Authors
Jarrod R McClean, Fabian M Faulstich, Qinyi Zhu, Bryan O’Gorman, Yiheng Qiu, Steven R White, Ryan Babbush, Lin Lin
Publication date
2020/9/8
Journal
New Journal of Physics
Volume
22
Issue
9
Pages
093015
Publisher
IOP Publishing
Description
All-electron electronic structure methods based on the linear combination of atomic orbitals method with Gaussian basis set discretization offer a well established, compact representation that forms much of the foundation of modern correlated quantum chemistry calculations—on both classical and quantum computers. Despite their ability to describe essential physics with relatively few basis functions, these representations can suffer from a quartic growth of the number of integrals. Recent results have shown that, for some quantum and classical algorithms, moving to representations with diagonal two-body operators can result in dramatically lower asymptotic costs, even if the number of functions required increases significantly. We introduce a way to interpolate between the two regimes in a systematic and controllable manner, such that the number of functions is minimized while maintaining a block-diagonal …
Total citations
202020212022202341171
Scholar articles
JR McClean, FM Faulstich, Q Zhu, B O'Gorman, Y Qiu… - New Journal of Physics, 2020