Symmetric Tensor Decomposition Description of Fermionic Many-Body Wavefunctions
Chemical Physics
2013-05-30 v1
Abstract
The configuration interaction (CI) is a versatile wavefunction theory for interacting fermions but it involves an extremely long CI series. Using a symmetric tensor decomposition (STD) method, we convert the CI series into a compact and numerically tractable form. The converted series encompasses the Hartree-Fock state in the first term and rapidly converges to the full-CI state, as numerically tested using small molecules. Provided that the length of the STD-CI series grows only moderately with the increasing complexity of the system, the new method will serve as one of the alternative variational methods to achieve full-CI with enhanced practicability.
Cite
@article{arxiv.1208.1082,
title = {Symmetric Tensor Decomposition Description of Fermionic Many-Body Wavefunctions},
author = {Wataru Uemura and Osamu Sugino},
journal= {arXiv preprint arXiv:1208.1082},
year = {2013}
}
Comments
10 pages, 6 figures