We present NTPoly, a massively parallel library for computing the functions of sparse, symmetric matrices. The theory of matrix functions is a well developed framework with a wide range of applications including differential equations, graph theory, and electronic structure calculations. One particularly important application area are diagonalization free methods in quantum chemistry. When the input and output of the matrix function are sparse, methods based on polynomial expansions can be used to compute matrix functions in linear time. We present a library based on these methods that can compute a variety of matrix functions. Distributed memory parallelization is based on a communication avoiding sparse matrix multiplication algorithm. Op...
We have developed a framework based on relational algebra for compiling efficient sparse matrix cod...
Sparse matrices are first class objects in many VHLLs (very high level languages) used for scientifi...
Density functional theory (DFT) based simulations are playing a major role in quantum mechanical stu...
We present NTPoly, a massively parallel library for computing the functions of sparse, symmetric mat...
We present CheSS, the “Chebyshev Sparse Solvers” library, which has been designed to solve typical p...
This paper describes two portable packages for general-purpose sparse matrix computations: SPARSKIT...
This book is primarily intended as a research monograph that could also be used in graduate courses ...
The aim of electronic structure calculations is to simulate behavior of complex materials by resolvi...
The matrix-vector product is one of the most important computational components of Krylov methods. T...
We provide parallel matrix-vector multiply routines for 1D and 2D partitioned sparse square and rect...
This paper describes the techniques and methodologies employed during parallelization of the semi-em...
Abstract. Matlab*P is a flexible interactive system that enables computational scientists and engine...
. The Numerical Algorithms Group Ltd is currently participating in the European HPCN Fourth Framewor...
This whitepaper addresses applicability of the MapReduce paradigm for scientific computing by realiz...
This paper presents a new software framework for solving large and sparse linear systems on current ...
We have developed a framework based on relational algebra for compiling efficient sparse matrix cod...
Sparse matrices are first class objects in many VHLLs (very high level languages) used for scientifi...
Density functional theory (DFT) based simulations are playing a major role in quantum mechanical stu...
We present NTPoly, a massively parallel library for computing the functions of sparse, symmetric mat...
We present CheSS, the “Chebyshev Sparse Solvers” library, which has been designed to solve typical p...
This paper describes two portable packages for general-purpose sparse matrix computations: SPARSKIT...
This book is primarily intended as a research monograph that could also be used in graduate courses ...
The aim of electronic structure calculations is to simulate behavior of complex materials by resolvi...
The matrix-vector product is one of the most important computational components of Krylov methods. T...
We provide parallel matrix-vector multiply routines for 1D and 2D partitioned sparse square and rect...
This paper describes the techniques and methodologies employed during parallelization of the semi-em...
Abstract. Matlab*P is a flexible interactive system that enables computational scientists and engine...
. The Numerical Algorithms Group Ltd is currently participating in the European HPCN Fourth Framewor...
This whitepaper addresses applicability of the MapReduce paradigm for scientific computing by realiz...
This paper presents a new software framework for solving large and sparse linear systems on current ...
We have developed a framework based on relational algebra for compiling efficient sparse matrix cod...
Sparse matrices are first class objects in many VHLLs (very high level languages) used for scientifi...
Density functional theory (DFT) based simulations are playing a major role in quantum mechanical stu...