Seifert Nathan A, Prozument Kirill, Davis Michael J
Chemical Sciences and Engineering Division, Argonne National Laboratory, Lemont, Illinois 60439, USA.
J Chem Phys. 2022 Apr 7;156(13):134117. doi: 10.1063/5.0087385.
Comparing a discrete molecular spectrum to a continuous molecular spectrum in a quantitative manner is a challenging problem, for example, when attempting to fit a theoretical stick spectrum to a continuous spectrum. In this paper, the use of computational optimal transport is investigated for such a problem. In the optimal transport literature, the comparison of a discrete and a continuous spectrum is referred to as semi-discrete optimal transport and is a situation where a metric such as least-squares may be difficult to define except under special conditions. The merits of an optimal transport approach for this problem are investigated using the transport distance defined for the semi-discrete case. A tutorial on semi-discrete optimal transport for molecular spectra is included in this paper, and several well-chosen synthetic spectra are investigated to demonstrate the utility of computational optimal transport for the semi-discrete case. Among several types of investigations, we include calculations showing how the frequency resolution of the continuous spectrum affects the transport distance between a discrete and a continuous spectrum. We also use the transport distance to measure the distance between a continuous experimental electronic absorption spectrum of SO and a theoretical stick spectrum for the same system. The comparison of the theoretical and experimental SO spectra also allows us to suggest a theoretical value for the band origin that is closer to the observed band origin than previous theoretical values.
以定量方式将离散分子光谱与连续分子光谱进行比较是一个具有挑战性的问题,例如,当试图将理论棒状光谱拟合到连续光谱时。在本文中,针对此类问题研究了计算最优传输的应用。在最优传输文献中,离散光谱与连续光谱的比较被称为半离散最优传输,并且在这种情况下,除了特殊条件外,诸如最小二乘法之类的度量可能难以定义。使用为半离散情况定义的传输距离来研究针对此问题的最优传输方法的优点。本文包含了关于分子光谱半离散最优传输的教程,并研究了几个精心挑选的合成光谱,以证明计算最优传输在半离散情况下的实用性。在几种类型的研究中,我们进行了计算,展示了连续光谱的频率分辨率如何影响离散光谱与连续光谱之间的传输距离。我们还使用传输距离来测量SO的连续实验电子吸收光谱与同一系统的理论棒状光谱之间的距离。理论SO光谱与实验光谱的比较还使我们能够提出一个比先前理论值更接近观测带源的带源理论值。