English

Seismic Constraints on Interior Solar Convection

Solar and Stellar Astrophysics 2015-05-18 v1 Earth and Planetary Astrophysics

Abstract

We constrain the velocity spectral distribution of global-scale solar convective cells at depth using techniques of local helioseismology. We calibrate the sensitivity of helioseismic waves to large-scale convective cells in the interior by analyzing simulations of waves propagating through a velocity snapshot of global solar convection via methods of time-distance helioseismology. Applying identical analysis techniques to observations of the Sun, we are able to bound from above the magnitudes of solar convective cells as a function of spatial convective scale. We find that convection at a depth of r/R=0.95r/R_\odot = 0.95 with spatial extent <20\ell <20, where \ell is the spherical harmonic degree, comprise weak flow systems, on the order of 15 m/s or less. Convective features deeper than r/R=0.95r/R_\odot = 0.95 are more difficult to image due to the rapidly decreasing sensitivity of helioseismic waves.

Keywords

Cite

@article{arxiv.1001.4508,
  title  = {Seismic Constraints on Interior Solar Convection},
  author = {S. M. Hanasoge and T. L. Duvall and M. L. DeRosa},
  journal= {arXiv preprint arXiv:1001.4508},
  year   = {2015}
}

Comments

accepted, ApJ Letters, 5 figures, 10 pages (in this version)

R2 v1 2026-06-21T14:39:12.848Z