Scroll to navigation

ZLAEIN(1) LAPACK auxiliary routine (version 3.2) ZLAEIN(1)

NAME

ZLAEIN - uses inverse iteration to find a right or left eigenvector corresponding to the eigenvalue W of a complex upper Hessenberg matrix H

SYNOPSIS

RIGHTV, NOINIT, N, H, LDH, W, V, B, LDB, RWORK, EPS3, SMLNUM, INFO )

LOGICAL NOINIT, RIGHTV INTEGER INFO, LDB, LDH, N DOUBLE PRECISION EPS3, SMLNUM COMPLEX*16 W DOUBLE PRECISION RWORK( * ) COMPLEX*16 B( LDB, * ), H( LDH, * ), V( * )

PURPOSE

ZLAEIN uses inverse iteration to find a right or left eigenvector corresponding to the eigenvalue W of a complex upper Hessenberg matrix H.

ARGUMENTS

= .TRUE. : compute right eigenvector;
= .FALSE.: compute left eigenvector.

= .TRUE. : no initial vector supplied in V
= .FALSE.: initial vector supplied in V.
The order of the matrix H. N >= 0.
The upper Hessenberg matrix H.
The leading dimension of the array H. LDH >= max(1,N).
The eigenvalue of H whose corresponding right or left eigenvector is to be computed.
On entry, if NOINIT = .FALSE., V must contain a starting vector for inverse iteration; otherwise V need not be set. On exit, V contains the computed eigenvector, normalized so that the component of largest magnitude has magnitude 1; here the magnitude of a complex number (x,y) is taken to be |x| + |y|.
The leading dimension of the array B. LDB >= max(1,N).
A small machine-dependent value which is used to perturb close eigenvalues, and to replace zero pivots.
A machine-dependent value close to the underflow threshold.
= 0: successful exit
= 1: inverse iteration did not converge; V is set to the last iterate.
November 2008 LAPACK auxiliary routine (version 3.2)