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Kostelecky, V. and Mewes, M., “Testing local Lorentz invariance with short-range gravity”, arXiv:1611.10313v1, 2016.

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Article

Gravity: WEP, Gauge Theory, Quantization, Unification


International Journal of Physics. 2020, Vol. 8 No. 3, 90-104
DOI: 10.12691/ijp-8-3-2
Copyright © 2020 Science and Education Publishing

Cite this paper:
Hui Peng. Gravity: WEP, Gauge Theory, Quantization, Unification. International Journal of Physics. 2020; 8(3):90-104. doi: 10.12691/ijp-8-3-2.

Correspondence to: Hui  Peng, . Email: davidpeng1749@gmail.com

Abstract

A gauge theory of gravity with an internal symmetry U(1), denoted as Gravito-dynamics, is established, which is dual to the Electrodynamics and complies with Special Relativity. The Gravito-dynamics is quantized and renormalized, denoted as QGD. The Gravito-dynamics is unified with Electrodynamics at classical level, and QGD is unified with QED at quantum level, denoted as Electro-gravity interaction. Following the line of generalizing the U(1) Electrodynamics to Yang-Mills theory, we generalize the U(1) gravity to SU(2) gravity that indicates short-range gravity. Two thought-experiments are proposed to test the underlying physics of the U(1) gravity and to detect the particle nature of gravitational wave that leads to wave-particle duality of gravitational radiation.

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