Multisite spectroscopic seismic study of the beta Cep star V2052 Oph: inhibition of mixing by its magnetic field
arXiv:1208.4250 · doi:10.1111/j.1365-2966.2012.21933.x
Abstract
We used extensive ground-based multisite and archival spectroscopy to derive observational constraints for a seismic modelling of the magnetic beta Cep star V2052 Ophiuchi. The line-profile variability is dominated by a radial mode (f_1=7.14846 d^{-1}) and by rotational modulation (P_rot=3.638833 d). Two non-radial low-amplitude modes (f_2=7.75603 d^{-1} and f_3=6.82308 d^{-1}) are also detected. The four periodicities that we found are the same as the ones discovered from a companion multisite photometric campaign (Handler et al. 2012) and known in the literature. Using the photometric constraints on the degrees l of the pulsation modes, we show that both f_2 and f_3 are prograde modes with (l,m)=(4,2) or (4,3). These results allowed us to deduce ranges for the mass (M \in [8.2,9.6] M_o) and central hydrogen abundance (X_c \in [0.25,0.32]) of V2052 Oph, to identify the radial orders n_1=1, n_2=-3 and n_3=-2, and to derive an equatorial rotation velocity v_eq \in [71,75] km s^{-1}. The model parameters are in full agreement with the effective temperature and surface gravity deduced from spectroscopy. Only models with no or mild core overshooting (alpha_ov \in [0,0.15] local pressure scale heights) can account for the observed properties. Such a low overshooting is opposite to our previous modelling results for the non-magnetic beta Cep star theta Oph having very similar parameters, except for a slower surface rotation rate. We discuss whether this result can be explained by the presence of a magnetic field in V2052 Oph that inhibits mixing in its interior.
12 pages, 6 figures and 5 tables; accepted for publication in MNRAS on 2012 August 15
References in corpus (16)
- CLES, Code Liegeois d'Evolution Stellaire
- Acoustic oscillations of rapidly rotating polytropic stars. II. Effects of the Coriolis and centrifugal accelerations
- An asteroseismic study of the beta Cephei star theta Ophiuchi: constraints on global stellar parameters and core overshooting
- On non-axisymmetric magnetic equilibria in stars
- The Liege Oscillation Code
- Abundance analysis of prime B-type targets for asteroseismology I. Nitrogen excess in slowly-rotating beta Cephei stars
- Discovery of magnetic fields in the beta Cephei star xi^1 CMa and in several Slowly Pulsating B stars
- Gravito-inertial and pressure modes detected in the B3 IV CoRoT target HD 43317
- Hydrogen and helium line formation in OB dwarfs and giants. A hybrid non-LTE approach
- The two hybrid B-type pulsators: Nu Eridani and 12 Lacertae
- Gravity modes in rapidly rotating stars. Limits of perturbative methods
- A new method for the spectroscopic identification of stellar non-radial pulsation modes. I. The method and numerical tests
- An asteroseismic study of the beta Cephei star beta Canis Majoris
- The neon content of nearby B-type stars and its implications for the solar model problem
- Discovery of the new slowly pulsating B star HD 163830 (B5II/III) from MOST spacebased photometry
- Angular momentum transport by internal gravity waves III - Wave excitation by core convection and the Coriolis effect
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- Forward asteroseismic modeling of stars with a convective core from gravity-mode oscillations: parameter estimation and stellar model selection
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- The surface nitrogen abundance of a massive star in relation to its oscillations, rotation, and magnetic field
- The effects of surface fossil magnetic fields on massive star evolution: I. Magnetic field evolution, mass-loss quenching and magnetic braking
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- Magnetic OB[A] Stars with TESS: probing their Evolutionary and Rotational properties (MOBSTER) - I. First-light observations of known magnetic B and A stars
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- The MiMeS survey of Magnetism in Massive Stars: Magnetic properties of the O-type star population
- Detecting axisymmetric magnetic fields using gravity modes in intermediate-mass stars
- The CubeSpec space mission. I. Asteroseismology of massive stars from time series optical spectroscopy: science requirements and target list prioritisation
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- On the Geometry of the Near-Core Magnetic Field in Massive Stars
- Discovery of new magnetic δ Scuti stars and impact of magnetism on pulsation excitation
- Combining seismology and spectropolarimetry of hot stars
- The magnetic variability of the ~Cep star \,CMa
- Asteroseismology and spectropolarimetry: opening new windows on the internal dynamics of massive stars
- Observational Properties of Cephei Stars: 88 new samples discovered Based on TESS and Gaia Data
- Magneto-asteroseismology of massive magnetic pulsators
- Combining magnetic and seismic studies to constrain processes in massive stars
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