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首页> 外文期刊>The Journal of Chemical Physics >Time-dependent probability of quantum tunneling in terms of the quasisemiclassical method
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Time-dependent probability of quantum tunneling in terms of the quasisemiclassical method

机译:基于准半经典方法的量子隧穿时间相关概率

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摘要

In view of the rapid progress in experiments of the tunneling dynamics in the time domain, we develop a quasisemiclassical method that is aimed at a study of the proton-transfer dynamics in a large system such as tropolone and its interesting derivatives, to which not only full quantum mechanics, but even a standard semiclassical theory is never easy to apply. In our very tractable method for multidimensional systems, the tunneling paths are generated in terms of the generalized classical mechanics [K. Takatsuka and H. Ushiyama, Phys. Rev. A 51, 4353 (1995)], but the quantum phases arising from the action integral, the Maslov index, and the semicalssical amplitude factor as well in the semiclassical kernels are entirely neglected. This approach is called the quasisemiclassical method. One of the technical issues involved in the general semiclassical scheme is how to locate points from which a tunneling path emanates. Hence the studies of such tunneling points and the quasisemiclassical method should be examined collectively. We test several ways of determining the tunneling point, including those already proposed in the literature and a newly proposed one. It is shown numerically that the quasisemiclassical method with an appropriate choice of tunneling points reproduces the full quantum mechanical tunneling probability reasonably well. This case study indicates that the present conventional approach is promising to the study of large systems. The role of tunneling points in the initial process of tunneling is also discussed.
机译:鉴于时域隧穿动力学实验的快速进展,我们开发了一种准半经典方法,旨在研究诸如托酚酮及其有趣的衍生物等大型系统中的质子传递动力学。全量子力学,但即使是标准的半经典理论也绝不容易应用。在我们非常易于处理的多维系统方法中,隧道路径是根据广义经典力学[K.高冢和牛山山(物理学) Rev. A 51,4353(1995)],但是完全忽略了由作用积分,Maslov指数和半经典振幅因子以及半经典内核产生的量子相位。这种方法称为准半经典方法。通用半经典方案中涉及的技术问题之一是如何定位隧道路径所源自的点。因此,应该共同研究这种隧穿点和准半经典方法的研究。我们测试了确定隧道点的几种方法,包括文献中已经提出的方法和新提出的方法。据数值表明具有隧穿点的适当选择的方法quasisemiclassical再现完整的量子力学隧穿概率相当好。此案例研究表明,当前的常规方法对大型系统的研究很有希望。还讨论了隧道点在隧道初始过程中的作用。

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