Obtaining highly accurate predictions on the properties of light atomic nuclei using the configuration interaction (CI) approach requires computing a few extremal Eigen pairs of the many-body nuclear Hamiltonian matrix. In the Many-body Fermion Dynamics for nuclei (MFDn) code, a block Eigen solver is used for this purpose. Due to the large size of the sparse matrices involved, a significant fraction of the time spent on the Eigen value computations is associated with the multiplication of a sparse matrix (and the transpose of that matrix) with multiple vectors (SpMM and SpMM-T). Existing implementations of SpMM and SpMM-T significantly underperform expectations. Thus, in this paper, we present and analyze optimized implementations of SpMM a...
Sparse matrix-vector multiplication (SpMV) can be used to solve diverse-scaled linear systems and ei...
AbstractWe discuss the scaling behavior of a state-of-the-art Configuration Interaction code for nuc...
The configuration-interaction (CI) method, long a popular approach to describe quantum many-body sys...
Obtaining highly accurate predictions on the properties of light atomic nuclei using the configurati...
Obtaining highly accurate predictions on the properties of light atomic nuclei using the configurati...
Abstract—Obtaining highly accurate predictions on the prop-erties of light atomic nuclei using the c...
As on-node parallelism increases and the performance gap between the processor and the memory system...
As on-node parallelism increases and the performance gap between the processor and the memory system...
One of the emerging computational approaches in nuclear physics is the full configuration interactio...
One of the emerging computational approaches in nuclear physics is the full configuration interactio...
This thesis presents investigations made with matrices representing quantum mechan- ical many-body s...
We describe a number of recently developed techniques for improving the performance of large-scale n...
We describe a number of recently developed techniques for improving the performance of large-scale n...
We describe a number of recently developed techniques for improving the performance of large-scale n...
Sparse matrix-vector multiplication (SpMV) can be used to solve diverse-scaled linear systems and ei...
Sparse matrix-vector multiplication (SpMV) can be used to solve diverse-scaled linear systems and ei...
AbstractWe discuss the scaling behavior of a state-of-the-art Configuration Interaction code for nuc...
The configuration-interaction (CI) method, long a popular approach to describe quantum many-body sys...
Obtaining highly accurate predictions on the properties of light atomic nuclei using the configurati...
Obtaining highly accurate predictions on the properties of light atomic nuclei using the configurati...
Abstract—Obtaining highly accurate predictions on the prop-erties of light atomic nuclei using the c...
As on-node parallelism increases and the performance gap between the processor and the memory system...
As on-node parallelism increases and the performance gap between the processor and the memory system...
One of the emerging computational approaches in nuclear physics is the full configuration interactio...
One of the emerging computational approaches in nuclear physics is the full configuration interactio...
This thesis presents investigations made with matrices representing quantum mechan- ical many-body s...
We describe a number of recently developed techniques for improving the performance of large-scale n...
We describe a number of recently developed techniques for improving the performance of large-scale n...
We describe a number of recently developed techniques for improving the performance of large-scale n...
Sparse matrix-vector multiplication (SpMV) can be used to solve diverse-scaled linear systems and ei...
Sparse matrix-vector multiplication (SpMV) can be used to solve diverse-scaled linear systems and ei...
AbstractWe discuss the scaling behavior of a state-of-the-art Configuration Interaction code for nuc...
The configuration-interaction (CI) method, long a popular approach to describe quantum many-body sys...