A necessary and sufficient condition for simultaneous diagonalization of two hermitian matrices and its application

Author:

Au-Yeung Yik-Hoi

Abstract

We denote by F the field R of real numbers, the field C of complex numbers, or the skew field H of real quaternions, and by Fn an n dimensional left vector space over F. If A is a matrix with elements in F, we denote by A* its conjugate transpose. In all three cases of F, an n × n matrix A is said to be hermitian if A = A*, and we say that two n × n hermitian matrices A and B with elements in F can be diagonalized simultaneously if there exists a non singular matrix U with elements in F such that UAU* and UBU* are diagonal matrices. We shall regard a vector uFn as a l × n matrix and identify a 1 × 1 matrix with its single element, and we shall denote by diag {A1, …, Am} a diagonal block matrix with the square matrices A1, …, Am lying on its diagonal.

Publisher

Cambridge University Press (CUP)

Subject

General Mathematics

Reference3 articles.

1. Simultaneous diagonalization of symmetric bilinear forms;Wonenburger;J. Math. Mech.,1966

2. Eigenvalues and canonical forms of matrices with quaternion coefficients;Lee;Proc. Roy. Irish Acad. Sect. A,1949

3. Lineare scharen orthogonaler matrizen

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