The surface magnetic field and chemical abundance distributions of the B2V helium-strong star HD184927
arXiv:1411.5789 · doi:10.1093/mnras/stu2401
Abstract
A new time series of high-resolution Stokes I and V spectra of the magnetic B2V star HD 184927 has been obtained in the context of the Magnetism in Massive Stars (MiMeS) Large Program with the ESPaDOnS spectropolarimeter at the Canada-France-Hawaii Telescope and dimaPol liquid crystal spectropolarimeter at 1.8-m telescope of Dominion Astrophysical Observatory. We model the optical and UV spectrum obtained from the IUE archive to infer the stellar physical parameters. Using magnetic field measurements we derive an improved rotational period of 9.53102+-0.0007d. We infer the longitudinal magnetic field from lines of H, He and various metals, revealing large differences between the apparent field strength variations determined from different elements. Magnetic Doppler Imaging using He and O lines yields strongly nonuniform surface distributions of these elements. We demonstrate that the diversity of longitudinal field variations can be understood as due to the combination of element-specific surface abundance distributions in combination with a surface magnetic field that is comprised of dipolar and quadrupolar components. We have reanalyzed IUE high resolution spectra, confirming strong modulation of wind-sensitive Civ and Siv resonance lines. However, we are unable to detect any modulation of the H profile attributable to a stellar magnetosphere. We conclude that HD 184927 hosts a centrifugal magnetosphere, albeit one that is undetectable at optical wavelengths. The magnetic braking timescale of HD 184927 is computed to be or Myr. These values are consistent with the slow rotation and estimated age of the star.
23 pages, 21 figures. Accepted for publication in MNRAS
References in corpus (8)
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- The surprising magnetic topology of tauSco: fossil remnant or dynamo output?
- 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
- Searching for links between magnetic fields and stellar evolution. I. A survey of magnetic fields in open cluster A- and B-type stars with FORS1
- Electron-impact excitation of neutral oxygen
- Exploring the photometric signatures of magnetospheres around Helium-strong stars
- Discovery of Two Rare Rigidly-Rotating Magnetosphere Stars in the APOGEE Survey
Cited by in corpus (15)
- The Magnetic Early B-type Stars I: Magnetometry and Rotation
- MOBSTER -- VI. The crucial influence of rotation on the radio magnetospheres of hot stars
- Magnetic OB[A] Stars with TESS: probing their Evolutionary and Rotational properties (MOBSTER) - I. First-light observations of known magnetic B and A stars
- The Magnetic Early B-type Stars IV: Breakout or Leakage? H emission as a diagnostic of plasma transport in centrifugal magnetospheres
- Doppler imaging of chemical spots on magnetic Ap/Bp stars. Numerical tests and assessment of systematic errors
- The Magnetic Early B-type Stars II: stellar atmospheric parameters in the era of Gaia
- The magnetic field and spectral variability of the He-weak star HR 2949
- Mixed poloidal-toroidal magnetic configuration and surface abundance distributions of the Bp star 36 Lyn
- The accelerating rotation of the magnetic He-weak star HD 142990
- New observations of NGC 1624-2 reveal a complex magnetospheric structure and underlying surface magnetic geometry
- Testing a scaling relation between coherent radio emission and physical parameters of hot magnetic stars
- Detection of an extremely strong magnetic field in the double-degenerate binary merger product HD 144941
- Magnetic field geometry and chemical abundance distribution of the He-strong star CPD -57 3509
- Photometric signatures of corotating magnetospheres of hot stars governed by higher-order magnetic multipoles
- Ultraviolet Spectropolarimetric Diagnostics of Hot Star Magnetospheres