A parallel algorithm for Hamiltonian matrix construction in electron–molecule collision calculations: MPI-SCATCI

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Abstract

Construction and diagonalization of the Hamiltonian matrix is the rate-limiting step in most low-energy electron – molecule collision calculations. Tennyson (1996) implemented a novel algorithm for Hamiltonian construction which took advantage of the structure of the wavefunction in such calculations. This algorithm is re-engineered to make use of modern computer architectures and the use of appropriate diagonalizers is considered. Test calculations demonstrate that significant speed-ups can be gained using multiple CPUs. This opens the way to calculations which consider higher collision energies, larger molecules and / or more target states. The methodology, which is implemented as part of the UK molecular R-matrix codes (UKRMol and UKRMol+) can also be used for studies of bound molecular Rydberg states, photoionization and positron–molecule collisions.

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Al-Refaie, A. F., & Tennyson, J. (2017). A parallel algorithm for Hamiltonian matrix construction in electron–molecule collision calculations: MPI-SCATCI. Computer Physics Communications, 221, 53–62. https://doi.org/10.1016/j.cpc.2017.07.023

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