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Photodissociation of water in the (A)over-tilde band revisited with new potential energy surfaces

机译:重新研究(A)超倾斜带中水的光解离,并利用新的势能面

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Theoretical calculations on the photodissociation of water in the first absorption band have been used to test the accuracy of three available potential energy surfaces for the first excited state of water: the well-known coupled electron pair approximation potential of Staemmler and Palma [Chem. Phys. 93, 63 (1985)], and two new multireference double excitation configuration interaction surfaces: the Dobbyn-Knowles surface (unpublished), and the Leiden surface [R. van Harrevelt and M. C. van Hemert, J. Chem. Phys. 112, 5777 (2000)]. Exact quantum mechanical calculations, using the wave packet approach, have been performed for J">0, where J" is the initial rotational state of the water molecule. The cross section was found not to depend strongly on the rotational state, so that it is reasonable to compare calculated cross sections for J"=0 with experimental room temperature cross sections. Small and simple corrections were applied to the potential energy surface to improve the agreement between theory and experiment for the cross section of H2O. Spectra for D2O and vibrationally excited water molecules calculated with all three corrected potential energy surfaces were in good agreement with experiments. A comparison between calculated OH(X) or OD(X) vibrational distributions, and recent kinetic energy release measurements of the H or D atoms produced in the 157.6 nm photodissociation of water and its isotopomers [Yang , J. Chem. Phys. 113, 10597 (2000)], however, suggests that the Leiden surface is more accurate than the two other surfaces. (C) 2001 American Institute of Physics. [References: 35]
机译:关于水在第一吸收带中的光解离的理论计算已用于测试水的第一激发态的三个可用势能面的准确性:众所周知的Staemmler和Palma耦合电子对近似势[Chem。物理93,63(1985)],以及两个新的多参考双激发配置相互作用表面:Dobbyn-Knowles表面(​​未出版)和Leiden表面[R. van Harrevelt和M.C. van Hemert,J。Chem。物理112,5777(2000)]。已经使用波包方法对J 0进行了精确的量子力学计算,其中J“是水分子的初始旋转状态。发现该横截面与旋转状态没有很大关系,因此将J“ = 0的计算横截面与实验室温横截面进行比较是合理的。对势能表面进行了小而简单的校正,以改善势能面。 H2O的横截面理论与实验之间的一致性。用所有三个校正的势能面计算的D2O和振动激发的水分子的光谱与实验吻合良好。计算的OH(X)或OD(X)振动分布的比较,以及最近对水及其同功异构体在157.6 nm光解中产生的H或D原子进行的动能释放测量[Yang,J. Chem。Phys。113,10597(2000)],但是,表明莱顿表面更比其他两个表面更精确(C)2001年美国物理研究所[参考文献:35]

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