Suppr超能文献

从头算波数精确光谱学:自动生成的IMLS势能面上的1CH2和HCN振动态能级。

Ab initio wavenumber accurate spectroscopy: 1CH2 and HCN vibrational levels on automatically generated IMLS potential energy surfaces.

作者信息

Dawes Richard, Wagner Albert F, Thompson Donald L

机构信息

Department of Chemistry, University of Missouri-Columbia, Columbia, Missouri 65211, USA.

出版信息

J Phys Chem A. 2009 Apr 23;113(16):4709-21. doi: 10.1021/jp900409r.

Abstract

We report here calculated J = 0 vibrational frequencies for (1)CH(2) and HCN with root-mean-square error relative to available measurements of 2.0 cm(-1) and 3.2 cm(-1), respectively. These results are obtained with DVR calculations with a dense grid on ab initio potential energy surfaces (PESs). The ab initio electronic structure calculations employed are Davidson-corrected MRCI calculations with double-, triple-, and quadruple-zeta basis sets extrapolated to the complete basis set (CBS) limit. In the (1)CH(2) case, Full CI tests of the Davidson correction at small basis set levels lead to a scaling of the correction with the bend angle that can be profitably applied at the CBS limit. Core-valence corrections are added derived from CCSD(T) calculations with and without frozen cores. Relativistic and non-Born-Oppenheimer corrections are available for HCN and were applied. CBS limit CCSD(T) and CASPT2 calculations with the same basis sets were also tried for HCN. The CCSD(T) results are noticeably less accurate than the MRCI results while the CASPT2 results are much poorer. The PESs were generated automatically using the local interpolative moving least-squares method (L-IMLS). A general triatomic code is described where the L-IMLS method is interfaced with several common electronic structure packages. All PESs were computed with this code running in parallel on eight processors. The L-IMLS method provides global and local fitting error measures important in automatically growing the PES from initial ab initio seed points. The reliability of this approach was tested for (1)CH(2) by comparing DVR-calculated vibrational levels on an L-IMLS ab initio surface with levels generated by an explicit ab initio calculation at each DVR grid point. For all levels ( approximately 200) below 20 000 cm(-1), the mean unsigned difference between the levels of these two calculations was 0.1 cm(-1), consistent with the L-IMLS estimated mean unsigned fitting error of 0.3 cm(-1). All L-IMLS PESs used in this work have comparable mean unsigned fitting errors, implying that fitting errors have a negligible role in the final errors of the computed vibrational levels with experiment. Less than 500 ab initio calculations of the energy and gradients are required to achieve this level of accuracy.

摘要

我们在此报告了(1)CH₂和HCN的J = 0振动频率计算结果,相对于现有测量值的均方根误差分别为2.0 cm⁻¹和3.2 cm⁻¹。这些结果是通过在从头算势能面(PES)上使用密集网格的离散变量表示(DVR)计算得到的。所采用的从头算电子结构计算是采用双ζ、三ζ和四ζ基组并外推到完备基组(CBS)极限的戴维森校正多参考组态相互作用(MRCI)计算。在(1)CH₂的情况中,在小基组水平下对戴维森校正进行的完全组态相互作用(Full CI)测试得出校正与弯曲角的标度关系,该关系可有效地应用于CBS极限。添加了从含和不含冻结芯的耦合簇单双激发(CCSD(T))计算得出的芯价校正。相对论和非玻恩-奥本海默校正可用于HCN并已应用。对于HCN还尝试了使用相同基组的CBS极限CCSD(T)和完全活化空间自洽场二阶微扰理论(CASPT2)计算。CCSD(T)结果的准确性明显低于MRCI结果,而CASPT2结果则差得多。PES是使用局部插值移动最小二乘法(L-IMLS)自动生成的。描述了一个通用的三原子代码,其中L-IMLS方法与几个常见的电子结构软件包相连接。所有PES都是用此代码在八个处理器上并行运行计算得到的。L-IMLS方法提供了全局和局部拟合误差度量,这对于从初始从头算种子点自动扩展PES很重要。通过比较在L-IMLS从头算表面上DVR计算的振动能级与在每个DVR网格点通过显式从头算计算生成的能级,对(1)CH₂测试了这种方法的可靠性。对于20000 cm⁻¹以下的所有能级(约200个),这两种计算的能级之间的平均无符号差异为0.1 cm⁻¹,与L-IMLS估计的平均无符号拟合误差0.3 cm⁻¹一致。本工作中使用的所有L-IMLS PES具有可比的平均无符号拟合误差,这意味着拟合误差在与实验计算的振动能级的最终误差中作用可忽略不计。达到此精度水平所需的能量和梯度的从头算计算少于500次。

文献AI研究员

20分钟写一篇综述,助力文献阅读效率提升50倍。

立即体验

用中文搜PubMed

大模型驱动的PubMed中文搜索引擎

马上搜索

文档翻译

学术文献翻译模型,支持多种主流文档格式。

立即体验