额外的时间维度:利用依赖时间的非相对论性量子力学推导相对论性时空变换、运动学和维度紧化的例子

Sajjad Zahir
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引用次数: 1

摘要

我们考虑一个五维闵可夫斯基空间,它具有两个时间维度和三个空间维度,具有不同的因果关系速度。导出了相对论坐标变换和速度变换的公式,得到了速度极限的新表达式。扩展了爱因斯坦狭义相对论的思想,引入了五速度和五动量的概念。我们得到了一个大质量物体静止能量的新公式。基于非相对论性极限,建立并求解了无限平方阱势的两时间相关Schrödinger-like方程。额外的时间维度被紧化在一个周期与普朗克时间匹配的闭环拓扑上。它产生具有超小振荡周期的附加量子态干涉。本文还简要讨论了四维和五维质量概念的一些宇宙学含义。
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Extra Time Dimension: Deriving Relativistic Space-Time Transformations, Kinematics, and Example of Dimensional Compactification Using Time-Dependent Non-Relativistic Quantum Mechanics
We consider a five-dimensional Minkowski space with two time dimensions characterized by distinct speeds of causality and three space dimensions. Formulas for relativistic coordinate and velocity transformations are derived, leading to a new expression for the speed limit. Extending the ideas of Einstein’s Theory of Special Relativity, concepts of five-velocity and five-momenta are introduced. We get a new formula for the rest energy of a massive object. Based on a non-relativistic limit, a two-time dependent Schrödinger-like equation for infinite square-well potential is developed and solved. The extra time dimension is compactified on a closed loop topology with a period matching the Planck time. It generates interference of additional quantum states with an ultra-small period of oscillation. Some cosmological implications of the concept of four-dimensional versus five-dimensional masses are briefly discussed, too.
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