Wormhole Solutions in deformed space-time
arXiv:2412.07409 · doi:10.1140/epjc/s10052-025-13820-y
Abstract
We construct and analyse wormhole solutions in quantised space-time. The field equations are constructed from the deformed wormhole metric in the proper reference frame using tetrads. The spatial geometry of the wormhole is analysed in the kappa space-time. Further, the modifications to the conditions that ensure traversibility of the wormhole are studied and it is found that the necessity of the exotic matter persists in the non-commuative case as in the commutative space-time. Casimir energy is considered a possible source for exotic matter and it is shown that the time to pass through the wormhole as well as the amount of exotic matter required to create the wormhole reduce due to non-commutativity of space-time.
21 pages, typos corrected, references added
References in corpus (20)
- Noncommutative Field Theory
- Traversable wormholes: Some simple examples
- Gravity's Rainbow
- Wormhole geometries in f(R) modified theories of gravity
- 3d Quantum Gravity and Effective Non-Commutative Quantum Field Theory
- Introduction to Doubly Special Relativity
- Wormhole Geometries In Gravity
- Casimir Wormholes
- New realizations of Lie algebra kappa-deformed Euclidean space
- Reconstructing wormhole solutions in curvature based Extended Theories of Gravity
- Testing wormhole solutions in extended gravity through the Poynting-Robertson effect
- Casimir Wormholes in Modified Symmetric Teleparallel Gravity
- Spin, torsion and violation of null energy condition in traversable wormholes
- Wormhole solutions in Gravity
- Static and spherically symmetric wormholes in metric-affine theories of gravity
- Geodesic equation in -Minkowski spacetime
- On possible wormhole solutions supported by non-commutative geometry within gravity
- Casimir Effect in a Schwarzschild-Like Wormhole Spacetime
- Hawking radiation in the kappa-spacetime
- Neutron Star in Quantized-space-time