Matter traveling through a wormhole
arXiv:2210.04905 · doi:10.1103/PhysRevD.106.104054
Abstract
We revisit the numerical evolution of Ellis-Bronnikov-Morris-Thorne wormholes, which are constructed with a massless real ghost scalar field. For our simulations, we have developed a new code based on the standard 3+1 foliation of spacetime. We confirm that, for the massless symmetric wormhole, a pulse of regular scalar field causes the wormhole throat to collapse and form an apparent horizon, while a pulse of ghost scalar field can cause the wormhole throat to expand. As a new result, we show that it is possible for a pulse of regular matter to travel through the wormhole and then to send a light signal back before the wormhole collapses. We also evolve pulses of matter traveling through massive asymmetric wormholes, which has not previously been simulated.
11 pages, 9 figures; v2: references added
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Cited by in corpus (5)
- Probing the connection between entangled particles and wormholes in general relativity
- Are Einstein-Dirac-Maxwell wormholes traversable?
- Einstein-Dirac-Maxwell wormholes in quantum field theory
- Dynamical evolution and stability of quantum corrected Schwarzschild black holes in semiclassical gravity
- Dynamical wormholes