Testing the effects of opacity and the chemical mixture on the excitation of pulsations in B stars of the Magellanic Clouds
arXiv:1203.0527 · doi:10.1111/j.1365-2966.2012.20857.x
Abstract
The B-type pulsators known as βCephei and Slowly Pulsating B (SPB) stars present pulsations driven by the κmechanism, which operates thanks to an opacity bump due to the iron group elements. In low-metallicity environments such as the Magellanic Clouds, βCep and SPB pulsations are not expected. Nevertheless, recent observations show evidence for the presence of B-type pulsator candidates in both galaxies. We seek an explanation for the excitation of βCep and SPB modes in those galaxies by examining basic input physics in stellar modelling: i) the specific metal mixture of B-type stars in the Magellanic Clouds; ii) the role of a potential underestimation of stellar opacities. We first derive the present-day chemical mixtures of B-type stars in the Magellanic Clouds. Then, we compute stellar models for that metal mixture and perform a non-adiabatic analysis of these models. In a second approach, we simulate parametric enhancements of stellar opacities due to different iron group elements. We then study their effects in models of B stars and their stability. We find that adopting a representative chemical mixture of B stars in the Small Magellanic Cloud cannot explain the presence of B-type pulsators there. An increase of the opacity in the region of the iron-group bump could drive B-type pulsations, but only if this increase occurs at the temperature corresponding to the maximum contribution of Ni to this opacity bump. We recommend an accurate computation of Ni opacity to understand B-type pulsators in the Small Magellanic Cloud, as well as the frequency domain observed in some Galactic hybrid βCep-SPB stars.
16 pages, 12 figures. Accepted for publication in MNRAS
References in corpus (26)
- The chemical composition of the Sun
- CLES, Code Liegeois d'Evolution Stellaire
- The VLT-FLAMES survey of massive stars: rotation and nitrogen enrichment as the key to understanding massive star evolution
- The influence of chemical composition on the properties of Cepheid stars. II-The iron content
- The VLT-FLAMES survey of massive stars: Evolution of surface N abundances and effective temperature scales in the Galaxy and Magellanic Clouds
- An asteroseismic study of the beta Cephei star theta Ophiuchi: constraints on global stellar parameters and core overshooting
- The Chemical Enrichment History of the Small Magellanic Cloud and Its Gradients
- Instability strips of SPB and beta Cephei stars: the effect of the updated OP opacities and of the metal mixture
- The two hybrid B-type pulsators: Nu Eridani and 12 Lacertae
- Gravity-mode pulsations in subdwarf B stars: a critical test of stellar opacity
- Chemical composition and mixing in giant HII regions: NGC3603, 30Doradus, and N66
- Revised instability domains of SPB and beta Cephei stars
- An asteroseismic study of the beta Cephei star beta Canis Majoris
- An asteroseismic study of the beta Cephei star 12 Lacertae: multisite spectroscopic observations, mode identification and seismic modelling
- Automated supervised classification of variable stars II. Application to the OGLE database
- Complex asteroseismology of the Cep/SPB pulsator Eridani: constraints on opacities
- Chemical evolution of the Small Magellanic Cloud based on planetary nebulae
- Comparison of Fe and Ni opacity calculations for a better understanding of pulsating stellar envelopes
- Constraints on opacities from complex asteroseismology of B-type pulsators: the Cephei star Ophiuchi
- CaII Triplet Spectroscopy of Small Magellanic Cloud Red Giants. II. Abundances for a Sample of Field Stars
- Pulsating B and Be stars in the Small Magellanic Cloud
- A Radial Velocity and Calcium Triplet abundance survey of field Small Magellanic Cloud giants
- Beat Cepheids as Probes of Stellar and Galactic Metallicity: The New AGS Abundances
- Theoretical and experimental activities on opacities for a good interpretation of seismic stellar probes
- The Beta Cephei instability domain for the new solar composition and with new OP opacities
- SPB stars in the open SMC cluster NGC 371
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- Sub-Inertial Gravity Modes in the B8V Star KIC 7760680 Reveal Moderate Core Overshooting and Low Vertical Diffusive Mixing
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- The IACOB project: III. New observational clues to understand macroturbulent broadening in massive O- and B-type stars
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- The Impact of Enhanced Iron Opacity on Massive Star Pulsations: Updated Instability Strips
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- Domains of pulsational instability of low-frequency modes in rotating upper main-sequence stars
- Interpretation of the BRITE oscillation data of the hybrid pulsator Eridani: a call for the modification of stellar opacities
- Variability of Massive Stars with Known Spectral Types in the Small Magellanic Cloud Using 8 Years of OGLE-III Data
- Variability of newly identified B-type stars observed by Kepler
- Stellar oscillations. II The non-adiabatic case
- Thermal Pressures in the Interstellar Medium of the Magellanic Clouds
- Seismic modelling of early B-type pulsators observed by BRITE: I. Ophiuchi
- Seismic modeling of a very young SPB star -- KIC8264293
- Seismic inversion of the solar entropy: A case for improving the Standard Solar Model
- A solar twin in the eclipsing binary LL Aqr
- Detailed opacity calculations for astrophysical applications
- Pulsating B stars in the Scorpius-Centaurus Association with TESS
- Period-luminosity relations of fast-rotating B-type stars in the young open cluster NGC3766
- The IACOB project: IV. New predictions for high-degree non-radial mode instability domains in massive stars and connection with macroturbulent broadening
- Time-Dependent Density Functional Theory Applied to Average Atom Opacity
- Asteroseismology of Cephei stars: The stellar inferences tested in hare and hound exercises
- A need to revise stellar opacities from asteroseismology of Scuti stars
- Massive Star Asteroseismology in Action
- Helioseismic inference of the solar radiative opacity
- A Search for Boron in Damped Lyα Systems
- Inference for Stellar Opacities from Seismic Studies of the Hybrid Cep/SPB pulsators
- Discovery and Characterization of a Rare Magnetic Hybrid Cephei Slowly Pulsating B-type Star in an Eclipsing Binary in the Young Open Cluster NGC 6193
- Asteroseismology of Massive Stars : Some Words of Caution
- Binarity at LOw Metallicity (BLOeM): massive star variability revealed using a novel software tool for point-spread function fitting of TESS images
- One size does not fit all: Evidence for a range of mixing efficiencies in stellar evolution calculations