Special Relativity in Six Dimensions

H. Unlu
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Abstract

In the four-dimensional spacetime theory of special relativity, the space coordinate is time contracted along the motion, while perpendicular coordinates are invariant and time varies with position. This leads to a velocity transformation valid at speed of light and used in showing invariance electric and magnetic fields which are invariant along x-axis but change occur along y, and z-axes, contrary to the classical electrodynamics. In this work we introduce a new six-dimensional spacetime theory which allows time (position) change of position (time) in three coordinate axes and still satisfy the Lorentz invariance conditions of metric and Maxwell’s wave equations between two frames. We derive a new velocity transformation rule which is valid at any relative speed of massive frames moving with respect to each other. We derived expressions for relativistic mass, energy, Doppler shift, time dilation, length contraction, photon rest mass, and used the conservation of relativistic power to prove that the electric and magnetic fields and consequently, Maxwell wave equations are Lorentz invariant between two massive frames with and without nonzero photon mass in vacuum and materials medium. Calculated photon mass is in excellent agreement with the measured and observed upper bounds of 1.24x10-54 kg and1.75x 10-53 kg, respectively.
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六维狭义相对论
在狭义相对论的四维时空理论中,空间坐标是沿运动方向收缩的时间,而垂直坐标是不变的,时间随位置而变化。这导致了在光速下有效的速度变换,并用于显示不变性电场和磁场,这些电场和磁场沿x轴不变,但沿y轴和z轴发生变化,与经典电动力学相反。本文介绍了一种新的六维时空理论,该理论允许时间(位置)在三个坐标轴上的位置(时间)变化,并且仍然满足两个坐标系之间度规和麦克斯韦波动方程的洛伦兹不变性条件。导出了一种新的速度变换规则,该规则适用于任意相对运动的质量坐标系。导出了相对论质量、能量、多普勒频移、时间膨胀、长度收缩、光子静止质量的表达式,并利用相对论能量守恒证明了电场和磁场的存在,从而使麦克斯韦波方程在真空和物质介质中具有和不具有非零光子质量的两个大质量坐标系之间是洛伦兹不变的。计算的光子质量与实测和观测的上界分别为1.24 × 10-54 kg和1.75 × 10-53 kg非常吻合。
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