Fermion behavior around Sung-Won-Kim wormholes in a generalized Kaluza-Klein gravity
arXiv:2409.01300 · doi:10.1209/0295-5075/ad802c
Abstract
This paper investigates the behavior of fermions in the vicinity of Sung-Won-Kim wormholes \cite{SW Kim PRD 1996} within the framework of a generalized Kaluza-Klein gravity. The study explores the geometric and quantum implications of introducing an extra dimension into the Sung-Won-Kim wormhole model. The impact of this additional dimension on the stability and traversability of the wormholes, as well as on the fermionic equations of motion, is analyzed. By examining the modified Dirac equation in this extended framework, the emergence of geometric phases and quantum holonomies is discussed, providing insights into the topological aspects of fermion dynamics in curved spacetimes.
References in corpus (5)
- Wormhole geometries in f(R) modified theories of gravity
- Traversable wormholes in Einstein-Dirac-Maxwell theory
- The Status of Modern Five-Dimensional Gravity
- Reissner-Nordström black holes surrounded by perfect fluid dark matter: testing the viability of weak gravity conjecture and weak cosmic censorship conjecture simultaneously
- Promise of Future Searches for Cosmic Topology