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H2O Photodissociation Dynamics Based on Potential Energy Surfaces from Density Functional Calculations

机译:基于势能面的H2O光解离动力学从密度泛函计算

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摘要

We investigate the usefulness of density functional theory (DFT) for calculating excited state potential energy surfaces. In the DFT calculations, the generalized gradient approximation (GGA) is used. As a test case, the photodissociation of H2O through the first excited  1B1 state was considered. Two‐dimensional potential energy surfaces were obtained for both the  1A1 ground state and the first excited state. Wave packet calculations employing these surfaces were used to obtain both the absorption spectrum and partial photodissociation cross sections, which are resolved with respect to the final vibrational state of the OH fragment. Comparisons are made with a previously calculated high level ab initio potential energy surface, with dynamics calculations using that surface, and with experiment. The vertical excitation energy for the ( 1A1→ 1B1) transition calculated using DFT is in good agreement with the previous ab initio calculations. The absorption spectrum and the partial cross sections obtained with the DFT treatment are in good agreement with experiment. © 1995 American Institute of Physics.
机译:我们调查了密度泛函理论(DFT)在计算激发态势能面时的有用性。在DFT计算中,使用了广义梯度近似(GGA)。作为测试案例,考虑了H2O通过第一个激发的B1B1状态的光解离。对于1A1基态和第一激发态都获得了二维势能面。使用这些表面的波包计算可同时获得吸收光谱和部分光解离截面,这些截面相对于OH片段的最终振动状态得以解析。与先前计算的高水平从头算势能表面进行比较,并使用该表面进行动力学计算并与实验进行比较。使用DFT计算的(1A1→1B1)跃迁的垂直激发能与先前的从头算起的计算非常吻合。 DFT处理得到的吸收光谱和部分截面与实验吻合良好。 ©1995美国物理研究所。

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