物理
量子引力
普朗克长度
环量子引力
理论物理学
不确定性原理
闵可夫斯基空间
普朗克质量
经典力学
普朗克
普朗克能量
普朗克时间
万有引力
量子
量子力学
普朗克标度
出处
期刊:Physics Essays
[Physics Essays Publication]
日期:2020-03-06
卷期号:33 (1): 46-78
被引量:47
标识
DOI:10.4006/0836-1398-33.1.46
摘要
For about hundred years, modern physics has not been able to build a bridge between quantum mechanics (QM) and gravity. However, a solution may be found here. We present our quantum gravity theory, which is rooted in indivisible particles where matter and gravity are related to collisions and can be described by collision-space-time. In this paper, we also show that we can formulate a quantum wave equation rooted in collision-space-time, which is equivalent to mass and energy. The beauty of our theory is that most of the main equations that currently exist in physics are, in general, not changed in terms of predictions and what we could call structural form, except at the Planck scale. The Planck scale is directly linked to gravity, which has obviously already been detected, and gravity is actually a Lorentz symmetry as well as a form of Heisenberg uncertainty break down at the Planck scale. Our theory gives a dramatic simplification of many physics formulas without altering the output predictions, except at the Planck scale, and this new formulation gives us a unified theory. The relativistic wave equation, the relativistic energy momentum relation, and Minkowski space can all be represented by simpler equations when we understand mass at a deeper level. This is not attained at a cost, but rather a reflection of the benefit in having gravity and QM unified under the same theory.
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