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Recent developments in the PySCF program package

delete2020-07-09
delete482
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OA
AI
Q
Qiming Sun
张星 (Xing Zhang)
S
Samragni Banerjee
P
Peng Bao
M
Marc Barbry
N
Nick S. Blunt
N
Nikolay A. Bogdanov
G
George H. Booth
J
Jia Chen
Z
Zhi‐Hao Cui
J
Janus J. Eriksen
Y
Yang Gao
S
Sheng Guo
J
Jan Hermann
M
Matthew R. Hermes
K
Kevin J. Koh
P
Peter Koval
S
Susi Lehtola
李振东 cover
李振东 (Zhendong Li)
J
Junzi Liu
N
Narbe Mardirossian
J
James McClain
M
Mário Motta
B
Bastien Mussard
H
Hung Q. Pham
A
Artem Pulkin
W
Wirawan Purwanto
P
Paul J. Robinson
E
Enrico Ronca
E
Elvira R. Sayfutyarova
M
Maximilian Scheurer
H
Henry F. Schurkus
J
James E. T. Smith
C
Chong Sun
S
Shi-Ning Sun
S
Shiv Upadhyay
L
Lucas K. Wagner
王晓 cover
王晓 (Xiao Wang)
A
Alec F. White
J
James Whitfield
M
Mark J. Williamson
S
Sebastian Wouters
杨军 (Jun Yang)
J
Jason M. Yu
T
Tianyu Zhu
T
Timothy C. Berkelbach
S
Sandeep Sharma
A
Alexander Yu. Sokolov
G
Garnet Kin‐Lic Chan *
DOI:10.1063/5.0006074delete
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Abstract

Abstract

En 中文
PySCF is a Python-based general-purpose electronic structure platform that supports first-principles simulations of molecules and solids as well as accelerates the development of new methodology and complex computational workflows. This paper explains the design and philosophy behind PySCF that enables it to meet these twin objectives. With several case studies, we show how users can easily implement their own methods using PySCF as a development environment. We then summarize the capabilities of PySCF for molecular and solid-state simulations. Finally, we describe the growing ecosystem of projects that use PySCF across the domains of quantum chemistry, materials science, machine learning, and quantum information science. Published under license by AIP Publishing.
Keywords:
COUPLED-CLUSTER METHOD
ELECTRIC-FIELD-GRADIENT
DENSITY-FUNCTIONAL CALCULATIONS
BATH CONFIGURATION-INTERACTION
TRANSITION-METAL-COMPLEXES
HARTREE-FOCK
ATOMIC ORBITALS
AB-INITIO
G-TENSOR
PERTURBATION-THEORY
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Key information extracted from the uploaded paper, including a brief overview, abstract, background, key highlights, visual analysis, and future outlook.

Journal

Journal of Chemical Physics cover
Journal of Chemical Physics
IF:
3.1
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7.2W
Citations:
23.2W

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