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DVR3D: a program suite for the calculation of rotation-vibration spectra of triatomic molecules

机译:DVR3D:一个用于计算三原子分子旋转振动光谱的程序套件

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The DVR3D program suite calculates energy levels, wavefunctions, and where appropriate dipole transition moments, for rotating and vibrating triatomic molecules. Potential energy and, where necessary, dipole surfaces must be provided. Expectation values of geometrically defined functions can be calculated, a feature which is particularly useful for fitting potential energy surfaces. The programs use an exact (within the Born-Oppenheimer approximation) Hamiltonian and offer a choice of Jacobi or Radau internal coordinates and several body-fixed axes. Rotationally excited states are treated using an efficient two-step algorithm. The programs uses a Discrete Variable Representation (DVR) based on Gauss-Jacobi and Gauss-Laguerre quadrature for all 3 internal coordinates and thus yields a fully point-wise representation of the wavefunctions. The vibrational step uses successive diagonalisation and truncation which is implemented for a number of possible coordinate orderings. The rotational, expectation value and transition dipole programs exploit the savings offered by performing integrals on a DVR grid. The new version has been rewritten in FORTRAN 90 to exploit the dynamic array allocations and the algorithm for dipole and spectra calculations have been substantially improved. New modules allow the z-axis to be embedded perpendicular to the plane of the molecule and for the calculation of expectation values.
机译:DVR3D程序套件可计算能量水平,波函数以及适当的偶极跃迁矩,以旋转和振动三原子分子。必须提供势能,并在必要时提供偶极子表面。可以计算几何定义函数的期望值,该特征对于拟合势能表面特别有用。程序使用精确的(在Born-Oppenheimer近似范围内)哈密顿量,并提供Jacobi或Radau内部坐标和多个固定轴的选择。使用有效的两步算法处理旋转激发态。该程序对所有3个内部坐标均使用基于高斯-雅各比和高斯-拉格瑞正交的离散变量表示(DVR),从而产生波函数的完全逐点表示。振动步骤使用连续的对角线化和截断,这是针对许多可能的坐标排序实现的。旋转,期望值和过渡偶极子程序利用了在DVR网格上执行积分所提供的节省。新版本已在FORTRAN 90中进行了重写,以利用动态阵列分配,并且对偶极子和光谱计算的算法进行了实质性的改进。新模块允许将z轴垂直于分子平面嵌入并用于计算期望值。

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