首页> 外文期刊>The Journal of Chemical Physics >The K-rotational labeling problem for eigenvectors from internal rotor calculatons: Application to energy levels of acetaldehyde below the barrier
【24h】

The K-rotational labeling problem for eigenvectors from internal rotor calculatons: Application to energy levels of acetaldehyde below the barrier

机译:内部转子计算得到的本征向量的K旋转标记问题:应用于屏障以下乙醛的能级

获取原文
获取原文并翻译 | 示例
           

摘要

The problem of attaching K rotational quantum number labels to computer-generated numerical eigenvectors with extensive basis set mixing is considered for the internal-overall-rotation problem in molecules with one methyl top. Quantum number labeling problems arise physically because the torsional and the rotational degrees of freedom both pass from one limiting case to another as the torsional energy moves from below the top of the internal rotation barrier to above it, i.e., the torsional degree of freedom changes from a vibration to an internal rotation, while the rotational degree of freedom moves its direction of quantization from a principal axis to an axis depending also on angular momentum generated by the methyl top rotation. Since the choice of axis system, basis set, and computational scheme all influence the eigenfunction labeling procedure, consideration is limited to a commonly used two-step matrix-diagonalization scheme and to acetaldehyde as a numerical example. Torsional labels #upsilon#_t = 0, 1 and 2 for eigenfunctions generated in the first diagonalization step are assigned in order of increasing eigenvalues, and rotational energy surfaces are constructed for the A and E symmetry components of these three torsional states. Projections of rotational eigenvectors over angular momentum coherent states are used to show that classical trajectories on the appropriate rotational energy surface give faithful representations of the quantum were functions. Irregularities in the rotational energy level structure within a given torsional state can then be understood in terms of extra separatrices in the classical phase space and unusual wave function densities in the coherent state projections. Results are used to devise an automatic K labeling scheme for numerically obtained torsion-rotation levels belonging to torsional states below the top of the internal rotation barrier.
机译:对于具有一个甲基顶部的分子中的内部整体旋转问题,考虑了将K个旋转量子数标签附加到具有广泛基集混合的计算机生成的数值本征向量上的问题。物理上出现量子数标记问题是因为当扭转能量从内部旋转势垒的顶部下方移动到内部旋转势垒的顶部时,扭转和旋转自由度都从一种极限情况传递到另一种极限情况,即,扭转自由度从旋转自由度时,旋转的自由度将其量化方向从主轴移动到轴,该旋转方向也取决于由甲基顶部旋转产生的角动量。由于轴系统,基集和计算方案的选择均会影响本征函数标记过程,因此,应将考虑的范围限于常用的两步矩阵对角化方案,并以乙醛作为数值示例。按递增特征值的顺序分配第一对角化步骤中生成的本征函数的扭转标签#upsilon#_t = 0、1和2,并为这三个扭转状态的A和E对称分量构造旋转能表面。旋转特征向量在角动量相干态上的投影用来表明,在适当的旋转能面上的经典轨迹给出了量子的忠实表示,是函数。然后,可以根据经典相空间中的额外分离和相干态投影中的异常波函数密度,来了解给定扭转状态下旋转能级结构的不规则性。结果用于设计自动K标记方案,以数字方式获得属于内部旋转屏障顶部以下的扭转状态的扭转旋转级别。

著录项

相似文献

  • 外文文献
  • 专利
获取原文

客服邮箱:kefu@zhangqiaokeyan.com

京公网安备:11010802029741号 ICP备案号:京ICP备15016152号-6 六维联合信息科技 (北京) 有限公司©版权所有
  • 客服微信

  • 服务号