Quantum Field Theory with Electric-Magnetic Duality and Spin-Mass Duality but Without Grand Unication and Supersymmetry

Q4 Physics and Astronomy African Review of Physics Pub Date : 2011-03-01 DOI:10.20944/PREPRINTS201806.0383.V1
Rainer W. Kuhne
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Abstract

Abstract: I present a generalization of quantum electrodynamics which includes Diracmagnetic monop oles and the Salam magnetic photon. This quantum electromagnetodynamics has many attractive features. (1) It explains the quantization of electric charge. (2) It describes symmetrized Maxwell equations. (3) It is manifestly covariant. (4) It describes local four-potentials. (5) It avoids the unphysicalDirac string. (6) It predicts a second kind of electromagnetic radiation which can be veried by a tabletop experiment. An eect of this radiation may have been observed by August Kundt in 1885. Furthermore I discuss a generalization of General Relativity which includes Cartan's torsion. I discuss the mathematical denition, concrete description, and physical meaning of Cartan's torsion. I argue that the electric-magnetic duality of quantum electromagnetodynamics is analogous to the spin-mass duality of Einstein-Cartan theory. A quantum version of this theory requires that the torsion tensor corresponds to a spin-3 boson called tordion which is shown to have a rest mass close to the Planck mass. Moreover I present an empirically satised fundamental equation of unied eld theory which includes the fundamental constants of electromagnetism and gravity. I conclude with the remark that the concepts presented here require neither Grand Unication nor supersymmetry.
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具有电磁二象性和自旋-质量二象性但没有大统一和超对称的量子场论
摘要:介绍了包括磁单极子和萨拉姆磁光子在内的量子电动力学的概化。这种量子电磁动力学有许多吸引人的特点。(1)解释了电荷的量子化。(2)描述了对称的麦克斯韦方程。(3)它是明显协变的。(4)描述局部四势。(5)它避免了非物理狄拉克字符串。(6)预测了第二类电磁辐射,可通过桌面实验加以验证。1885年,奥古斯特·昆特可能已经观察到这种辐射的效应。此外,我讨论了广义相对论的一个推广,其中包括卡坦扭转。讨论了卡坦扭转的数学定义、具体描述和物理意义。我认为量子电磁动力学的电磁二象性类似于爱因斯坦-卡坦理论的自旋-质量二象性。该理论的量子版本要求扭转张量对应于自旋为3的玻色子,称为扭转子,其静止质量接近普朗克质量。此外,还提出了一个经验满足的包含电磁学和引力基本常数的统一场理论基本方程。我的结论是,这里提出的概念既不需要大统一,也不需要超对称。
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来源期刊
African Review of Physics
African Review of Physics PHYSICS, MULTIDISCIPLINARY-
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FIVE DIMENSIONAL SPHERICAL SYMMETRIC UNIVERSE IN CREATION FIELD COSMOLOGY Expansion of Rindler Coordinate Theory and Light’s Doppler Effect Quantum Field Theory with Electric-Magnetic Duality and Spin-Mass Duality but Without Grand Unication and Supersymmetry STACKING FAULTS IN THE SINGLE CRYSTALS
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