首页> 外文学位 >ROTATION-VIBRATION STATES OF WEAKLY BOUND LINEAR SYMMETRIC TRIATOMIC MOLECULES: HELIUM-HYDRIDE AND HELIUM-DEUTERIDE (HAMILTONIAN, VARIATION, DIRECT COORDINATE TRANSFORMATION).
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ROTATION-VIBRATION STATES OF WEAKLY BOUND LINEAR SYMMETRIC TRIATOMIC MOLECULES: HELIUM-HYDRIDE AND HELIUM-DEUTERIDE (HAMILTONIAN, VARIATION, DIRECT COORDINATE TRANSFORMATION).

机译:弱界线性对称三体性分子的旋转振动状态:氢化氦和氘化氦(哈密顿,变异,直接坐标转换)。

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摘要

The rotation-vibration states of the linear He(,2)H('+) and He(,2)D('+) molecules are investigated by an ab initio variational approach with the Hamiltonian recently derived by Estes and Secrest through direct coordinate transformation method. Various forms of this Hamiltonian for a linear triatomic molecule are presented. The potential energy function for the He(,2)H('+) and He(,2)D('+) molecules is expanded in terms of power series of local functions of internal coordinates. These results show strong mixing between the vibrational modes, especially between symmetric stretch and bend modes for He(,2)H('+). The effect of the motion of the nuclei on the binding energy are examined by calculating the zero point energies in the diatomics and triatomics. It is found that the zero point energy contribution destabilizes the binding in both systems and He(,2)D('+) is more stable than He(,2)H('+) by about 1.0 KJ/mol. Second order perturbation calculations are also carried out for both systems with the potential expanded to fourth order of internal coordinates. The perturbation results are surprisingly in good agreement with the accurate variational results for a few low-lying states.
机译:线性He(,2)H('+)和He(,2)D('+)分子的旋转振动状态通过从头算变分方法研究,由Estes和Secrest最近通过直接坐标导出转换方法。提出了线性三原子分子的这种哈密顿量的各种形式。 He(,2)H('+)和He(,2)D('+)分子的势能函数根据内部坐标的局部函数的幂级数展开。这些结果表明,振动模式之间尤其是He(,2)H('+)的对称拉伸和弯曲模式之间存在强烈的混合。通过计算双原子和三原子中的零点能量,可以检查原子核运动对结合能的影响。发现零点能量贡献使两个系统中的结合不稳定,并且He(,2)D('+)比He(,2)H('+)稳定约1.0 KJ / mol。还对两个系统都进行了二阶扰动计算,势能扩展到四阶内部坐标。令人惊讶的是,摄动结果与一些低洼状态的精确变化结果非常一致。

著录项

  • 作者

    LEE, JAE SHIN.;

  • 作者单位

    University of Illinois at Urbana-Champaign.;

  • 授予单位 University of Illinois at Urbana-Champaign.;
  • 学科 Chemistry Physical.
  • 学位 Ph.D.
  • 年度 1986
  • 页码 106 p.
  • 总页数 106
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类
  • 关键词

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