Discovery and origin of the radio emission from the multiple stellar system KQVel
arXiv:2207.14075 · doi:10.1093/mnras/stac2163
Abstract
KQVel is a binary system composed of a slowly rotating magnetic Ap star with a companion of unknown nature. In this paper, we report the detection of its radio emission. We conducted a multi-frequency radio campaign using the ATCA interferometer (band-names: 16cm, 4cm, and 15mm). The target was detected in all bands. The most obvious explanation for the radio emission is that it originates in the magnetosphere of the Ap star, but this is shown unfeasible. The known stellar parameters of the Ap star enable us to exploit the scaling relationship for non-thermal gyro-synchrotron emission from early-type magnetic stars. This is a general relation demonstrating how radio emission from stars with centrifugal magnetospheres is supported by rotation. Using KQVel's parameters the predicted radio luminosity is more than five orders of magnitudes lower than the measured one. The extremely long rotation period rules out the Ap star as the source of the observed radio emission. Other possible explanations for the radio emission from KQVel, involving its unknown companion, have been explored. A scenario that matches the observed features (i.e. radio luminosity and spectrum, correlation to X-rays) is a hierarchical stellar system, where the possible companion of the magnetic star is a close binary (possibly of RSCVn type) with at least one magnetically active late-type star. To be compatible with the total mass of the system, the last scenario places strong constraints on the orbital inclination of the KQVel stellar system.
Accepted to MNRAS; 16 pages, 9 figures
References in corpus (33)
- Gaia Data Release 3: Summary of the content and survey properties
- Estimating distances from parallaxes. V: Geometric and photogeometric distances to 1.47 billion stars in Gaia Early Data Release 3
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: II. The Effects of Field-Aligned Rotation
- Evolutionary state of magnetic chemically peculiar stars
- Magnetic massive stars as progenitors of "heavy" stellar-mass black holes
- Magnetic field topology of the unique chemically peculiar star CU Virginis
- X-rays from Magnetically Confined Wind Shocks: Effect of Cooling-Regulated Shock Retreat
- The effects of surface fossil magnetic fields on massive star evolution: I. Magnetic field evolution, mass-loss quenching and magnetic braking
- The light variability of the helium strong star HD 37776 as a result of its inhomogeneous elemental surface distribution
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- The Magnetic Early B-type Stars IV: Breakout or Leakage? H emission as a diagnostic of plasma transport in centrifugal magnetospheres
- The effects of surface fossil magnetic fields on massive star evolution: II. Implementation of magnetic braking in MESA and implications for the evolution of surface rotation in OB stars
- Stellar magnetosphere reconstruction from radio data. Multi-frequency VLA observations and 3D-simulations of CU Virginis
- A scaling relationship for non-thermal radio emission from ordered magnetospheres: from the top of the Main Sequence to planets
- A Catalog of Stellar Unified Properties (CATSUP) for 951 FGK-Stars Within 30 pc
- The detection of variable radio emission from the fast rotating magnetic hot B-star HR7355 and evidence for its X-ray aurorae
- Exploring the photometric signatures of magnetospheres around Helium-strong stars
- On the consistency of magnetic field measurements of Ap stars: lessons learned from the FORS1 archive
- How the breakout-limited mass in B-star centrifugal magnetospheres controls their circumstellar H-alpha emission
- Centrifugal breakout reconnection as the electron acceleration mechanism powering the radio magnetospheres of early-type stars
- The Magnetic Early B-type Stars II: stellar atmospheric parameters in the era of Gaia
- Discovery of electron cyclotron MASER emission from the magnetic Bp star HD 133880 with the Giant Metrewave Radio Telescope
- Coherent radio emission from a population of RS Canum Venaticorum systems
- Detection of coherent emission from the Bp star HD 142990 at uGMRT frequencies
- Peculiar radioX-ray relationship in active stars
- The auroral radio emission of the magnetic B-type star rho OphC
- Radio continuum properties of young planetary nebulae
- ATCA observations of the very young Planetary Nebula SAO 244567
- A Comprehensive Analysis of the Magnetic Standard Star HD 94660: Host of a Massive Compact Companion?
- Photometric signatures of corotating magnetospheres of hot stars governed by higher-order magnetic multipoles
- Electron Scattering Emission in the Light Curves of Stars with Centrifugal Magnetospheres
- The near-infrared companion to HD94660 (=KQ Vel)
- Chandra's X-ray study confirms that the magnetic standard Ap star KQ Vel hosts a neutron star companion
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