English

The HANDE-QMC project: open-source stochastic quantum chemistry from the ground state up

Computational Physics 2019-06-19 v2

Abstract

Building on the success of Quantum Monte Carlo techniques such as diffusion Monte Carlo, alternative stochastic approaches to solve electronic structure problems have emerged over the last decade. The full configuration interaction quantum Monte Carlo (FCIQMC) method allows one to systematically approach the exact solution of such problems, for cases where very high accuracy is desired. The introduction of FCIQMC has subsequently led to the development of coupled cluster Monte Carlo (CCMC) and density matrix quantum Monte Carlo (DMQMC), allowing stochastic sampling of the coupled cluster wave function and the exact thermal density matrix, respectively. In this article we describe the HANDE-QMC code, an open-source implementation of FCIQMC, CCMC and DMQMC, including initiator and semi-stochastic adaptations. We describe our code and demonstrate its use on three example systems; a molecule (nitric oxide), a model solid (the uniform electron gas), and a real solid (diamond). An illustrative tutorial is also included.

Keywords

Cite

@article{arxiv.1811.11679,
  title  = {The HANDE-QMC project: open-source stochastic quantum chemistry from the ground state up},
  author = {James S. Spencer and Nick S. Blunt and Seonghoon Choi and Jiri Etrych and Maria-Andreea Filip and W. M. C. Foulkes and Ruth S. T. Franklin and Will J. Handley and Fionn D. Malone and Verena A. Neufeld and Roberto Di Remigio and Thomas W. Rogers and Charles J. C. Scott and James J. Shepherd and William A. Vigor and Joseph Weston and RuQing Xu and Alex J. W. Thom},
  journal= {arXiv preprint arXiv:1811.11679},
  year   = {2019}
}