Stellar magnetic field parameters from a Bayesian analysis of high-resolution spectropolarimetric observations
arXiv:1111.1240 · doi:10.1111/j.1365-2966.2011.20091.x
Abstract
In this paper we describe a Bayesian statistical method designed to infer the magnetic properties of stars observed using high-resolution circular spectropolarimetry in the context of large surveys. This approach is well suited for analysing stars for which the stellar rotation period is not known, and therefore the rotational phases of the observations are ambiguous. The model assumes that the magnetic observations correspond to a dipole oblique rotator, a situation commonly encountered in intermediate and high-mass stars. Using reasonable assumptions regarding the model parameter prior probability density distributions, the Bayesian algorithm determines the posterior probability densities corresponding to the surface magnetic field geometry and strength by performing a comparison between the observed and computed Stokes V profiles. Based on the results of numerical simulations, we conclude that this method yields a useful estimate of the surface dipole field strength based on a small number (i.e. 1 or 2) of observations. On the other hand, the method provides only weak constraints on the dipole geometry. The odds ratio, a parameter computed by the algorithm that quantifies the relative appropriateness of the magnetic dipole model versus the non-magnetic model, provides a more sensitive diagnostic of the presence of weak magnetic signals embedded in noise than traditional techniques. To illustrate the application of the technique to real data, we analyse seven ESPaDOnS and Narval observations of the early B-type magnetic star LP Ori. Insufficient information is available to determine the rotational period of the star and therefore the phase of the data; hence traditional modelling techniques fail to infer the dipole strength. In contrast, the Bayesian method allows a robust determination of the dipole polar strength, G.
Accepted for publication in Monthly Notices of the Royal Astronomical Society
References in corpus (10)
- A Grid of NLTE Line-Blanketed Model Atmospheres of Early B-type Stars
- 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: III. Angular Momentum Loss and Rotational Spindown
- The VLT-FLAMES survey of massive stars: atmospheric parameters and rotational velocity distributions for B-type stars in the Magellanic Clouds
- 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
- Confirmation of the magnetic oblique rotator model for the Of?p star HD 191612
- Discovery of two magnetic massive stars in the Orion Nebula Cluster: a clue to the origin of neutron star magnetic fields?
- Bayesian Magnetohydrodynamic Seismology of Coronal Loops
- Application of Bayesian model inadequacy criterion for multiple data sets to radial velocity models of exoplanet systems
- Bayesian inference of solar and stellar magnetic fields in the weak-field approximation
Cited by in corpus (34)
- A Magnetic Confinement vs. Rotation Classification of Massive-Star Magnetospheres
- The MiMeS Survey of Magnetism in Massive Stars: Introduction and overview
- BONNSAI: a Bayesian tool for comparing stars with stellar evolution models
- The Magnetic Early B-type Stars I: Magnetometry and Rotation
- Investigating the spectroscopic, magnetic and circumstellar variability of the O9 subgiant star HD 57682
- Detection of magnetic fields in both B-type components of the Lupi system: a new constraint on the origin of fossil fields?
- Rotation, spectral variability, magnetic geometry and magnetosphere of the Of?p star CPD -28 2561
- The MiMeS survey of Magnetism in Massive Stars: Magnetic properties of the O-type star population
- Are there tangled magnetic fields on HgMn stars?
- The Magnetic Early B-type Stars II: stellar atmospheric parameters in the era of Gaia
- HD 156324: a tidally locked magnetic triple spectroscopic binary with a disrupted magnetosphere
- HD66051: the first eclipsing binary hosting an early-type magnetic star
- V444 Cyg X-ray and polarimetric variability: Radiative and Coriolis forces shape the wind collision region
- Investigating the origin of cyclical wind variability in hot, massive stars - I. On the dipolar magnetic field hypothesis
- The magnetic field and spectral variability of the He-weak star HR 2949
- Detectability of small-scale magnetic fields in early-type stars
- The magnetic characteristics of Galactic OB stars from the MiMeS survey of magnetism in massive stars
- The pulsating magnetosphere of the extremely slowly rotating magnetic Cep star CMa
- Diagnostic of stellar magnetic fields with cumulative circular polarisation profiles
- NU Ori: a hierarchical triple system with a strongly magnetic B-type star
- MOBSTER -- III. HD 62658: a magnetic Bp star in an eclipsing binary with a non-magnetic 'identical twin'
- A search for strong magnetic fields in massive and very massive stars in the Magellanic Clouds
- An Observational Evaluation of Magnetic Confinement in the Winds of BA Supergiants
- A search for weak or complex magnetic fields in the the B3V star iota Herculis
- NGC 6611 601: A hot pre-main sequence spectroscopic binary containing a centrifugal magnetosphere host star
- The Puzzling Story of Flare Inactive Ultra Fast Rotating M dwarfs. I. Exploring their Magnetic Fields
- MOBSTER -- IV. Detection of a new magnetic B-type star from follow-up spectropolarimetric observations of photometrically selected candidates
- Analysis of eight magnetic chemically peculiar stars with rotational modulation
- Analytical calculation of Stokes profiles of rotating stellar magnetic dipole
- Spectroscopic and Photometric Behaviour of LP Ori
- Investigating the origin of cyclical spectral variations in hot, massive stars
- Magnetic fields and internal mixing of main sequence B stars
- Modeling surface magnetic fields in stars with radiative envelopes
- Probabilistic Zeeman-Doppler imaging of stellar magnetic fields: I. Analysis of tau Scorpii in the weak-field limit