Research ArticleOpen AccessGoogle Scholar indexed
Towards the Unification, Part 2: Simplified Equations, Covariant Derivative, Photons
Le Moulin de la Lande, 44522, Pouillé-les-Coteaux, France
15 Avenue Danielle Casanova, 95210, Saint-Gratien, France
95 Rue Marceau, 91120, Palaiseau, France
- 1 Le Moulin de la Lande, 44522, Pouillé-les-Coteaux, France
- 2 15 Avenue Danielle Casanova, 95210, Saint-Gratien, France
- 3 95 Rue Marceau, 91120, Palaiseau, France
Journal of Modern Physics·Volume 07 (2016)·Pages 2398–2417·Published 5 December 2016·DOI10.4236/jmp.2016.716207
Copy link · social · email
Abstract
We continue the study of the Standard Model of Quantum Physics in the Clifford algebra of space. We get simplified mass terms for the fermion part of the wave. We insert the simplified equations in the frame of General Relativity. We construct the electromagnetic field of the photon, alone boson without proper mass. We explain how the Pauli principle comes from the equivalence principle of General Relativity. We transpose in the frame of the algebra of space the second quantification of the electromagnetic field. We discuss the changes introduced here.
KeywordsBosonClifford AlgebraDirac EquationElectromagnetismElectronGravitationMagnetic MonopoleNeutrinoPhotonQuarkRelativistic InvarianceStrong InteractionsWeak Interactions
- Daviau, C., Bertrand, J. and Girardot, D. (2016) Journal of Modern Physics, 7, 1568-1590. https://doi.org/10.4236/jmp.2016.712143
- Naïmark, M.A. (1962) Les représentations linéaires du groupe de Lorentz. Dunod, Paris.
- Daviau, C. (1998) Annales de la Fondation Louis de Broglie, 23, 27-37.
- Daviau, C. (2005) Annales de la Fondation Louis de Broglie, 30, 409-428.
- Daviau, C. (2011) L’espace-temps double. JePublie, Pouillé-les-coteaux.
- Daviau, C. (2012) Advances in Applied Clifford Algebras, 22, 611-623.
- Daviau, C. (2012) Double Space-Time and More. JePublie, Pouillé-les-coteaux.
- Daviau, C. (2012) Nonlinear Dirac Equation, Magnetic Monopoles and Double Space-Time. CISP, Cambridge.
- Daviau, C. (2013) Advances in Imaging and Electron Physics, 179, 1-136. https://doi.org/10.1016/B978-0-12-407700-3.00001-6
- Daviau, C. and Bertrand, J. (2014) Journal of Modern Physics, 5, 1001-1022. https://doi.org/10.4236/jmp.2014.511102
- Daviau, C. and Bertrand, J. (2014) Journal of Modern Physics, 5, 2149-2173. https://doi.org/10.4236/jmp.2014.518210
- Daviau, C. and Bertrand, J. (2014) New Insights in the Standard Model of Quantum Physics in Clifford Algebra. Je Publie, Pouillé-les-coteaux. http://hal.archives-ouvertes.fr/hal-00907848
- Daviau, C. (2015) Advances in Applied Clifford Algebras, 1-12.
- Daviau, C. and Bertrand, J. (2015) Journal of Applied Mathematics and Physics, 3, 46-61. https://doi.org/10.4236/jamp.2015.31007
- Daviau, C. and Bertrand, J. (2015) Journal of Modern Physics, 6, 1647-1656. https://doi.org/10.4236/jmp.2015.611166
- Daviau, C. and Bertrand, J. (2015c) The Standard Model of Quantum Physics in Clifford Algebra. World Science Publishing, Singapore.
- Lochak, G. (1983) Annales de la Fondation Louis de Broglie, 8, 345.
- Lochak, G. (1983) Annales de la Fondation Louis de Broglie, 9, 5.
- Lochak, G. (1985) International Journal of Theoretical Physics, 24, 1019-1050. https://doi.org/10.1007/BF00670815
- Lochak, G. (2004) Annales de la Fondation Louis de Broglie, 29, 297-316.