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K-scrambling in a near-symmetric top molecule containing an excited noncoaxial internal rotor

机译:包含激发的非同轴内部转子的近对称顶部分子中的K加扰

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Classical trajectories on rotational energy surfaces and coherent-state quantum projections have been used to study an asymmetric-top molecule containing a freely rotating internal symmetric top whose symmetry axis is not coincident with a principal axis of the molecule. Stationary points on the rotational energy surface, which strongly influence the trajectories, increase in number from two to four to six as J increases from zero to infinity (where J is the total and n is the free-internal-rotor angular momentum). For some J values trajectories can arise that sample a large fraction of K values (where K is the z-axis projection of J), corresponding in quantum wave functions to extensive K mixing in the symmetric-top basis set J,K]. When such mixing cannot be made small for any choice of z axis, we call it K scrambling. For typical values of the torsion-rotation coupling parameter rho, rotational eigenfunctions for a given J and torsional state turn out to be quite different from eigenfunctions for the same J in some other torsional state. Nonzero rotational overlap integrals are then distributed among many rotational functions for each (n,n') pair, which may, in turn, contribute to internal rotation enhancement of intramolecular vibrational energy redistribution. We have also examined near-free-rotor levels of our test molecule acetaldehyde, which arise for excitation of ten or more quanta of methyl group torsion, and find that barrier effects do not change the qualitative picture obtained from the free-rotor treatment. (C) 2000 American Institute of Physics. [S0021-9606(00)00823-0]. [References: 25]
机译:旋转能表面和相干态量子投影上的经典轨迹已用于研究包含自由旋转的内部对称顶部的非对称顶部分子,该内部对称顶部的对称轴与分子主轴线不一致。随着J / n从零增加到无穷大,旋转能面上的静止点会严重影响轨迹,其数量从2个增加到4个到6个(其中J是总和,n是自由内转子角动量) 。对于某些J / n值,可能会出现对大部分K值(其中K是J的z轴投影)进行采样的轨迹,这在量子波函数中对应于对称顶部基集中 J,K的大量K混合。 ]。当对于任何z轴选择都无法减小这种混合时,我们称其为K加扰。对于扭转-旋转耦合参数rho的典型值,给定的J和扭转状态的旋转本征函数与其他扭转状态下的相同J的本征函数证明是完全不同的。然后,对于每对(n,n'),非零旋转重叠积分分布在许多旋转函数中,这又有助于分子内振动能量重新分布的内部旋转增强。我们还检查了测试分子乙醛的接近自由转子的水平,该水平是由于激发十个或更多的甲基扭转量而产生的,并且发现屏障效应不会改变从自由转子处理中获得的定性图像。 (C)2000美国物理研究所。 [S0021-9606(00)00823-0]。 [参考:25]

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