Research ArticleOpen AccessGoogle Scholar indexed
The Potential-Vortex Theory of Electromagnetic Waves
National Research of Tomsk Polytechnic University, Tomsk, Russia.
- 1 National Research of Tomsk Polytechnic University, Tomsk, Russia.
Journal of Electromagnetic Analysis and Applications·Volume 05 (2013)·Pages 347–353·Published 27 September 2013·DOI10.4236/jemaa.2013.59055
Copy link · social · email
Abstract
An electromagnetic wave is a complex vortex and a potential process. This allows us to omit the Lorentz gauge, formulate a mathematically precise theory, and avoid physics discordances. The mechanism of distribution of complex waves in dielectric and electrical conductive environments was described .
KeywordsMaxwell’s EquationsElectromagnetic WavesMagnetic Vector Potential
- H. Helmholtz, “Uber Integrale der Hydrodynamischen Gleichungen, Welche den Wirbelbewegungen Entsprechen,” Crelle’s Journal, Vol. 1858, No. 55, 1858, pp. 25-55.
- C. Monstein and J. P. Wesley, “Observation of Scalar Longitudinal Electrodynamic Waves,” Europhysics Letters, Vol. 59 , No. 4, 2002, pp. 514-520.
- K. Meyl, “Scalar Waves: Theory and Experiments,” Journal of Scientific Exploration, Vol. 15, No. 2, 2001, pp. 199-205.
- B. Sacco and A. Tomilin, “The Study of Electromagnetic Processes in the Experiments of Tesla,” 2013. http://viXra.org/abs/1210.0158
- K. J. van Vlaenderen and A. Waser, “Generalization of Classical Electrodynamics to Admit a Scalar Field and Longitudinal Waves,” Hadronic Journal, Vol. 24, 2001, pp. 609-628.
- D. A. Woodside, “Three-Vector and Scalar Field Identities and Uniqueness Theorems in Euclidean and Minkowski Spaces,” American Journal of Physics, Vol. 77, No. 5, 2009, pp. 438-446.
- A. I. Arbab and Z. A. Satti, “On the Generalized Maxwell Equations and Their Prediction of Electroscalar Wave,” Progress in Physics, Vol. 2, 2009, pp. 8-13.
- D. V. Podgainy and O. A. Zaimidoroga, “Nonrelativistic Theory of Electroscalar Field and Maxwell Electrodynamics,” 2013. http://arxiv.org/pdf/1005.3130.pdf
- E. Purcell, “Electricity and Magnetism,” McGraw-Hill, New York, 1963, 430 pp.
- А. К. Томилин, “Обобщенная электродинамика,” Усть-Каменогорск, ВКГТУ, 2013. http://vev50.narod.ru/Tomilin_ED.pdf
- A. K. Tomilin, “The Fundamentals of Generalized Electrodynamics,” 2013. http://arxiv.org/ftp/arxiv/papers/0807/0807.2172.pdf
- A. K. Tomilin, “The Potential-Vortex Theory of the Electromagnetic Field,” 2013. http://arxiv4.library.cornell.edu/ftp/arxiv/papers/1008/1008.3994.pdf