- GJ 1252b: A Hot Terrestrial Super-Earth With No Atmosphere
- Coherent radio bursts from known M-dwarf planet host YZ Ceti
- GJ 367b is a dark, hot, airless sub-Earth
- The large-scale magnetic field of Proxima Centauri near activity maximum
- A detailed analysis of the Gl 486 planetary system
- GJ 1252 b: A 1.2 planet transiting an M3-dwarf at 20.4 pc
- The Detectability of Rocky Planet Surface and Atmosphere Composition with JWST: The Case of LHS 3844b
- Optical Transmission Spectroscopy of the Terrestrial Exoplanet LHS 3844b from 13 Ground-Based Transit Observations
- A Volatile-Poor Formation of LHS 3844b based on its Lack of Significant Atmosphere
- Hemispheric Tectonics on super-Earth LHS 3844b
- Hunting for exoplanets via magnetic star-planet interactions: geometrical considerations for radio emission
- The TESS View of LOFAR Radio-Emitting Stars
- The high-energy spectrum of the nearby planet-hosting inactive mid-M dwarf LHS 3844
- Coronal X-Ray Emission from Nearby, Low-Mass, Exoplanet Host Stars Observed by the MUSCLES and Mega-MUSCLES HST Treasury Survey Projects
- Follow-up LOFAR observations of the Boötis exoplanetary system
- The LHS 1678 System: Two Earth-Sized Transiting Planets and an Astrometric Companion Orbiting an M Dwarf Near the Convective Boundary at 20 pc
- High-energy spectra of LTT 1445A and GJ 486 reveal flares and activity
- Magnetized winds of M-type stars and star-planet magnetic interactions: uncertainties and modeling strategy
- Exoplanet Radio Transits as a Probe for Exoplanetary Magnetic Fields -- Time-dependent MHD Simulations
- The Solar Neighborhood LI: A Variability Survey of Nearby M Dwarfs with Planets from Months to Decades with TESS and the CTIO/SMARTS 0.9 m Telescope
- Location and energy of electrons producing the radio bursts from AD Leo observed by FAST in December 2021
- Validation of a Third Planet in the LHS 1678 System
- The high-energy environment of the heavy sub-Earth GJ 367 b indicates likely complete evaporation of its atmosphere
- Searching for star-planet interactions in GJ 486 at radio wavelengths with the uGMRT
- A circularly polarized low-frequency radio burst from the exoplanetary system HD 189733