An efficient parallel algorithm, farmzeroinNR, for the eigenvalue problem of a symmetric tridiagonal matrix is implemented in a distributed memory multiprocessor with 112 nodes. The basis of our parallel implementation, is an improved version of the zeroinNR method. It is consistently faster than simple bisection and produces more accurate eigenvalues than the QR} method. As it happens with bisection, zeroinNR exhibits great flexibility and allows the computation of a subset of the spectrum with some prescribed accuracy. Results were carried out with matrices of different types and sizes up to $10^4$ and show that our algorithm is efficient and scalable.(undefined
In this paper, a fully parallel method for finding all eigenvalues of a real matrix pencil (A,B) is ...
The solution of the symmetric eigenvalue problem is a compute-intensive task in many scientific and ...
As part of the Fujitsu-ANU Parallel Mathematical Subroutine Library Project we have developed a suit...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
AbstractWe present a new, fast, and practical parallel algorithm for computing a few eigenvalues of ...
Abstract. We present a new parallel implementation of a divide and conquer algorithm for computing t...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
A method for determining all eigenvalues of large real symmetric tridiagonal matrices on multiproces...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
Abstract. A multiprocessor algorithm for finding few or all eigenvalues and the corresponding eigenv...
Jack Dongarra z We present a new parallel implementation of a divide and conquer algo-rithm for comp...
AbstractWe present a new, fast, and practical parallel algorithm for computing a few eigenvalues of ...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In this paper, a fully parallel method for finding all eigenvalues of a real matrix pencil (A,B) is ...
The solution of the symmetric eigenvalue problem is a compute-intensive task in many scientific and ...
As part of the Fujitsu-ANU Parallel Mathematical Subroutine Library Project we have developed a suit...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
AbstractWe present a new, fast, and practical parallel algorithm for computing a few eigenvalues of ...
Abstract. We present a new parallel implementation of a divide and conquer algorithm for computing t...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
A method for determining all eigenvalues of large real symmetric tridiagonal matrices on multiproces...
We present a new parallel implementation of a divide and conquer algorithm for computing the spectra...
Abstract. A multiprocessor algorithm for finding few or all eigenvalues and the corresponding eigenv...
Jack Dongarra z We present a new parallel implementation of a divide and conquer algo-rithm for comp...
AbstractWe present a new, fast, and practical parallel algorithm for computing a few eigenvalues of ...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In computational science symmetric eigenvalue problems are central and the need for fast and accura...
In this paper, a fully parallel method for finding all eigenvalues of a real matrix pencil (A,B) is ...
The solution of the symmetric eigenvalue problem is a compute-intensive task in many scientific and ...
As part of the Fujitsu-ANU Parallel Mathematical Subroutine Library Project we have developed a suit...