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      A relativistic quantum theory of dyons wave propagation

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          Abstract

          Beginning with the quaternionic generalization of the quantum wave equation, we construct a simple model of relativistic quantum electrodynamics for massive dyons. A new quaternionic form of unified relativistic wave equation consisting of vector and scalar functions is obtained, and also satisfy the quaternionic momentum eigenvalue equation. Keeping in mind the importance of quantum field theory, we investigate the relativistic quantum structure of electromagnetic wave propagation of dyons. The present quantum theory of electromagnetism leads to generalized Lorentz gauge conditions for the electric and magnetic charge of dyons. We also demonstrate the universal quantum wave equations for two four-potentials as well as two four-currents of dyons. The generalized continuity equations for massive dyons in case of quantum fields are expressed. Furthermore, we concluded that the quantum generalization of electromagnetic field equations of dyons can be related to analogous London field equations (i.e., current to electromagnetic fields in and around a superconductor).

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          Most cited references15

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          Quantised Singularities in the Electromagnetic Field

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            Magnetic monopoles in unified gauge theories

            G.'t Hooft (1974)
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              The Theory of Magnetic Poles

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                Author and article information

                Journal
                09 November 2017
                Article
                10.1139/cjp-2017-0080
                1711.05609
                d64b303e-84e2-4014-9b7f-230f59a9c214

                http://arxiv.org/licenses/nonexclusive-distrib/1.0/

                History
                Custom metadata
                (2017) Canadian Journal of Physics (Online Published)
                8 pages. arXiv admin note: text overlap with arXiv:hep-th/0608164 by other authors
                quant-ph

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