论文标题

变形的特殊相对论以不变的最低速度作为宇宙常数的解释

Deformed Special Relativity with an invariant minimum speed as an explanation of the cosmological constant

论文作者

Cruz, Cláudio Nassif

论文摘要

本文表明,通过对Dirac的大数字假设(LNH)进行更彻底的研究,需要在时空中出现通用最低速度。我们将意识到,应该有一个最低速度$ v $,具有相同的光$ c $速度的状态,但是$ v $具有重力。因此,这样的最低速度在时空中形成了新的运动学基础,从而导致量子世界所谓的对称特殊相对论(SSR)的新变形特殊相对论(DSR)。此外,我们将表明,这种新的时空结构(SSR)揭示了$ v $与优选的参考框架之间的连接,而后台字段的首选参考框架$ s_v $导致宇宙常数$λ$,这可以与宇宙学反重力有关。我们还将调查可观察到的宇宙对氢原子的baryons $ n $(爱丁顿数字)的影响。最后,我们将表明SSR-Metric扮演着具有正宇宙常数的DE特征(DS)的作用,这可能会假设一个很小的值。

This paper shows the need of the emergence of a universal minimum speed in the space-time by means of a more thorough investigation of Dirac's large number hypothesis (LNH). We will realize that there should be a minimum speed $V$ with the same status of the invariance of the speed of light $c$, however $V$ has gravitational origin. Hence, such a minimum speed forms a new kinematic basis in the space-time, thus leading to a new Deformed Special Relativity (DSR) for the quantum world so-called Symmetrical Special Relativity (SSR). Furthermore, we will show that such a new structure of space-time (SSR) reveals a connection between $V$ and a preferred reference frame $S_V$ of background field that leads to the cosmological constant $Λ$, which can be associated with a cosmological anti-gravity. We will also investigate the effect of the number of baryons $N$ (Eddington number) of the observable universe on the Hydrogen atom. Finally, we will show that SSR-metric plays the role of a de-Sitter (dS)-metric with a positive cosmological constant, which could assume a tiny value.

扫码加入交流群

加入微信交流群

微信交流群二维码

扫码加入学术交流群,获取更多资源