Einstein’s General Relativity and Pure Gravity in a Cosserat and De Sitter-Witten Spacetime Setting as the Explanation of Dark Energy and Cosmic Accelerated Expansion

作者: Mohamed S. El Naschie

DOI: 10.4236/IJAA.2014.42027

关键词: Mathematical physicsIntroduction to the mathematics of general relativityf(R) gravityEinstein tensorPhysicsStress–energy tensorTheory of relativityMathematics of general relativityDark energyGeneral relativity

摘要: Ordinary energy and dark density are determined using a Cosserat-Cartan and killing-Yano reinterpretation of Einstein’s special general relativity. Thus starting from maximally symmetric space with 528 killing vector fields corresponding to Witten’s five Branes model in eleven dimensional M-theory we reason that 504 of the essentially components relevant killing-Yano tensor. In turn this tensor is related to hidden symmetries torsional coupled stresses of Cosserat micro-polar as well Einstein-Cartan connection. Proceeding way dark found be of Einstein’s maximal mc2 where m mass c speed light multiplied with a Lorentz factor equal ratio 504 528 states space. have E (dark) = (504/528) (21/22) which about 95.5% total astounding agreement COBE, WMAP Planck cosmological measurements the type 1a supernova analysis. Finally theory results validated via a related based on degrees freedom pure gravity, of nonlocal elasticity ‘t Hooft-Veltman renormalization method.

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