A discussion of many of the recently implemented features of GAMESS (General Atomic and Molecular Electronic Structure System) and LibCChem (the C++ CPU/GPU library associated with GAMESS) is presented. These features include fragmentation methods like the fragment molecular orbital, effective fragment potential and effective fragment molecular orbital methods, hybrid MPI/OpenMP approaches to Hartree-Fock and resolution of the identity second order perturbation theory. Many new coupled cluster theory methods have been implemented in GAMESS, as have multiple levels of density functional/tight binding theory. The role of accelerators, especially graphical processing units, is discussed in the context of the new features of LibCChem, as is the associated problem of power consumption as the power of computers increases dramatically. The process by which a complex program suite like GAMESS is maintained and developed is considered. Future developments are briefly summarized.
Revised: June 17, 2020 |
Published: April 21, 2020
Citation
Barca G.M., C. Bertoni, L. Carrington, D. Datta, N. DeSilva, E.J. Deustua, and D. Fedorov, et al. 2020.Recent Developments in the General Atomic and Molecular Electronic Structure System.Journal of Chemical Physics 152, no. 15:Article No. 154102.PNNL-SA-152270.doi:10.1063/5.0005188