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首页> 外文期刊>The Journal of Chemical Physics >A study of the bending motion in tetratomic molecules by the algebraic operator expansion method
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A study of the bending motion in tetratomic molecules by the algebraic operator expansion method

机译:用代数算子展开法研究四原子分子的弯曲运动。

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We study the bending motion in the tetratomic molecules C_2H_2 (X ~1∑_g~+), C_2H_2 (A ~1A_u) trans-S_1, C_2H_2 (A ~1A_2) cis-S_1, and X ~1A_1 H_2CO. We show that the algebraic operator expansion method with only linear terms comprised of the basic operators is able to describe the main features of the level energies in these molecules in terms of two (linear) or three (trans-bent, cis-bent, and branched) parameters. By including quadratic terms, the rms deviation in comparison with experiment goes down to typically ~10 cm~(?1) over the entire range of energy 0–6000 cm~(?1). We determine the parameters by fitting the available data, and from these parameters we construct the algebraic potential functions. Our results are of particular interest in high-energy regions where spectra are very congested and conventional methods, force-field expansions or Dunham-expansions plus perturbations, are difficult to apply.
机译:我们研究了四原子分子C_2H_2(X〜1∑_g〜+),C_2H_2(A〜1A_u)反式S_1,C_2H_2(A〜1A_2)顺式S_1和X〜1A_1 H_2CO的弯曲运动。我们证明了仅由基本算子组成的线性项的代数算子展开方法能够用两个(线性)或三个(反弯,顺弯和反弯)描述这些分子中能级的主要特征。分支)参数。通过包含二次项,在整个0-6000 cm〜(?1)能量范围内,与实验相比,均方根偏差通常降至10 cm〜(?1)。我们通过拟合可用数据来确定参数,然后根据这些参数构造代数势函数。我们的结果在光谱非常拥挤且难以应用常规方法,力场扩展或Dunham扩展以及扰动的高能区域中特别有意义。

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