Physics

Charged Wormholes with Cosmic Defects Bend Light in Unexpected Ways

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Gravitational lens…Wormhole

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This study examines the optical properties of theoretical BTZ-like charged wormholes that contain topological defects called disclinations, using both geometric and wave optics approaches. The researchers analyze how light behaves when passing through or near these exotic spacetime structures, calculating deflection angles and lensing effects. The work provides theoretical predictions for gravitational lensing signatures that could potentially distinguish these objects from black holes or standard wormholes if they exist in nature.


This research contributes to our theoretical understanding of exotic spacetime geometries and provides testable predictions for observational astronomy. If such structures exist, their unique optical signatures could be detected through gravitational lensing observations, helping astronomers identify and differentiate between various compact objects in the universe.


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Gravitational lensing Concept coming soon Wormhole Concept coming soon

Source: Geometric and wave optics analysis of BTZ-like charged wormholes with disclinations