Einstein-Maxwell-axion theory: Dyon solution with regular electric field
arXiv:1703.08858 · doi:10.1140/epjc/s10052-017-5073-5
Abstract
In the framework of Einstein-Maxwell-axion theory we consider static spherically symmetric solutions, which describe a magnetic monopole in the axionic environment. These solutions are interpreted as the solutions for an axionic dyon, the electric charge of which is composite, i.e., in addition to the standard central electric charge, it includes an effective electric charge induced by the axion-photon coupling. We focus on the analysis of that solutions, which are characterized by the electric field regular at the center. Special attention is paid to the solutions with the electric field, which is vanishing at the center, has the Coulombian asymptote and thus display an extremum at some distant sphere. Constraints on the electric and effective scalar charges of such an object are discussed.
11 pages, 4 figures
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- Bianchi IX geometry and the Einstein-Maxwell theory
- Magneto-electro-statics of axionically active systems: Induced field restructuring in magnetic stars
- Greybody factors of charged black holes with axion hair
- De Sitter space constraints on brane tensions and couplings
- Nonminimal dyons with regular gravitational, electric and axion fields
- From rotating attractors to extremal black holes with axionic hair