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      SASS: a symmetry adapted stochastic search algorithm exploiting site symmetry.

      1 , ,
      The Journal of chemical physics
      AIP Publishing

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          Abstract

          A simple symmetry adapted search algorithm (SASS) exploiting point group symmetry increases the efficiency of systematic explorations of complex quantum mechanical potential energy surfaces. In contrast to previously described stochastic approaches, which do not employ symmetry, candidate structures are generated within simple point groups, such as C2, Cs, and C2v. This facilitates efficient sampling of the 3N-6 Pople's dimensional configuration space and increases the speed and effectiveness of quantum chemical geometry optimizations. Pople's concept of framework groups [J. Am. Chem. Soc. 102, 4615 (1980)] is used to partition the configuration space into structures spanning all possible distributions of sets of symmetry equivalent atoms. This provides an efficient means of computing all structures of a given symmetry with minimum redundancy. This approach also is advantageous for generating initial structures for global optimizations via genetic algorithm and other stochastic global search techniques. Application of the SASS method is illustrated by locating 14 low-lying stationary points on the cc-pwCVDZ ROCCSD(T) potential energy surface of Li5H2. The global minimum structure is identified, along with many unique, nonintuitive, energetically favorable isomers.

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          Author and article information

          Journal
          J Chem Phys
          The Journal of chemical physics
          AIP Publishing
          0021-9606
          0021-9606
          Mar 14 2007
          : 126
          : 10
          Affiliations
          [1 ] Center for Computational Chemistry, University of Georgia, Athens, Georgia 30602, USA.
          Article
          10.1063/1.2646940
          17362058
          69b9350e-b56e-4496-85c4-95bd1f0813d5
          History

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