Chwee Tsz S, Szilva Andrew B, Lindh Roland, Carter Emily A
Department of Chemistry, Princeton University, Princeton, New Jersey 08544, USA.
J Chem Phys. 2008 Jun 14;128(22):224106. doi: 10.1063/1.2937443.
A linear scaling multireference singles and doubles configuration interaction (MRSDCI) method has been developed. By using localized bases to span the occupied and virtual subspace, local truncation schemes can be applied in tandem with integral screening to reduce the various bottlenecks in a MRSDCI calculation. Among these, the evaluation of electron repulsion integrals and their subsequent transformation, together with the diagonalization of the large CI Hamiltonian matrix, correspond to the most computationally intensive steps in a MRSDCI calculation. We show that linear scaling is possible within each step. The scaling of the method with system size is explored with a system of linear alkane chains and we proceed to demonstrate this method can produce smooth potential energy surfaces via calculating the dissociation of trans-6-dodecene (C(12)H(24)) along the central C[Double Bond]C bond.
已开发出一种线性标度多参考单双激发组态相互作用(MRSDCI)方法。通过使用定域基来跨越占据和虚拟子空间,局部截断方案可与积分筛选串联应用,以减少MRSDCI计算中的各种瓶颈。其中,电子排斥积分的计算及其后续变换,以及大的CI哈密顿矩阵的对角化,是MRSDCI计算中计算量最大的步骤。我们表明,每个步骤都可以实现线性标度。用线性烷烃链系统研究了该方法随系统大小的标度,并通过计算反式-6-十二碳烯(C(12)H(24))沿中心C=C键的解离,证明该方法可以产生平滑的势能面。