Dirac equation in a non-Riemannian manifold. I. An analysis using the complex algebra
Journal Article
·
· J. Math. Phys. (N.Y.); (United States)
The Dirac wave equation is obtained in the non-Riemannian manifold of the Einstein--Schroedinger nonsymmetric theory. A new internal connection is determined in terms of complex vierbeins, which shows the coupling of the electromagnetic potential with gravity in the presence of a spin- 1/2 field.
- Research Organization:
- NASA/Fermilab Astrophysics Center, Fermi National Accelerator Laboratory, M.S. 209, P.O. Box 500, Batavia, Illinois 60510
- OSTI ID:
- 7135637
- Journal Information:
- J. Math. Phys. (N.Y.); (United States), Vol. 29:9
- Country of Publication:
- United States
- Language:
- English
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Related Subjects
71 CLASSICAL AND QUANTUM MECHANICS
GENERAL PHYSICS
DIRAC EQUATION
ANALYTICAL SOLUTION
ALGEBRA
ASYMMETRY
COMPLEX MANIFOLDS
FIELD THEORIES
GENERAL RELATIVITY THEORY
GRAVITATIONAL FIELDS
TRANSFORMATIONS
DIFFERENTIAL EQUATIONS
EQUATIONS
MATHEMATICAL MANIFOLDS
MATHEMATICS
PARTIAL DIFFERENTIAL EQUATIONS
WAVE EQUATIONS
657003* - Theoretical & Mathematical Physics- Relativity & Gravitation
GENERAL PHYSICS
DIRAC EQUATION
ANALYTICAL SOLUTION
ALGEBRA
ASYMMETRY
COMPLEX MANIFOLDS
FIELD THEORIES
GENERAL RELATIVITY THEORY
GRAVITATIONAL FIELDS
TRANSFORMATIONS
DIFFERENTIAL EQUATIONS
EQUATIONS
MATHEMATICAL MANIFOLDS
MATHEMATICS
PARTIAL DIFFERENTIAL EQUATIONS
WAVE EQUATIONS
657003* - Theoretical & Mathematical Physics- Relativity & Gravitation