Wang Shuhe, Li Chenyang, Evangelista Francesco A
Department of Chemistry and Cherry Emerson Center for Scientific Computation, Emory University, Atlanta, Georgia 30322, United States.
Key Laboratory of Theoretical and Computational Photochemistry, Ministry of Education, College of Chemistry, Beijing Normal University, Beijing 100875, China.
J Chem Theory Comput. 2021 Dec 14;17(12):7666-7681. doi: 10.1021/acs.jctc.1c00980. Epub 2021 Nov 29.
We derive analytic energy gradients of the driven similarity renormalization group (DSRG) multireference second-order perturbation theory (MRPT2) using the method of Lagrange multipliers. In the Lagrangian, we impose constraints for a complete-active-space self-consistent-field reference wave function and the semicanonical orthonormal molecular orbitals. Solving for the associated Lagrange multipliers is found to share the same asymptotic scaling of a single DSRG-MRPT2 energy computation. A pilot implementation of the DSRG-MRPT2 analytic gradients is used to optimize the geometry of the singlet and triplet states of -benzyne. The equilibrium bond lengths and angles are similar to those computed via other MRPT2s and Mukherjee's multireference coupled cluster theory. An approximate DSRG-MRPT2 method that neglects the contributions of the three-body density cumulant is found to introduce negligible errors in the geometry of -benzyne, lending itself to a promising low-cost approach for molecular geometry optimizations using large active spaces.
我们使用拉格朗日乘数法推导了驱动相似重整化群(DSRG)多参考二阶微扰理论(MRPT2)的解析能量梯度。在拉格朗日量中,我们对完全活性空间自洽场参考波函数和半规范正交分子轨道施加约束。求解相关的拉格朗日乘数发现与单个DSRG-MRPT2能量计算具有相同的渐近标度。DSRG-MRPT2解析梯度的初步实现用于优化对 - 苯炔单重态和三重态的几何结构。平衡键长和键角与通过其他MRPT2和穆克吉多参考耦合簇理论计算得到的结果相似。发现一种忽略三体密度累积量贡献的近似DSRG-MRPT2方法在对 - 苯炔几何结构中引入的误差可忽略不计,这使其成为一种使用大活性空间进行分子几何结构优化的有前景的低成本方法。