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Avoidance of Schwinger Mechanism in Electromagnetically Accelerating Universe

2024/07/11 by Paul H. Frampton, Frampton, Paul H.
Physics and Astronomy · Computer Science · #Cosmology and Gravitation Theories #Relativity and Gravitational Theory #Computational Physics and Python Applications

paper · pdf · doi:10.48550/arxiv.2407.09576

Abstract

In quantum electrodynamics, Schwinger showed in 1951 that in a uniform electric field the vacuum may spontaneously produce electron-positron pairs. For this to occur, the required electric field is exceptionally large, ∼ 1018 N/C. In the Electromagnetically Accelerating Universe (EAU) model, such an electric field would be undesirable because it discharges the Primoridal Extemely Massive Naked Singularities (PEMNSs) whose mutual repulsion causes the acceleration. This leads to a constraints on the charges and masses of the PEMNSs which must be satisfied in an EAU model.

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