FAST NON-HERMITIAN TOEPLITZ EIGENVALUE COMPUTATIONS, JOINING MATRIXLESS ALGORITHMS AND FDE APPROXIMATION MATRICES

被引:4
作者
Bogoya, Manuel [1 ]
Grudsky, Sergei M. [2 ]
Serra-capizzano, Stefano [3 ]
机构
[1] Univ Valle, Dept Matemat, Cali 76001, Colombia
[2] Dept Matemat, CINVESTAV, Mexico City 07000, Mexico
[3] Univ Insubria, Dipartimento Sci & Alta Tecnol, I-22100 Como, Italy
关键词
words. asymptotic expansion; eigenvalues; Toeplitz matrix; numerical algorithm; matrixless; MULTIGRID METHODS; SPECTRAL-ANALYSIS; CONVERGENCE;
D O I
10.1137/22M1529920
中图分类号
O29 [应用数学];
学科分类号
070104 ;
摘要
The present work is devoted to the eigenvalue asymptotic expansion of the Toeplitz matrix Tn(a), whose generating function a is complex -valued and has a power singularity at one point. As a consequence, Tn(a) is non -Hermitian and we know that in this setting, the eigenvalue computation is a nontrivial task for large sizes. First we follow the work of Bogoya, Bo"\ttcher, Grudsky, and Maximenko and deduce a complete asymptotic expansion for the eigenvalues. In a second step, we apply matrixless algorithms, in the spirit of the work by Ekstro"\m, Furci, Garoni, Serra-Capizzano et al., for computing those eigenvalues. Since the inner and extreme eigenvalues have different asymptotic behaviors, we worked on them independently and combined the results to produce a high precision global numerical and matrixless algorithm. The numerical results are very precise, and the computational cost of the proposed algorithms is independent of the size of the considered matrices for each eigenvalue, which implies a linear cost when the entire spectrum is computed. From the viewpoint of real -world applications, we emphasize that the class under consideration includes the matrices stemming from the numerical approximation of fractional diffusion equations. In the final section a concise discussion on the matter and a few open problems are presented.
引用
收藏
页码:284 / 305
页数:22
相关论文
共 37 条
[1]  
BO A., 2006, Springer Monogr. Math., V2nd
[2]  
BO A., 1999, Introduction to Large Truncated Toeplitz Matrices
[3]   Eigenvalues of Hermitian Toeplitz matrices with smooth simple-loop symbols [J].
Bogoya, J. M. ;
Boettcher, A. ;
Grudsky, S. M. ;
Maximenko, E. A. .
JOURNAL OF MATHEMATICAL ANALYSIS AND APPLICATIONS, 2015, 422 (02) :1308-1334
[4]  
BOGOYA M., 2022, arXiv
[5]  
BOGOYA M., 2018, Oper. Theory Adv. Appl., V271, P119
[6]  
Bogoya M., 2012, Operator Theory: Adv. and Appl., V220, P77
[7]   On the extreme eigenvalues and asymptotic conditioning of a class of Toeplitz matrix-sequences arising from fractional problems [J].
Bogoya, Manuel ;
Grudsky, Sergei ;
Mazza, Mariarosa ;
Serra-Capizzano, Stefano .
LINEAR & MULTILINEAR ALGEBRA, 2023, 71 (15) :2462-2473
[8]   Fast Toeplitz eigenvalue computations, joining interpolation-extrapolation matrix-less algorithms and simple-loop theory [J].
Bogoya, Manuel ;
Ekstrom, Sven-Erik ;
Serra-Capizzano, Stefano .
NUMERICAL ALGORITHMS, 2022, 91 (04) :1653-1676
[9]   Fine spectral estimates with applications to the optimally fast solution of large FDE linear systems [J].
Bogoya, Manuel ;
Grudsky, Sergei M. ;
Serra-Capizzano, Stefano ;
Tablino-Possio, Cristina .
BIT NUMERICAL MATHEMATICS, 2022, 62 (04) :1417-1431
[10]   Fast Toeplitz eigenvalue computations, joining interpolation-extrapolation matrix-less algorithms and simple-loop theory: The preconditioned setting [J].
Bogoyaa, M. ;
Serra-Capizzano, S. ;
Vassalos, P. .
APPLIED MATHEMATICS AND COMPUTATION, 2024, 466