A modified R1 X R1 method for helioseismic rotation inversions
Astrophysics
2015-06-24 v1
Abstract
We present an efficient method for two dimensional inversions for the solar rotation rate using the Subtractive Optimally Localized Averages (SOLA) method and a modification of the R1 X R1 technique proposed by Sekii (1993). The SOLA method is based on explicit construction of averaging kernels similar to the Backus-Gilbert method. The versatility and reliability of the SOLA method in reproducing a target form for the averaging kernel, in combination with the idea of the R1 X R1 decomposition, results in a computationally very efficient inversion algorithm. This is particularly important for full 2-D inversions of helioseismic data in which the number of modes runs into at least tens of thousands.
Cite
@article{arxiv.astro-ph/9510143,
title = {A modified R1 X R1 method for helioseismic rotation inversions},
author = {F. P. Pijpers and M. J. Thompson},
journal= {arXiv preprint arXiv:astro-ph/9510143},
year = {2015}
}
Comments
12 pages, Plain TeX + epsf.tex + mn.tex