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Fully anharmonic IR and Raman spectra of medium-size molecular systems: accuracy and interpretation

机译:中型分子系统的完全非谐IR和拉曼光谱:准确性和解释

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摘要

Computation of full infrared (IR) and Raman spectra (including absolute intensities and transition energies) for medium- and large-sized molecular systems beyond the harmonic approximation is one of the most interesting challenges of contemporary computational chemistry. Contrary to common beliefs, low-order perturbation theory is able to deliver results of high accuracy (actually often better than those issuing from current direct dynamics approaches) provided that anharmonic resonances are properly managed. This perspective sketches the recent developments in our research group toward the development a robust and user-friendly virtual spectrometer rooted into the second-order vibrational perturbation theory (VPT2) and usable also by non-specialists essentially as a black-box procedure. Several examples are explicitly worked out in order to illustrate the features of our computational tool together with the most important ongoing developments.
机译:除谐波近似外,中大型分子系统的全红外(IR)和拉曼光谱(包括绝对强度和跃迁能)的计算是当代计算化学最有趣的挑战之一。与通常的看法相反,只要对非谐共振进行了适当的管理,低阶摄动理论就可以提供高精度的结果(实际上通常要好于当前直接动力学方法的结果)。这种观点勾勒了我们研究小组最近的发展方向,该发展方向是扎根于二阶振动摄动理论(VPT2)的健壮且用户友好的虚拟光谱仪的发展,非专业人员也可以将其用作黑盒程序。为了明确说明我们的计算工具的功能以及最重要的持续发展,已明确列出了几个示例。

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