论文标题

在辅助场量子蒙特卡洛中利用必需的对称破坏:应用于c $ _ {36} $ fullerene的自旋间隙和铁卟啉模型复合物

Utilizing Essential Symmetry Breaking in Auxiliary-Field Quantum Monte Carlo: Application to the Spin Gaps of the C$_{36}$ Fullerene and an Iron Porphyrin Model Complex

论文作者

Lee, Joonho, Malone, Fionn D., Morales, Miguel A.

论文摘要

我们提出了三个不同的例子,其中无量相位的量子量蒙特卡洛(pH-afqmc)可以通过单确定的试验波函数可靠地进行,并具有必要的对称性断裂。我们首先利用了与pH-AFQMC的必要时间反转对称性破裂来计算TS12集合中的三重态 - 单元能隙。我们发现,与自旋无限轨道相比,具有复杂限制轨道的pH-AFQMC的统计学性能更好。然后,我们在计算已知的Biradicaloid的单三个缝隙C $ _ {36} $时显示了必要的自旋对称性破坏的利用。 pH-AFQMC具有自旋非限制的Hartree-fock(pH-AFQMC+UHF),即使没有自旋预测,也会灾难性地失败,并且没有任何Biradicaloid特征。通过从正规化轨道优化的二阶Møller-Plesset扰动理论($κ$ -OOMP2)获得的近似Brueckner轨道,pH-AFQMC定量捕获了C $ _ {36} $的强Biyaldicaloid特征。最后,我们将pH-AFQMC应用于模型铁卟啉复合物中五重 - 三个缝隙的计算,其中具有较小活性空间的蛮力方法无法捕获三重态基态。我们明确地表明,使用UHF,$κ$ -OOMP2和与单打和双打(CCSD)(CCSD)在UHF和$κ$ -OOMP2 orbitals上执行的三胞胎和五重奏都没有密切相关。这个问题没有必要的对称性破坏。鉴于此,我们能够使用CC-PVTZ基集可靠地执行UHF+PH-AFQMC,并预测了该模型几何形状的三重态基态。在这项工作中,最大的pH-AFQMC在956个轨道中关联了186个电子。我们的工作强调了pH-AFQMC的效用,可伸缩性和准确性,具有单个决定符试验波函数,对于主要由动态相关性主导的系统而言,基本的对称性破坏,几乎没有静态相关性。

We present three distinct examples where phaseless auxiliary-field Quantum Monte Carlo (ph-AFQMC) can be reliably performed with a single-determinant trial wavefunction with essential symmetry breaking. We first utilized essential time-reversal symmetry breaking with ph-AFQMC to compute the triplet-singlet energy gap in the TS12 set. We found statistically better performance of ph-AFQMC with complex-restricted orbitals than with spin-unrestricted orbitals. We then showed the utilization of essential spin symmetry breaking when computing the single-triplet gap of a known biradicaloid, C$_{36}$. ph-AFQMC with spin-unrestricted Hartree-Fock (ph-AFQMC+UHF) fails catastrophically even with spin-projection and predicts no biradicaloid character. With approximate Brueckner orbitals obtained from regularized orbital-optimized second-order Møller-Plesset perturbation theory ($κ$-OOMP2), ph-AFQMC quantitatively captures strong biradicaloid character of C$_{36}$. Lastly, we applied ph-AFQMC to the computation of the quintet-triplet gap in a model iron porphyrin complex where brute-force methods with a small active space fail to capture the triplet ground state. We show unambiguously that neither triplet nor quintet is strongly correlated using UHF, $κ$-OOMP2, and coupled-cluster with singles and doubles (CCSD) performed on UHF and $κ$-OOMP2 orbitals. There is no essential symmetry breaking in this problem. By virtue of this, we were able to perform UHF+ph-AFQMC reliably with a cc-pVTZ basis set and predicted a triplet ground state for this model geometry. The largest ph-AFQMC in this work correlated 186 electrons in 956 orbitals. Our work highlights the utility, scalability, and accuracy of ph-AFQMC with a single determinant trial wavefunction with essential symmetry breaking for systems mainly dominated by dynamical correlation with little static correlation.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源