3D MHD simulations and synthetic radio emission from an oblique rotating magnetic massive star
arXiv:1907.07068 · doi:10.1093/mnras/stz1982
Abstract
We have performed 3D isothermal MHD simulation of a magnetic rotating massive star with a non-zero dipole obliquity and predicted the radio/sub-mm observable lightcurves and continuum spectra for a frequency range compatible with ALMA. From these results we also compare the model input mass-loss to that calculated from the synthetic thermal emission. Spherical and cylindrical symmetry is broken due to the obliquity of the stellar magnetic dipole resulting in an inclination and phase dependence of both the spectral flux and inferred mass-loss rate, providing testable predictions of variability for oblique rotator. Both quantities vary by factors between 2 and 3 over a full rotational period of the star, demonstrating that the role of rotation as critical in understanding the emission. This illustrates the divergence from a symmetric wind, resulting in a two armed spiral structure indicative of a oblique magnetic rotator. We show that a constant spectral index, , model agrees well with our numerical prediction for a spherical wind for , however it is unable to capture the behavior of emission at . As such we caution the use of such constant models for predicting emission from non-spherical winds such as those which form around magnetic massive stars.
19 pages, 14 figures
References in corpus (13)
- PLUTO: a Numerical Code for Computational Astrophysics
- 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
- Accurate determination of the free-free Gaunt factor; I - non-relativistic Gaunt factors
- A Rigid-Field Hydrodynamics approach to modeling the magnetospheres of massive stars
- BRITE-Constellation high-precision time-dependent photometry of the early-O-type supergiant Puppis unveils the photospheric drivers of its small- and large-scale wind structures
- An `Analytic Dynamical Magnetosphere' formalism for X-ray and optical emission from slowly rotating magnetic massive stars
- MOVES II. Tuning in to the radio environment of HD189733b
- The BinaMIcS project: understanding the origin of magnetic fields in massive stars through close binary systems
- Characterizing the turbulent porosity of stellar-wind structure generated by the line-deshadowing instability
- A JVLA survey of the high frequency radio emission of the massive magnetic B- and O-type stars
- A combined HST and XMM-Newton campaign for the magnetic O9.7 V star HD 54879: towards constraining the weak-wind problem of massive stars
- Sub-mm free-free emission from the winds of massive stars in the age of ALMA
Cited by in corpus (5)
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- A scaling relationship for non-thermal radio emission from ordered magnetospheres: from the top of the Main Sequence to planets
- PION: Simulating bow shocks and circumstellar nebulae
- 3D MHD models of the centrifugal magnetosphere from a massive star with an oblique dipole field
- Modeling Magnetically Channeled Winds in 3D: I. Isothermal Simulations of a Magnetic O Supergiant