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首页> 外文期刊>The Journal of Chemical Physics >Six-dimensional calculation of the vibrational spectrum of the HFCO molecule
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Six-dimensional calculation of the vibrational spectrum of the HFCO molecule

机译:HFCO分子振动光谱的六维计算

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摘要

Bound energy levels, up to 5000 cm~(-1) of internal excitation, have been computed for the HFCO molecule. An exact six-dimensional (6D) quantum Hamiltonian, expressed in terms of Jacobi vectors, has been used, It is shown to lead to a compact form of the kinetic energy operator, easy to implement in the calculations. The primary discrete variable representation (DVR) basis set has been contracted by means of the adiabatic pseudospectral method of Friesner et al.[J.Chem.Phys.99, 324 (1993)]. Two different, global, potential energy surfaces have been considered. The calculated energy levels have been successfully assigned by an automatic labeling procedure. These levels have been compared to the experimental results, providing a test of the accuracy of the existing surfaces.
机译:对于HFCO分子,已经计算出内部激发的束缚能级,最高可达5000 cm〜(-1)。使用了用Jacobi向量表示的精确的六维(6D)量子哈密顿量,它显示出动能算符的紧凑形式,易于在计算中实现。初级离散变量表示(DVR)基集已经通过Friesner等人的绝热伪光谱方法进行了压缩[J.Chem.Phys.99,324(1993)]。已经考虑了两个不同的全局势能面。通过自动标记程序已成功分配了计算出的能级。这些水平已与实验结果进行了比较,提供了对现有表面精度的测试。

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