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热浴组态相互作用下亚甲基、多烯和臭氧的激发态

Excited States of Methylene, Polyenes, and Ozone from Heat-Bath Configuration Interaction.

作者信息

Chien Alan D, Holmes Adam A, Otten Matthew, Umrigar C J, Sharma Sandeep, Zimmerman Paul M

机构信息

Department of Chemistry , University of Michigan , Ann Arbor , Michigan 48109 , United States.

Department of Chemistry and Biochemistry , University of Colorado Boulder , Boulder , Colorado 80302 , United States.

出版信息

J Phys Chem A. 2018 Mar 15;122(10):2714-2722. doi: 10.1021/acs.jpca.8b01554. Epub 2018 Mar 2.

Abstract

The electronically excited states of methylene (CH), ethylene (CH), butadiene (CH), hexatriene (CH), and ozone (O) have long proven challenging due to their complex mixtures of static and dynamic correlations. The semistochastic heat-bath configuration interaction (SHCI) algorithm, which efficiently and systematically approaches the full configuration interaction (FCI) limit, is used to provide close approximations to the FCI energies in these systems. This article presents the largest FCI-level calculation to date on hexatriene, using a polarized double-ζ basis (ANO-L-pVDZ), which gives rise to a Hilbert space containing more than 10 determinants. These calculations give vertical excitation energies of 5.58 and 5.59 eV, respectively, for the 2A and 1B states, showing that they are nearly degenerate. The same excitation energies in butadiene/ANO-L-pVDZ were found to be 6.58 and 6.45 eV. In addition to these benchmarks, our calculations strongly support the presence of a previously hypothesized ring-minimum species of ozone that lies 1.3 eV higher than the open-ring-minimum energy structure and is separated from it by a barrier of 1.11 eV.

摘要

长期以来,由于亚甲基(CH)、乙烯(CH)、丁二烯(CH)、己三烯(CH)和臭氧(O)的电子激发态存在静态和动态相关性的复杂混合,对其研究一直具有挑战性。半随机热浴组态相互作用(SHCI)算法能够高效且系统地逼近完全组态相互作用(FCI)极限,被用于为这些体系中的FCI能量提供近似值。本文给出了迄今为止对己三烯进行的最大规模FCI水平计算,采用极化双ζ基(ANO-L-pVDZ),这产生了一个包含超过10个行列式的希尔伯特空间。这些计算得出,2A和1B态的垂直激发能分别为5.58和5.59电子伏特,表明它们几乎简并。在丁二烯/ANO-L-pVDZ中,相同激发能为6.58和6.45电子伏特。除了这些基准计算外,我们的计算有力地支持了此前假设的臭氧的一种环状极小物种的存在,该物种比开环极小能量结构高1.3电子伏特,且与开环极小能量结构之间隔着1.11电子伏特的势垒。

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