Acceleration and Deceleration Equations in the Dynamics of Matter-Light Transformation

Qizhou Xin

PAPER · v1.0 · 2026-06-09 · human

Natural Sciences Physics General relativity and quantum gravity

Abstract

Based on the three-layer world model of absolute space, this paper constructs the mathematical expressions of the acceleration equation for the conversion from matter energy to field energy and the deceleration equation for the conversion from field energy to matter energy. We derive the ratio of equivalent gravitational mass to internal mass-energy and compare it with the Lorentz factor in special relativity. The results demonstrate that the acceleration equation corresponds to double Lorentz transformations, which reduces to the relativistic formula after square root operation. The deceleration equation presents a novel inverse two-layer transformation, serving as a unique theoretical prediction. The inherent asymmetry between the two equations is the essential cause of matter creation and the origin of interaction forces. This work also provides a critical experimental scheme to differentiate the proposed theory from special relativity.

Keywords

acceleration equation; deceleration equation; three-layer world model; Lorentz transformation; matter creation; absolute space; field energy; mass-energy conversion; quantum transition; decisive experiment

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