首页> 外文期刊>Atmospheric and oceanic optics >Simulation of the Vibrational-Rotational Energy Levels of D_2~(18)O, HD~(18)O, D_2~(17)O, and HD~(17)O Molecules by the Effective Hamiltonian Approach
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Simulation of the Vibrational-Rotational Energy Levels of D_2~(18)O, HD~(18)O, D_2~(17)O, and HD~(17)O Molecules by the Effective Hamiltonian Approach

机译:用有效哈密顿方法模拟D_2〜(18)O,HD〜(18)O,D_2〜(17)O和HD〜(17)O分子的振动-转动能级

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摘要

The vibrational-rotational energy levels of the first and second triads and the first and second hexads of the D_2~(18)O, HD~(18)O, D_2~(17)O, and HD~(17)O molecules are simulated on the basis of the Watson-type Hamiltonian and the rotation operator written in terms of the Padé–Borel approximants. Rotational, centrifugal distortion, and resonance constants and mixing coefficients of the resulting wave functions are found by the least squares method. The resonance interactions are analyzed. The predictive capability of the effective Hamiltonian parameters found is examined for the long extrapolated rotational quantum numbers.
机译:D_2〜(18)O,HD〜(18)O,D_2〜(17)O和HD〜(17)O分子的第一和第二三元组以及第一和第二六角形的振动旋转能级为基于Watson型哈密顿量和以Padé-Borel近似值编写的旋转算子进行了模拟。通过最小二乘法求出了旋转波,离心畸变,共振常数以及所产生波函数的混合系数。分析了共振相互作用。对于长外推的旋转量子数,检查了发现的有效哈密顿量参数的预测能力。

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