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Motion of charged particles around a magnetic black hole/topological star with a compact extra dimension

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abstract

We study the motion of charged particles in a family of five-dimensional solutions describing either a black hole or topological star with a fifth compact dimension stabilised by a magnetic flux. The particle's trajectory is shown to move along the surface of a Poincar\'{e} cone. The radial motion shows a rich structure where the existence of various bound, plunging, or escaping trajectories depend on the constants of motion. Curves of energy and angular momentum corresponding to spherical orbits show a swallow-tail structure highly reminiscent to phase transitions of thermodynamics. When the momentum along the compact direction is varied, the is a critical point beyond which the swallow-tail kink disappears and becomes a smooth curve.

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gr-qc 1

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2025 1

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representative citing papers

Nonradial stability of topological stars

gr-qc · 2025-02-06 · conditional · novelty 6.0

Numerical linear perturbation analysis finds no instability in nonradial Type-II modes of topological stars with zero Kaluza-Klein momentum.

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  • Nonradial stability of topological stars gr-qc · 2025-02-06 · conditional · none · ref 35 · internal anchor

    Numerical linear perturbation analysis finds no instability in nonradial Type-II modes of topological stars with zero Kaluza-Klein momentum.