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NECI: N-Electron Configuration Interaction with an emphasis on state-of-the-art stochastic methods.

Authors :
Guther, Kai
Anderson, Robert J.
Blunt, Nick S.
Bogdanov, Nikolay A.
Cleland, Deidre
Dattani, Nike
Dobrautz, Werner
Ghanem, Khaldoon
Jeszenszki, Peter
Liebermann, Niklas
Manni, Giovanni Li
Lozovoi, Alexander Y.
Luo, Hongjun
Ma, Dongxia
Merz, Florian
Overy, Catherine
Rampp, Markus
Samanta, Pradipta Kumar
Schwarz, Lauretta R.
Shepherd, James J.
Source :
Journal of Chemical Physics; 7/21/2020, Vol. 153 Issue 3, p1-25, 25p, 1 Color Photograph, 2 Diagrams, 4 Charts, 5 Graphs
Publication Year :
2020

Abstract

We present NECI, a state-of-the-art implementation of the Full Configuration Interaction Quantum Monte Carlo (FCIQMC) algorithm, a method based on a stochastic application of the Hamiltonian matrix on a sparse sampling of the wave function. The program utilizes a very powerful parallelization and scales efficiently to more than 24 000 central processing unit cores. In this paper, we describe the core functionalities of NECI and its recent developments. This includes the capabilities to calculate ground and excited state energies, properties via the one- and two-body reduced density matrices, as well as spectral and Green's functions for ab initio and model systems. A number of enhancements of the bare FCIQMC algorithm are available within NECI, allowing us to use a partially deterministic formulation of the algorithm, working in a spin-adapted basis or supporting transcorrelated Hamiltonians. NECI supports the FCIDUMP file format for integrals, supplying a convenient interface to numerous quantum chemistry programs, and it is licensed under GPL-3.0. [ABSTRACT FROM AUTHOR]

Details

Language :
English
ISSN :
00219606
Volume :
153
Issue :
3
Database :
Complementary Index
Journal :
Journal of Chemical Physics
Publication Type :
Academic Journal
Accession number :
144685411
Full Text :
https://doi.org/10.1063/5.0005754