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为电子激发的量子蒙特卡罗计算量身定制CIPSI展开:噻吩的案例研究

Tailoring CIPSI Expansions for QMC Calculations of Electronic Excitations: The Case Study of Thiophene.

作者信息

Dash Monika, Moroni Saverio, Filippi Claudia, Scemama Anthony

机构信息

MESA+ Institute for Nanotechnology, University of Twente, P.O. Box 217, 7500 AE Enschede, The Netherlands.

CNR-IOM DEMOCRITOS, Istituto Officina dei Materiali, and SISSA Scuola Internazionale Superiore di Studi Avanzati, Via Bonomea 265, I-34136 Trieste, Italy.

出版信息

J Chem Theory Comput. 2021 Jun 8;17(6):3426-3434. doi: 10.1021/acs.jctc.1c00212. Epub 2021 May 24.

Abstract

The perturbatively selected configuration interaction scheme (CIPSI) is particularly effective in constructing determinantal expansions for quantum Monte Carlo (QMC) simulations with Jastrow-Slater wave functions: fast and smooth convergence of ground-state properties and balanced descriptions of ground and excited states of different symmetries have been reported. In particular, accurate excitation energies have been obtained by the pivotal requirement of using CIPSI expansions with similar second-order perturbation corrections for each state, that is, a similar estimated distance to the full configuration interaction limit. Here, we elaborate on the CIPSI selection criterion for excited states of the same symmetry as the ground state, generating expansions from a common orbital set. Using these expansions in QMC as determinantal components of Jastrow-Slater wave functions, we compute the lowest, bright excited state of thiophene, which is challenging due to its significant multireference character. The resulting vertical excitation energies are within 0.05 eV of the best theoretical estimates, already with expansions of only a few thousand determinants. Furthermore, we relax the ground- and excited-state structures following the corresponding root in variational Monte Carlo and obtain bond lengths that are accurate to better than 0.01 Å. Therefore, while the full treatment at the CIPSI level of this system is quite demanding, in QMC, we can compute high-quality excitation energies and excited-state structural parameters building on affordable CIPSI expansions with relatively few, well-chosen determinants.

摘要

微扰选择组态相互作用方案(CIPSI)在为具有Jastrow - Slater波函数的量子蒙特卡罗(QMC)模拟构建行列式展开式方面特别有效:已报道基态性质具有快速且平滑的收敛性,以及对不同对称性的基态和激发态有平衡的描述。特别是,通过对每个态使用具有相似二阶微扰修正的CIPSI展开式这一关键要求,即与完全组态相互作用极限的相似估计距离,获得了精确的激发能。在此,我们详细阐述与基态具有相同对称性的激发态的CIPSI选择标准,从共同的轨道集生成展开式。在QMC中使用这些展开式作为Jastrow - Slater波函数的行列式分量,我们计算了噻吩的最低明亮激发态,由于其显著的多参考特征,这具有挑战性。所得的垂直激发能与最佳理论估计值相差在0.05 eV以内,仅用几千个行列式的展开式就能做到。此外,我们在变分蒙特卡罗中沿着相应的根松弛基态和激发态结构,并获得精确到优于0.01 Å的键长。因此,虽然在CIPSI水平上对该系统进行完全处理要求很高,但在QMC中,我们可以基于相对较少且精心选择的行列式的经济实惠的CIPSI展开式来计算高质量激发能和激发态结构参数。

https://cdn.ncbi.nlm.nih.gov/pmc/blobs/8642/8190955/56afa1427238/ct1c00212_0002.jpg

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