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Tailored multilevel approaches in vibrational structure theory: A route to quantum mechanical vibrational spectra for complex systems

机译:振动结构理论的量身定制的多级方法:复杂系统量子机械振动谱的路径

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摘要

Vibrational spectroscopies have emerged as important tools to elucidate structures and processes in life sciences. The interpretation of vibrational spectra requires, in most cases, computational assistance and account for anharmonic effects. Pushing the size limitations of anharmonic vibrational structure calculations is therefore of great interest. Fortunately, interpretation of the experimental results often requires only a limited part of the vibrational spectrum. Hence, it can be expected that multilevel approaches, focusing computational effort on the relevant parts, are highly beneficial. Still, such approaches are rather sparse in the field of vibrational structure theory. In this perspective, we outline the present status on multilevel static vibrational wave functions and rectilinear vibrational coordinates. We further foresee how those ingredients can be combined to formulate a comprehensive multilevel vibrational structure framework.
机译:振动光谱已成为阐明生命科学结构和过程的重要工具。在大多数情况下,对振动光谱的解释需要计算帮助,并考虑非谐效应。因此,推动非简谐振动结构计算的尺寸限制具有重大意义。幸运的是,解释实验结果通常只需要振动光谱的有限部分。因此,可以预期,将计算工作集中在相关部分的多层次方法是非常有益的。然而,在振动结构理论领域,这样的方法相当稀少。从这个角度出发,我们概述了多能级静态振动波函数和直线振动坐标的研究现状。我们进一步预见了如何将这些成分结合起来,形成一个全面的多层次振动结构框架。

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