The ORCA quantum chemistry program package
Пакет программ квантовой химии ORCA
2020-06-12
SCID: 54.1/cz6g9qe2
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ORCA quantum chemistry programQM/MM (quantum mechanics/molecular mechanics)density functional theorydomain based local pair natural orbital methodswavefunction based correlation methods
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Abstract (AI)
In this contribution to the special software-centered issue, the ORCA program package is described. We start with a short historical perspective of how the project began and go on to discuss its current feature set. ORCA has grown into a rather comprehensive general-purpose package for theoretical research in all areas of chemistry and many neighboring disciplines such as materials sciences and biochemistry. ORCA features density functional theory, a range of wavefunction based correlation methods, semi-empirical methods, and even force-field methods. A range of solvation and embedding models is featured as well as a complete intrinsic to ORCA quantum mechanics/molecular mechanics engine. A specialty of ORCA always has been a focus on transition metals and spectroscopy as well as a focus on applicability of the implemented methods to "real-life" chemical applications involving systems with a few hundred atoms. In addition to being efficient, user friendly, and, to the largest extent possible, platform independent, ORCA features a number of methods that are either unique to ORCA or have been first implemented in the course of the ORCA development. Next to a range of spectroscopic and magnetic properties, the linear- or low-order single- and multi-reference local correlation methods based on pair natural orbitals (domain based local pair natural orbital methods) should be mentioned here. Consequently, ORCA is a widely used program in various areas of chemistry and spectroscopy with a current user base of over 22 000 registered users in academic research and in industry.
Key Findings
1
ORCA emphasizes transition-metal chemistry and spectroscopy, and applicability to real-life systems of a few hundred atoms.
2
ORCA implements unique or first-in-ORCA methods, notably linear- or low-order single- and multi-reference local correlation methods based on pair natural orbitals (domain-based local PNO methods).
3
ORCA includes solvation and embedding models plus a built-in quantum mechanics/molecular mechanics (QM/MM) engine.
4
ORCA is a comprehensive, general-purpose quantum chemistry package covering DFT, wavefunction correlation, semi-empirical, and force-field methods.
5
ORCA is widely used, with over 22,000 registered users in academia and industry.
Research Object
The ORCA quantum chemistry program package
Research Subject
The features, capabilities, and applicability of ORCA (methods implemented, spectroscopic and magnetic property calculations, local correlation methods such as domain-based local pair natural orbital approaches, solvation/embedding and QM/MM support, efficiency and usability for real-life systems up to a few hundred atoms)
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2020-06-12
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References available in scid.ai6
Molecular dynamics with coupling to an external bath1984
The ORCA program system2011
Avogadro: an advanced semantic chemical editor, visualization, and analysis platform2012
A multicenter numerical integration scheme for polyatomic molecules1988
Efficient molecular numerical integration schemes1995
Gabedit—A graphical user interface for computational chemistry softwares2010
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