| Literature DB >> 26561362 |
Francesco Aquilante1,2, Jochen Autschbach3, Rebecca K Carlson4, Liviu F Chibotaru5, Mickaël G Delcey1, Luca De Vico6, Ignacio Fdez Galván1,7, Nicolas Ferré8, Luis Manuel Frutos9, Laura Gagliardi4, Marco Garavelli2,10, Angelo Giussani2, Chad E Hoyer4, Giovanni Li Manni4,11, Hans Lischka12,13, Dongxia Ma4,11, Per Åke Malmqvist14, Thomas Müller15, Artur Nenov2, Massimo Olivucci16,17,18, Thomas Bondo Pedersen19, Daoling Peng20, Felix Plasser13, Ben Pritchard3, Markus Reiher21, Ivan Rivalta10, Igor Schapiro18,22, Javier Segarra-Martí2, Michael Stenrup1,7, Donald G Truhlar4, Liviu Ungur5, Alessio Valentini9,16, Steven Vancoillie14, Valera Veryazov14, Victor P Vysotskiy14, Oliver Weingart23, Felipe Zapata9, Roland Lindh1,7.
Abstract
In this report, we summarize and describe the recent unique updates and additions to the Molcas quantum chemistry program suite as contained in release version 8. These updates include natural and spin orbitals for studies of magnetic properties, local and linear scaling methods for the Douglas-Kroll-Hess transformation, the generalized active space concept in MCSCF methods, a combination of multiconfigurational wave functions with density functional theory in the MC-PDFT method, additional methods for computation of magnetic properties, methods for diabatization, analytical gradients of state average complete active space SCF in association with density fitting, methods for constrained fragment optimization, large-scale parallel multireference configuration interaction including analytic gradients via the interface to the Columbus package, and approximations of the CASPT2 method to be used for computations of large systems. In addition, the report includes the description of a computational machinery for nonlinear optical spectroscopy through an interface to the QM/MM package Cobramm. Further, a module to run molecular dynamics simulations is added, two surface hopping algorithms are included to enable nonadiabatic calculations, and the DQ method for diabatization is added. Finally, we report on the subject of improvements with respects to alternative file options and parallelization.Entities:
Keywords: electron correlation; gradients; molecular dynamics; parallelization; relativistic
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Year: 2015 PMID: 26561362 DOI: 10.1002/jcc.24221
Source DB: PubMed Journal: J Comput Chem ISSN: 0192-8651 Impact factor: 3.376