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Complete hamiltonian description of wave-like features in classical and quantum physics

机译:关于经典物理学和量子物理学中波状特征的完整哈密尔顿描述

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摘要

The analysis of the Helmholtz equation is shown to lead to an exact Hamiltonian system describing in terms of ray trajectories, for a stationary refractive medium, a very wide family of wave-like phenomena (including diffraction and interference) going much beyond the limits of the geometrical optics ("eikonal") approximation, which is contained as a simple limiting case. Due to the fact, moreover, that the time independent Schr?dinger equation is itself a Helmholtz-like equation, the same mathematics holding for a classical optical beam turns out to apply to a quantum particle beam moving in a stationary force field, and leads to a system of Hamiltonian equations providing exact and deterministic particle trajectories and dynamical laws, and containing the laws of Classical Mechanics in the eikonal limit.
机译:结果表明,对亥姆霍兹方程的分析导致了一个精确的哈密顿系统,用射线轨迹来描述,对于固定的折射介质,很宽的一系列波状现象(包括衍射和干涉)远远超出了其极限。几何光学(“本征”)近似值,作为一个简单的极限情况包含在其中。此外,由于这一事实,与时间无关的薛定er方程本身就是一个类似于亥姆霍兹的方程,对于经典光束而言,同样的数学公式适用于在平稳力场中运动的量子粒子束,并导致哈密​​顿方程组提供精确的和确定性的粒子轨迹和动力学定律,并包含经典力学定律的极限。

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