Centrifugal breakout reconnection as the electron acceleration mechanism powering the radio magnetospheres of early-type stars
arXiv:2202.05449 · doi:10.1093/mnras/stac341
Abstract
Magnetic B-stars often exhibit circularly polarized radio emission thought to arise from gyrosynchrotron emission by energetic electrons trapped in the circumstellar magnetosphere. Recent empirical analyses show that the onset and strength of the observed radio emission scale with both the magnetic field strength and the stellar rotation rate. This challenges the existing paradigm that the energetic electrons are accelerated in the current sheet between opposite-polarity field lines in the outer regions of magnetised stellar winds, which includes no role for stellar rotation. Building on recent success in explaining a similar rotation-field dependence of H line emission in terms of a model in which magnetospheric density is regulated by centrifugal breakout (CBO), we examine here the potential role of the associated CBO-driven magnetic reconnection in accelerating the electrons that emit the observed gyrosynchrotron radio. We show in particular that the theoretical scalings for energy production by CBO reconnection match well the empirical trends for observed radio luminosity, with a suitably small, nearly constant conversion efficiency . We summarize the distinct advantages of our CBO scalings over previous associations with an electromotive force, and discuss the potential implications of CBO processes for X-rays and other observed characteristics of rotating magnetic B-stars with centrifugal magnetospheres.
11 pages, 6 pages, accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (15)
- Weak magnetic fields in Ap/Bp stars: Evidence for a dipole field lower limit and a tentative interpretation of the magnetic dichotomy
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: II. The Effects of Field-Aligned Rotation
- Dynamical Simulations of Magnetically Channeled Line-Driven Stellar Winds: III. Angular Momentum Loss and Rotational Spindown
- The MiMeS survey of magnetism in massive stars: Magnetic analysis of the O-type stars
- Evolutionary state of magnetic chemically peculiar stars
- Searching for links between magnetic fields and stellar evolution III. Measurement of magnetic fields in open cluster Ap stars with ESPaDOnS
- X-rays from Magnetically Confined Wind Shocks: Effect of Cooling-Regulated Shock Retreat
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- 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
- A scaling relationship for non-thermal radio emission from ordered magnetospheres: from the top of the Main Sequence to planets
- Evidence of magnetic field decay in massive main-sequence stars
- Mixed poloidal-toroidal magnetic configuration and surface abundance distributions of the Bp star 36 Lyn
- Magnetic inhibition of convection in O star envelopes
- Diffusion-plus-drift models for the mass leakage from centrifugal magnetospheres of magnetic hot-stars
- The magnetic Bp star 36 Lyncis, II. A spectroscopic analysis of its co-rotating disk
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