Electronic structure calculations with interpolating tensor product wavelet basis
Quantum Physics
2023-08-08 v8
Abstract
We introduce a basis set consisting of three-dimensional Deslauriers--Dubuc wavelets and solve numerically the Schr\"odinger equations of H and He atoms and molecules , , and with HF and DFT methods. We also compute the 2s and 2p excited states of hydrogen. The Coulomb singularity at the nucleus is handled by using a pseudopotential. The eigenvalue problem is solved with Arnoldi and Lanczos methods, Poisson equation with GMRES and CGNR methods, and matrix elements are computed using the biorthogonality relations of the interpolating wavelets. Performance is compared with those of CCCBDB and BigDFT.
Keywords
Cite
@article{arxiv.2101.05540,
title = {Electronic structure calculations with interpolating tensor product wavelet basis},
author = {Tommi Höynälänmaa and Tapio T. Rantala},
journal= {arXiv preprint arXiv:2101.05540},
year = {2023}
}
Comments
25 pages, 5 figures