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Unstable trajectories and the quantum mechanical uncertainty

机译:不稳定的轨迹和量子力学的不确定性

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There is still an ongoing discussion about various seemingly contradictory aspects of classical particle motion and its quantum mechanical counterpart. One of the best accepted viewpoints that intend to bridge the gap is the so-called Copenhagen Interpretation. A major issue there is to regard wave functions as probability amplitudes (usually for the position of a particle). However, the literature also reports on approaches that claim a trajectory for any quantum mechanical particle, Bohmian mechanics probably being the most prominent one among these ideas. We introduce a way to calculate trajectories as well, but our crucial ingredient is their well controlled local (thus also momentaneous) degree of instability. By construction, at every moment their unpredictability, i.e., their local separation rates of neighboring trajectories, is governed by the local value of the given modulus square of a wave function. We present extensive numerical simulations of the H and He atom, and for some velocity-related quantities, namely angular momentum and total energy, we inspect their agreement with the values appearing in wave mechanics. Further, we interpret the archetypal double slit interference experiment in the spirit of our findings. We also discuss many-particle problems far beyond He, which guides us to a variety of possible applications. (c) 2007 Elsevier Inc. All rights reserved.
机译:关于经典粒子运动及其量子力学对应物的各种看似矛盾的方面,仍在进行中。旨在弥合鸿沟的最广为接受的观点之一是所谓的哥本哈根解释。那里的一个主要问题是将波函数视为概率振幅(通常用于粒子的位置)。然而,文献还报道了声称任何量子力学粒子都具有轨迹的方法,其中,波姆力学是这些思想中最突出的一种。我们还引入了一种计算轨迹的方法,但是我们的关键因素是其良好控制的局部(因此也是瞬时)不稳定程度。通过构造,在每时每刻它们的不可预测性,即它们在相邻轨迹上的局部分离率,由波动函数的给定模量平方的局部值控制。我们对H和He原子进行了广泛的数值模拟,对于一些与速度有关的量,即角动量和总能量,我们检查了它们与波动力学中出现的值的一致性。此外,我们将根据我们的发现精神对原型双缝干扰实验进行解释。我们还将讨论远远超出He的许多粒子问题,这将指导我们进行各种可能的应用。 (c)2007 Elsevier Inc.保留所有权利。

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