Chromaticity effects in microlensing by wormholes
classification
🌀 gr-qc
astro-ph
keywords
effectsmicrolensingchromaticityeventswormholesallowanalysisdiscriminate
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Chromaticity effects introduced by the finite source size in microlensing events by presumed natural wormholes are studied. It is shown that these effects provide a specific signature that allow to discriminate between ordinary and negative mass lenses through the spectral analysis of the microlensing events. Both galactic and extragalactic situations are discussed.
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Cited by 1 Pith paper
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Observational signatures of negative mass wormholes through their shadows
Numerical simulations of negative mass wormholes reveal distinct photon ring substructures in their shadows compared to Schwarzschild black holes and Simpson-Visser wormholes.
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