Convective quenching of stellar pulsations
arXiv:1008.4020 · doi:10.1051/0004-6361/201015631
Abstract
Context: we study the convection-pulsation coupling that occurs in cold Cepheids close to the red edge of the classical instability strip. In these stars, the surface convective zone is supposed to stabilise the radial oscillations excited by the kappa-mechanism. Aims: we study the influence of the convective motions onto the amplitude and the nonlinear saturation of acoustic modes excited by kappa-mechanism. We are interested in determining the physical conditions needed to lead to a quenching of oscillations by convection. Methods: we compute two-dimensional nonlinear simulations (DNS) of the convection-pulsation coupling, in which the oscillations are sustained by a continuous physical process: the kappa-mechanism. Thanks to both a frequential analysis and a projection of the physical fields onto an acoustic subspace, we study how the convective motions affect the unstable radial oscillations. Results: depending on the initial physical conditions, two main behaviours are obtained: (i) either the unstable fundamental acoustic mode has a large amplitude, carries the bulk of the kinetic energy and shows a nonlinear saturation similar to the purely radiative case; (ii) or the convective motions affect significantly the mode amplitude that remains very weak. In this second case, convection is quenching the acoustic oscillations. We interpret these discrepancies in terms of the difference in density contrast: larger stratification leads to smaller convective plumes that do not affect much the purely radial modes, while large-scale vortices may quench the oscillations.
15 pages, 17 figures, 3 tables, accepted for publication in A&A
References in corpus (4)
- Spectrum and amplitudes of internal gravity waves excited by penetrative convection in solar-type stars
- DNS of the kappa-mechanism. I. Radial modes in the purely radiative case
- Direct numerical simulations of the kappa-mechanism II. The nonlinear saturation and Hertzsprung's progression
- The State of Cepheid Pulsation Theory
Cited by in corpus (8)
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- Radial Stellar Pulsation and 3D Convection. I. Numerical Methods and Adiabatic Test Cases
- Radial Stellar Pulsation and Three-Dimensional Convection. II. Two-Dimensional Convection In Full Amplitude Radial Pulsation
- The Secret Lives of Cepheids: Evolution, Mass Loss, and Ultraviolet Emission of the Long-Period Classical Cepheid Carinae
- Radial Stellar Pulsation and Three-Dimensional Convection. IV. Full Amplitude Three-Dimensional Solutions
- Radial Stellar Pulsation and Three-Dimensional Convection. III. Comparison of Two-Dimensional and Three-Dimensional Convection Effects on Radial Pulsation
- Seismology of Altair with MOST
- A test of time-dependent theories of stellar convection