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A New Version of Special Relativity Absorbed the Uncertainty Principle: Its Content as Well as Application and Experimental Test

机译:狭义相对论的新版本吸收了不确定性原理:其内容以及应用和实验检验

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Based on the space spherical symmetry of 3-dimensional and the translational symmetry of time and the uncertainty principle, a 4-dimensional space-time cylinder model of quarks and leptons is established. With this model, equations of the special relativity can be extended more perfectly, thereby achieving a unity of the special relativity and quantum mechanics in deeper level. New equations can not only interpret issues explained by old equations but also solve several important pending problems. For example, a formula to strictly calculate the coefficient ξ of Lorentz invariance violation (LIV) is derived, to above 4 × 1019 eV UHECR protons the calculated |ξ| -30, although there is the LIV effect it is too weak to change the GZK cutoff, which is consistent with observations of HiRes and Auger; Also, a relation formula between the Hubble constant and several basic constants is derived, thus theoretically calculated H0 = 70.937 km·s-1·Mpc-1, which is well consistent with the final observation result of HST Key Project. In addition, an unusual effect predicted by new equations can be experimentally tested in the electron storage ring; a preliminary experiment result has hinted its signs of existence.
机译:基于3维空间球对称性,时间平移对称性和不确定性原理,建立了夸克和轻子的4维时空圆柱模型。使用该模型,可以更完美地扩展狭义相对论的方程,从而在更深的层次上实现了狭义相对论和量子力学的统一。新方程式不仅可以解释旧方程式解释的问题,而且可以解决一些重要的悬而未决的问题。例如,推导了一个严格计算洛伦兹不变违反(LIV)系数ξ的公式,对于4×1019 eV UHECR质子,计算出的|ξ| -30,尽管存在LIV效应,但它太弱而无法改变GZK截止值,这与HiRes和Auger的观察结果一致;另外,推导了哈勃常数与几个基本常数之间的关系式,从理论上计算出H0 = 70.937 km·s-1·Mpc-1,与HST重点项目的最终观测结果十分吻合。此外,可以在电子存储环中通过实验测试由新方程式预测的异常效应。初步的实验结果暗示了它的存在迹象。

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