Photon Theory of Gravity – An Advance from Einstein’s Relativity

Xianmin Meng
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Abstract

Based on a postulate that photons of low frequencies (undetectable by current technology) are the gravity force carrier, the paper derives quantitative results that are the same as or very similar to those derived in the special and general relativity theories and explains experiments and observations better. These quantitative results include the mass-energy formula, the energy momentum equation, and those for relative mass, the transverse Doppler effect, gravitational red shift, planetary precession, the deflection angle of light in gravitational lensing, the orbits around a black hole, and the strength and direction of gravitational waves (orbit decay of pulsars). Moreover, the explanations are different from those in Einstein’s relativity theory, such as the explanation of the null Doppler effect of electromagnetic waves reflected from a transversely moving surface, the reason for gravitational red shift, and the size of the light sphere around a black hole. The paper claims that both the high-order Doppler effect and the gravitational red shift occur only at the point of photon emission. The paper also explains why the predicted pulsar orbit decay is close but differs from calculations based on observations.
光子引力理论——爱因斯坦相对论的进步
基于低频光子(目前技术无法探测到)是重力载体的假设,本文得出了与狭义相对论和广义相对论相同或非常相似的定量结果,并更好地解释了实验和观察结果。这些定量结果包括质能公式、能量动量方程、相对质量公式、横向多普勒效应、引力红移、行星进动、引力透镜中光的偏转角、黑洞周围的轨道、引力波的强度和方向(脉冲星的轨道衰减)。此外,这些解释不同于爱因斯坦的相对论,比如对电磁波从横向运动表面反射的零多普勒效应的解释、引力红移的原因、黑洞周围光球的大小等。本文认为,高阶多普勒效应和引力红移都只发生在光子发射点。这篇论文还解释了为什么预测的脉冲星轨道衰减是接近的,但与基于观测的计算不同。
本文章由计算机程序翻译,如有差异,请以英文原文为准。
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