The Journal of Chemical Physics · 2014 · 47 citations · 26 references
EngineeringMany-body Quantum PhysicSeniority NumberComputational ChemistryEnergy MinimizationSystems EngineeringExcitation SchemesConfiguration Interaction MethodN-electron SystemPhysicsDesignComputer EngineeringConfiguration ManagementQuantum ChemistryAb-initio MethodNatural SciencesMechanical SystemsProcess ControlSlater DeterminantsMany-body Problem
We present a configuration interaction method in which the Hamiltonian of an N-electron system is projected on Slater determinants selected according to the seniority-number criterion along with the traditional excitation-based procedure. This proposed method is especially useful to describe systems which exhibit dynamic (weak) correlation at determined geometric arrangements (where the excitation-based procedure is more suitable) but show static (strong) correlation at other arrangements (where the seniority-number technique is preferred). The hybrid method amends the shortcomings of both individual determinant selection procedures, yielding correct shapes of potential energy curves with results closer to those provided by the full configuration interaction method.
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<i>The Nuclear Many-Body Problem</i>
Peter Smith Ring, Peter Schuck, M. R. Strayer · Physics Today · 1983 · 3.6K citations
Nuclear Dynamics, Experimental Nuclear Physics, Nuclear Structure +14
PSI3: An open‐source <i>Ab Initio</i> electronic structure package
T. Daniel Crawford, C. David Sherrill, Edward F. Valeev et al. · Journal of Computational Chemistry · 2007 · 275 citations · Full text