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Null orbits and shadows in the Ernst-Wild geometry: insights for black holes immersed in a magnetic field

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abstract

We investigate the null geodesics, in particular the stable and unstable light rings and shadows, of a Kerr-Newman black hole immersed in an asymptotically uniform magnetic field as described by the Ernst-Wild (Melvin-Kerr-Newman) spacetime. Through numerical ray tracing, we demonstrate that both the black hole rotation and the magnetized Melvin geometry impact the light rings and shadows non-trivially and in compensating ways. In addition, we use a perturbative expansion in the magnetic field B to analyze the deviation of the observable shadow relative to the Kerr result analytically, and determine connections between Lyapunov exponents for light ring instabilities and quasinormal modes in the eikonal limit.

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2025 1

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representative citing papers

Optical Characteristics of the Kerr-Bertotti-Robinson Black Hole

gr-qc · 2025-08-05 · conditional · novelty 6.0

For the Kerr-Bertotti-Robinson black hole, the magnetic field mainly enlarges the shadow and Einstein ring while rotation mainly distorts the shadow shape, and current M87* and Sgr A* data give only weak bounds on the field.

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Showing 1 of 1 citing paper.

  • Optical Characteristics of the Kerr-Bertotti-Robinson Black Hole gr-qc · 2025-08-05 · conditional · none · ref 37 · internal anchor

    For the Kerr-Bertotti-Robinson black hole, the magnetic field mainly enlarges the shadow and Einstein ring while rotation mainly distorts the shadow shape, and current M87* and Sgr A* data give only weak bounds on the field.