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首页> 外文期刊>Journal of chemical theory and computation: JCTC >Second-Order Perturbation Theory for Generalized Active Space Self Consistent-Field Wave Functions
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Second-Order Perturbation Theory for Generalized Active Space Self Consistent-Field Wave Functions

机译:广义有源空间自洽场波函数的二阶摄动理论

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摘要

A multireference second-order perturbation theory approach based on the generalized active space self-consistent-field (GASSCF) wave function is presented. Compared with the complete active space (CAS) and restricted active space (RAS) wave functions, GAS wave functions are more flexible and can employ larger active spaces and/or different truncations of the configuration interaction expansion. With GASSCF, one can explore chemical systems that are not affordable with either CASSCF or RASSCF. Perturbation theory to second order on top of GAS wave functions (GASPT2) has been implemented to recover the remaining electron correlation. The method has been benchmarked by computing the chromium dimer ground-state potential energy curve. These calculations show that GASPT2 gives results similar to CASPT2 even with a configuration interaction expansion much smaller than the corresponding CAS expansion.
机译:提出了一种基于广义主动空间自洽场波函数的多参考二阶摄动理论方法。与完整活动空间(CAS)和受限活动空间(RAS)波函数相比,GAS波函数更加灵活,可以采用更大的活动空间和/或配置交互扩展的不同截断。借助GASSCF,人们可以探索CASSCF或RASSCF无法负担的化学系统。已经实施了基于GAS波函数(GASPT2)的二阶微扰理论来恢复剩余的电子相关性。该方法已通过计算铬二聚体基态势能曲线进行了基准测试。这些计算表明,即使配置交互扩展比相应的CAS扩展小得多,GASPT2也会提供与CASPT2类似的结果。

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