Gyroscopic pumping of large-scale flows in stellar interiors, and application to Lithium Dip stars
arXiv:1005.1618 · doi:10.1088/0004-637X/719/1/313
Abstract
The maintenance of large-scale differential rotation in stellar convective regions by rotationally influenced convective stresses also drives large-scale meridional flows by angular--momentum conservation. This process is an example of ``gyroscopic pumping'', and has recently been studied in detail in the solar context. An important question concerns the extent to which these gyroscopically pumped meridional flows penetrate into nearby stably stratified (radiative) regions, since they could potentially be an important source of non-local mixing. Here we present an extensive study of the gyroscopic pumping mechanism, using a combination of analytical calculations and numerical simulations both in Cartesian geometry and in spherical geometry. The various methods, when compared with one another, provide physical insight into the process itself, as well as increasingly sophisticated means of estimating the gyroscopic pumping rate. As an example of application, we investigate the effects of this large-scale mixing process on the surface abundances of the light elements Li and Be for stars in the mass range 1.3-1.5 solar masses (so-called ``Li-dip stars''). We find that gyroscopic pumping is a very efficient mechanism for circulating material between the surface and the deep interior, so much in fact that it over-estimates Li and Be depletion by orders of magnitude for stars on the hot side of the dip.However, when the diffusion of chemical species back into the surface convection zone is taken into account, a good fit with observed surface abundances of Li and Be as a function of stellar mass in the Hyades cluster can be found for reasonable choices of model parameters.
Submitted to ApJ
References in corpus (6)
- Dynamics of the solar tachocline II: the stratified case
- Lithium in the Intermediate-Age Open Cluster, NGC 3680
- On the penetration of meridional circulation below the solar convection zone
- Beryllium abundances along the evolutionary sequence of the open cluster IC 4651 - New test for hydrodynamical stellar models
- On the Penetration of Meridional Circulation below the Solar Convection Zone II: Models with Convection Zone, the Taylor-Proudman constraint and Applications to Other Stars
- Differential Rotation in F Stars
Cited by in corpus (15)
- Meridional Circulation in Solar and Stellar Convection Zones
- On differential rotation and overshooting in solar-like stars
- Numerically determined transport laws for fingering ("thermohaline") convection in astrophysics
- Gyroscopic Pumping in the Solar Near-Surface Shear Layer
- The Solar-Stellar Connection
- Boron Abundances Across the "Li-Be Dip" in the Hyades
- Probing the Existence of a Dark Matter Isothermal Core Using Gravity Modes
- The Sun's meridional circulation and interior magnetic field
- Theory of differential rotation and meridional circulation
- Transport by meridional circulations in solar-type stars
- Meridional Circulation Dynamics in a Cyclic Convective Dynamo
- Enhanced Rotational Mixing in the Radiative Zones of Massive Stars
- On the dynamics of overshooting convection in spherical shells: Effect of density stratification and rotation
- Meridional circulation in the Sun and stars
- Meridional Circulation Streamlined