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Generalized Eigenvalues for pairs on heritian matricesA study was made of certain special cases of a generalized eigenvalue problem. Let A and B be nxn matrics. One may construct a certain polynomial, P(A,B, lambda) which specializes to the characteristic polynomial of B when A equals I. In particular, when B is hermitian, that characteristic polynomial, P(I,B, lambda) has real roots, and one can ask: are the roots of P(A,B, lambda) real when B is hermitian. We consider the case where A is positive definite and show that when N equals 3, the roots are indeed real. The basic tools needed in the proof are Shur's theorem on majorization for eigenvalues of hermitian matrices and the interlacing theorem for the eigenvalues of a positive definite hermitian matrix and one of its principal (n-1)x(n-1) minors. The method of proof first reduces the general problem to one where the diagonal of B has a certain structure: either diag (B) = diag (1,1,1) or diag (1,1,-1), or else the 2 x 2 principal minors of B are all 1. According as B has one of these three structures, we use an appropriate method to replace A by a positive diagonal matrix. Since it can be easily verified that P(D,B, lambda) has real roots, the result follows. For other configurations of B, a scaling and a continuity argument are used to prove the result in general.
Document ID
19890005552
Acquisition Source
Legacy CDMS
Document Type
Conference Paper
Authors
Rublein, George
(College of William and Mary Williamsburg, VA, United States)
Date Acquired
September 5, 2013
Publication Date
September 1, 1988
Publication Information
Publication: Hampton Inst., NASA/American Society for Engineering Educati
Subject Category
Numerical Analysis
Accession Number
89N14923
Distribution Limits
Public
Copyright
Work of the US Gov. Public Use Permitted.

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