Gravitational lensing in a black-bounce traversable wormhole spacetime
arXiv:2005.13096 · doi:10.1103/PhysRevD.102.044021
Abstract
In this work, we calculate the deflection angle of light in a spacetime that interpolates between regular black holes and traversable wormholes, depending on the free parameter of the metric. Afterwards, this angular deflection is substituted into the lens equations which allows to obtain physically measurable results, such as the position of the relativistic images and the magnifications.
15 pages, version accepted to PRD
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Cited by in corpus (9)
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- Source of black bounces in general relativity
- Retrolensing by two photon spheres of a black-bounce spacetime
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- Gravitational lensing in holonomy corrected spherically symmetric black holes with phantom global monopoles
- Bardeen-Kiselev black hole with cosmological constant