On deformations of classical mechanics due to Planck-scale physics

O. Chashchina, A. Sen, Z. Silagadze
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引用次数: 13

Abstract

Several quantum gravity and string theory thought experiments indicate that the Heisenberg uncertainty relations get modified at the Planck scale so that a minimal length do arises. This modification may imply a modification of the canonical commutation relations and hence quantum mechanics at the Planck scale. The corresponding modification of classical mechanics is usually considered by replacing modified quantum commutators by Poisson brackets suitably modified in such a way that they retain their main properties (antisymmetry, linearity, Leibniz rule and Jacobi identity). We indicate that there exists an alternative interesting possibility. Koopman-Von Neumann's Hilbert space formulation of classical mechanics allows, as Sudarshan remarked, to consider the classical mechanics as a hidden variable quantum system. Then the Planck scale modification of this quantum system naturally induces the corresponding modification of dynamics in the classical substrate. Interestingly, it seems this induced modification in fact destroys the classicality: classical position and momentum operators cease to be commuting and hidden variables do appear in their evolution equations.
普朗克尺度物理引起的经典力学变形
几个量子引力和弦理论思想实验表明,海森堡的不确定性关系在普朗克尺度上得到了修正,从而出现了最小长度。这种修正可能意味着经典对易关系的修正,因而也就意味着普朗克尺度下的量子力学的修正。经典力学的相应修正通常被认为是用泊松括号代替修正后的量子对易子,适当地修正后的泊松括号保留了它们的主要性质(反对称、线性、莱布尼茨规则和雅可比恒等式)。我们指出存在另一种有趣的可能性。正如苏达山所说,库普曼-冯·诺伊曼的经典力学希尔伯特空间公式允许将经典力学视为一个隐变量量子系统。然后,该量子系统的普朗克尺度修正自然导致了经典基底中相应的动力学修正。有趣的是,这种诱导的修正似乎实际上破坏了经典性:经典的位置和动量算子不再是可交换的,隐变量确实出现在它们的进化方程中。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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