Title
New matrix function approximations and quadrature rules based on the Arnoldi process
Abstract
The Arnoldi process can be applied to inexpensively approximate matrix functions of the form f(A)v and matrix functionals of the form v∗(f(A))∗g(A)v, where A is a large square non-Hermitian matrix, v is a vector, and the superscript ∗ denotes transposition and complex conjugation. Here f and g are analytic functions that are defined in suitable regions in the complex plane. This paper reviews available approximation methods and describes new ones that provide higher accuracy for essentially the same computational effort by exploiting available, but generally not used, moment information. Numerical experiments show that in some cases the modifications of the Arnoldi decompositions proposed can improve the accuracy of v∗(f(A))∗g(A)v about as much as performing an additional step of the Arnoldi process.
Year
DOI
Venue
2021
10.1016/j.cam.2021.113442
Journal of Computational and Applied Mathematics
Keywords
DocType
Volume
65F60,41A10,15A16,65D32
Journal
391
ISSN
Citations 
PageRank 
0377-0427
0
0.34
References 
Authors
0
3
Name
Order
Citations
PageRank
Nasim Eshghi100.34
Thomas Mach200.34
Lothar Reichel345395.02