All fundamental electrically charged thin shells in general relativity: From star shells to tension shell black holes and regular black holes and beyond
Jos\'e P. S. Lemos, Paulo Luz

TL;DR
This paper classifies all static, spherically symmetric, electrically charged thin shells in general relativity, exploring their possible states, configurations, and spacetime structures, including black holes, regular, and naked singularities.
Contribution
It provides a comprehensive classification of fundamental charged thin shells, detailing their states, configurations, and associated spacetime diagrams, extending previous work on shell solutions in GR.
Findings
Identified 14 distinct classes of charged thin shells in GR.
Analyzed the conditions for shells to form black holes, regular, or naked singularities.
Mapped the possible shell configurations and their spacetime diagrams.
Abstract
We classify all fundamental electrically charged thin shells in general relativity, i.e., static spherically symmetric perfect fluid thin shells with a Minkowski spacetime interior and a Reissner-Nordstr\"om spacetime exterior, characterized by the spacetime mass and electric charge. The fundamental shell can exist in three states, nonextremal, extremal, and overcharged. The nonextremal state allows the shell to be located such that its radius can be outside its own gravitational radius, or can be inside its own Cauchy radius. The extremal state allows the shell to be located such that its radius can be outside its own gravitational radius, or can be inside it. The overcharged state allows the shell to be located anywhere. There is a further division, one has to specify the orientation of the shell, i.e., whether the normal out of the shell points toward increasing or decreasing radii.…
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