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H2-CO 光谱的综合实验和理论研究。

A comprehensive experimental and theoretical study of H2-CO spectra.

机构信息

Department of Quantum Chemistry, Faculty of Chemistry, Nicolaus Copernicus University, Gagarina 7, 87-100 Toruń, Poland.

出版信息

J Chem Phys. 2013 Feb 28;138(8):084307. doi: 10.1063/1.4791712.

Abstract

A detailed description of a new ab initio interaction potential energy surfaces for the H2-CO complex computed on a six-dimensional grid (i.e., including the dependence on the H-H and C-O separations) is presented. The interaction energies were first calculated using the coupled-cluster method with single, double, and noniterative triple excitations and large basis sets, followed by an extrapolation procedure. Next, a contribution from iterative triple and noniterative quadruple excitations was added from calculations in smaller basis sets. The resulting interaction energies were then averaged over the ground-state and both ground- and first-excited-states vibrational wave functions of H2 and CO, respectively. The two resulting four-dimensional potential energy surfaces were fitted by analytic expressions. Theoretical infrared spectra calculated from these surfaces have already been shown [P. Jankowski, A. R. W. McKellar, and K. Szalewicz, Science 336, 1147 (2012)] to agree extremely well, to within a few hundredth of wavenumber, with the experimental spectra of the para and orthoH2-CO complex. In the latter case, this agreement enabled an assignment of the experimental spectrum, ten years after it had been measured. In the present paper, we provide details concerning the development of the surfaces and the process of spectral line assignment. Furthermore, we assign some transitions for paraH2-CO that have not been assigned earlier. A completely new element of the present work are experimental investigations of the orthoH2-CO complex using microwave spectroscopy. Vast parts of the measured spectrum have been interpreted by comparisons with the infrared experiments, including new low-temperature ones, and theoretical spectrum. Better understanding of the spectra of both para and orthoH2-CO complexes provides a solid foundation for a new search of the bound H2-CO complex in space.

摘要

本文详细描述了一种新的从头算相互作用势能面,用于计算 H2-CO 复合物在六维网格上的能量(即,包括对 H-H 和 C-O 距离的依赖关系)。首先,使用包含单、双和非迭代三重激发以及大基组的耦合簇方法计算了相互作用能,然后进行了外推处理。接下来,从较小基组的计算中添加了迭代三重和非迭代四重激发的贡献。然后,将所得的相互作用能分别在 H2 和 CO 的基态和基态及第一激发态振动波函数上进行平均。最后,通过解析表达式拟合了两个得到的四维势能面。从这些表面计算出的理论红外光谱已经显示[P. Jankowski、A. R. W. McKellar 和 K. Szalewicz,Science 336, 1147 (2012)]与 para 和 orthoH2-CO 复合物的实验光谱非常吻合,在波数上的误差只有几百分之一。在后一种情况下,这种一致性使得能够对实验光谱进行十年后的归属。在本文中,我们提供了关于表面开发和谱线归属过程的详细信息。此外,我们还对 paraH2-CO 的一些未归属的跃迁进行了归属。本工作的一个全新元素是使用微波光谱对 orthoH2-CO 复合物的实验研究。与红外实验,包括新的低温实验和理论光谱进行比较,解释了测量光谱的大部分内容。对 para 和 orthoH2-CO 复合物的光谱的更好理解为在太空中寻找新的 H2-CO 复合物提供了坚实的基础。

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