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A greedy algorithm for computing eigenvalues of a symmetric matrix with localized eigenvectors.

Authors :
Hernandez, Taylor M.
Van Beeumen, Roel
Caprio, Mark A.
Yang, Chao
Source :
Numerical Linear Algebra with Applications; Mar2021, Vol. 28 Issue 2, p1-16, 16p
Publication Year :
2021

Abstract

Summary: We present a greedy algorithm for computing selected eigenpairs of a large sparse matrix H that can exploit localization features of the eigenvector. When the eigenvector to be computed is localized, meaning only a small number of its components have large magnitudes, the proposed algorithm identifies the location of these components in a greedy manner, and obtains approximations to the desired eigenpairs of H by computing eigenpairs of a submatrix extracted from the corresponding rows and columns of H. Even when the eigenvector is not completely localized, the approximate eigenvectors obtained by the greedy algorithm can be used as good starting guesses to accelerate the convergence of an iterative eigensolver applied to H. We discuss a few possibilities for selecting important rows and columns of H and techniques for constructing good initial guesses for an iterative eigensolver using the approximate eigenvectors returned from the greedy algorithm. We demonstrate the effectiveness of this approach with examples from nuclear quantum many‐body calculations, many‐body localization studies of quantum spin chains and road network analysis. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
10705325
Volume :
28
Issue :
2
Database :
Complementary Index
Journal :
Numerical Linear Algebra with Applications
Publication Type :
Academic Journal
Accession number :
148480336
Full Text :
https://doi.org/10.1002/nla.2341