Taube Andrew G, Bartlett Rodney J
Quantum Theory Project, University of Florida, Gainesville, Florida 32608, USA.
J Chem Phys. 2008 Jan 28;128(4):044110. doi: 10.1063/1.2830236.
Despite the successes of spin-restricted coupled-cluster singles, doubles, and perturbative triples [CCSD(T)], it fails for systems away from equilibria, which might raise questions about transition states, e.g. In an attempt to remedy this failure, we implemented LambdaCCSD(T) in a general purpose form for open and closed shells and with arbitrary single determinant reference functions, and applied it to a wide variety of bond-breaking examples. LambdaCCSD(T) is shown to substantially improve the behavior of CCSD(T) at long bond lengths without significantly affecting the quality of the equilibrium results. Weighted average nonparallelity errors for HF, C(2), N(2), and H(2)O are reduced from 22 mhartree for CCSD(T) to 10 mhartree for LambdaCCSD(T). Using LambdaCCSD(T) with a Brueckner reference provides the best single reference coupled-cluster description of N(2)'s dissociation curve to date. Application of CCSD(T) and LambdaCCSD(T) to the concerted transition state of 1,3,5-trinitrohexahydro-1,3,5-triazine (RDX) indicates that this transition state is well described by either methods, and indicates that the activation barrier is too high for it to be a major pathway of decomposition.
尽管自旋限制耦合簇单双激发及微扰三激发 [CCSD(T)] 方法取得了成功,但它在远离平衡态的体系中失效,这可能会引发关于过渡态的问题,例如。为了弥补这一缺陷,我们以通用形式实现了适用于开壳层和闭壳层且具有任意单行列式参考函数的LambdaCCSD(T),并将其应用于各种断键示例。结果表明,LambdaCCSD(T)在长键长时能显著改善CCSD(T)的性能,同时不会显著影响平衡态结果的质量。HF、C₂、N₂和H₂O的加权平均非平行性误差从CCSD(T)的22毫哈特里降至LambdaCCSD(T)的10毫哈特里。使用具有布吕克纳参考的LambdaCCSD(T)能提供迄今为止对N₂解离曲线的最佳单参考耦合簇描述。将CCSD(T)和LambdaCCSD(T)应用于1,3,5-三硝基六氢-1,3,5-三嗪(RDX)的协同过渡态表明,这两种方法都能很好地描述该过渡态,且表明其活化能垒过高,不可能是主要的分解途径。