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Complex Riemannian Geometry—Bianchi Identities and Einstein Tensor

Complex Riemannian Geometry—Bianchi Identities and Einstein Tensor
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摘要 Riemannian geometry has proved itself to be a useful model of the gravitational phenomena in the universe, but generalizations of it to include other forces have so far not been successful. Here we explore an extension of Riemannian geometry using a complex Hermitian metric tensor. We find that the standard electromagnetic field naturally appears along with two additional fields, which act as mass and charge sources. A first paper set up the basic geometry and derived the Christoffel symbols plus the E&M field equation. This paper continues development with the generalized Riemann curvature tensor, Bianchi identities and the Einstein tensor, laying the basis for field equations. A final paper will then present the field equations. Riemannian geometry has proved itself to be a useful model of the gravitational phenomena in the universe, but generalizations of it to include other forces have so far not been successful. Here we explore an extension of Riemannian geometry using a complex Hermitian metric tensor. We find that the standard electromagnetic field naturally appears along with two additional fields, which act as mass and charge sources. A first paper set up the basic geometry and derived the Christoffel symbols plus the E&M field equation. This paper continues development with the generalized Riemann curvature tensor, Bianchi identities and the Einstein tensor, laying the basis for field equations. A final paper will then present the field equations.
出处 《Journal of Modern Physics》 2015年第11期1572-1585,共14页 现代物理(英文)
关键词 Unified Field Theory Gravity Electromagnetism COMPLEX RIEMANNIAN GEOMETRY RIEMANNIAN GEOMETRY Unified Field Theory Gravity Electromagnetism Complex Riemannian Geometry Riemannian Geometry
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