Acceleration of Correlation-corrected Vibrational Self-consistent Field Calculation Times for Large Polyatomic Molecules

被引:0
作者
Liat Pele
Brina Brauer
R. Benny Gerber
机构
[1] The Hebrew University of Jerusalem,Department of Physical Chemistry and Fritz Haber Research Center
[2] University of California,Department of Chemistry
来源
Theoretical Chemistry Accounts | 2007年 / 117卷
关键词
Vibrational anharmonicity; Vibrational states; Normal modes; Vibrational self-consistent field; Correlation-corrected vibrational self-consistent field;
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学科分类号
摘要
Acceleration of the correlation-corrected Vibrational self-consistent field (CC-VSCF) method for anharmonic calculations of vibrational states of polyatomic molecules is described. The acceleration assumes pairwise additive interactions between different normal modes, and employs orthogonality of the single-mode vibrational wavefunctions. This greatly reduces the effort in computing correlation effects between different vibrational modes, which is treated by second order perturbation theory in CC-VSCF. The acceleration can improve the scaling of the overall computational effort from N6 to N4, where N is the number of vibrational modes. Sample calculation times, using semi-empirical potential surfaces (PM3), are given for a series of glycine peptides. Large computational acceleration, and significant reduction of the scaling of the effort with system size, is found and discussed.
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页码:69 / 72
页数:3
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