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QMCPACK : An open source ab initio Quantum Monte Carlo package for the electronic structure of atoms, molecules, and solids

Authors :
Kim, Jeongnim
Baczewski, Andrew
Beaudet, Todd D.
Benali, Anouar
Bennett, M. Chandler
Berrill, Mark A.
Blunt, Nick S.
Borda, Edgar Josue Landinez
Casula, Michele
Ceperley, David M.
Chiesa, Simone
Clark, Bryan K.
Clay III, Raymond C.
Delaney, Kris T.
Dewing, Mark
Esler, Kenneth P.
Hao, Hongxia
Heinonen, Olle
Kent, Paul R. C.
Krogel, Jaron T.
Kylanpaa, Ilkka
Li, Ying Wai
Lopez, M. Graham
Luo, Ye
Malone, Fionn D.
Martin, Richard M.
Mathuriya, Amrita
McMinis, Jeremy
Melton, Cody A.
Mitas, Lubos
Morales, Miguel A.
Neuscamman, Eric
Parker, William D.
Flores, Sergio D. Pineda
Romero, Nichols A.
Rubenstein, Brenda M.
Shea, Jacqueline A. R.
Shin, Hyeondeok
Shulenburger, Luke
Tillack, Andreas
Townsend, Joshua P.
Tubman, Norm M.
Van Der Goetz, Brett
Vincent, Jordan E.
Yang, D. ChangMo
Yang, Yubo
Zhang, Shuai
Zhao, Luning
Source :
J. Phys.: Condens. Matter 30 195901 (2018)
Publication Year :
2018

Abstract

QMCPACK is an open source quantum Monte Carlo package for ab-initio electronic structure calculations. It supports calculations of metallic and insulating solids, molecules, atoms, and some model Hamiltonians. Implemented real space quantum Monte Carlo algorithms include variational, diffusion, and reptation Monte Carlo. QMCPACK uses Slater-Jastrow type trial wave functions in conjunction with a sophisticated optimizer capable of optimizing tens of thousands of parameters. The orbital space auxiliary field quantum Monte Carlo method is also implemented, enabling cross validation between different highly accurate methods. The code is specifically optimized for calculations with large numbers of electrons on the latest high performance computing architectures, including multicore central processing unit (CPU) and graphical processing unit (GPU) systems. We detail the program's capabilities, outline its structure, and give examples of its use in current research calculations. The package is available at http://www.qmcpack.org .

Details

Database :
arXiv
Journal :
J. Phys.: Condens. Matter 30 195901 (2018)
Publication Type :
Report
Accession number :
edsarx.1802.06922
Document Type :
Working Paper
Full Text :
https://doi.org/10.1088/1361-648X/aab9c3