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Quantum time and spatial localization in relativistic quantum mechanics.

机译:相对论量子力学中的量子时间和空间局部化。

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摘要

Two related problems in relativistic quantum mechanics, the apparent superluminal propagation of initially localized particles, and the dependence of their localization on the motion of the observer, are analyzed in the context of the theory of constraints. Time and energy operators are introduced for the free relativistic particle, and a parametrization invariant formulation is obtained through Dirac constraint theory. The resulting description is of a system constrained in momentum and energy, but not in position or time, for which observables are constants of the motion. The Klein-Gordon equation is recovered on a physical Hilbert space, constructed via integration over the proper time from an augmented Hilbert space, wherein time and energy are dynamical variables. It is shown that the position observable acts on states in the augmented space; those states having strictly positive energy are non-local in time. Localization arises on a particular space-like hyperplane from quantum interference in time, position measurements receiving contributions from the past and future. Apparent causality problems are resolved by noting that, as the particle is potentially in the past, it can propagate to distant regions without exceeding the speed of light. Non-locality of the same system to a moving observer is due to Lorentz rotation of spatial axes out of the interference minimum.
机译:在约束理论的背景下,分析了相对论量子力学中的两个相关问题,即初始局域粒子的明显超光速传播,以及其局域性对观察者运动的依赖性。为自由相对论粒子引入了时间和能量算子,并通过狄拉克约束理论获得了参数化不变式。结果描述是一个受动量和能量约束,但不受位置或时间约束的系统,对于该系统,可观察到的是运动常数。 Klein-Gordon方程是在物理希尔伯特空间上恢复的,该物理希尔伯特空间是通过在适当的时间从扩充希尔伯特空间积分而构造的,其中时间和能量是动态变量。结果表明,可观测的位置作用于增强空间中的状态。具有严格正能量的状态在时间上不是本地的。本地化是由于时间上的量子干扰而在特定的类空超平面上出现的,位置测量接收了过去和未来的贡献。解决了明显的因果关系问题,方法是注意到,由于粒子可能在过去,它可以传播到遥远的区域而不会超过光速。同一系统对移动中的观察者的非局部性是由于空间轴的Lorentz旋转超出了干扰最小值。

著录项

  • 作者单位

    Texas Christian University.;

  • 授予单位 Texas Christian University.;
  • 学科 Physics Elementary Particles and High Energy.
  • 学位 Ph.D.
  • 年度 1999
  • 页码 169 p.
  • 总页数 169
  • 原文格式 PDF
  • 正文语种 eng
  • 中图分类 高能物理学;
  • 关键词

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