Gravitational memory effects of black bounces and a traversable wormhole
arXiv:2402.09435 · doi:10.1140/epjc/s10052-024-12718-5
Abstract
Black bounces are spacetimes that can be interpreted as either black holes or wormholes depending on specific parameters. In this study, we examine the Simpson-Visser and Bardeen-type solutions as black bounces and investigate the gravitational wave in the background of these solutions. We then explore the displacement and velocity memory effects by analyzing the deviation of two neighboring geodesics and their derivatives influenced by the magnetic charge parameter a. This investigation aims to trace the magnetic charge in the gravitational memory effect. Additionally, we consider another family of traversable wormhole solutions obtained from non-exotic matter sources to trace the electric charge Q_e in the gravitational memory effect, which can be determined from the far field asymptotic. Furthermore, this research aims to explore the gravitational memory effect related to the variation in Bondi mass for the Simpson-Visser and Bardeen-Type black bounces. The investigation will also be conducted on a traversable wormhole solution that does not require any exotic field. This study holds importance in not only identifying compact objects such as wormholes through gravitational memory effects but also in observing the charge Qe, which offers a tangible manifestation of Wheeler's idea of "electric charge without charge."
References in corpus (22)
- Traversable wormholes: Some simple examples
- Rotating Regular Black Hole Solution
- Traversable wormholes in Einstein-Dirac-Maxwell theory
- Traversable Wormholes in General Relativity
- Charged black-bounce spacetimes
- Gravitational lensing in the Simpson-Visser black-bounce spacetime in a strong deflection limit
- Wormholes without exotic matter: quasinormal modes, echoes and shadows
- Gravitational lensing in a black-bounce traversable wormhole spacetime
- Analytical study of gravitational lensing in Kerr-Newman black-bounce spacetime
- Thin accretion disk in the Simpson-Visser black-bounce and wormhole spacetimes
- Retrolensing by two photon spheres of a black-bounce spacetime
- Multipole Expansion of Gravitational Waves: from Harmonic to Bondi coordinates
- Regular multihorizon black holes in gravity with nonlinear electrodynamics
- Black-Bounce in Gravity
- Multipole expansion of gravitational waves: memory effects and Bondi aspects
- Regular multihorizon black holes in General Relativity
- Kundt geometries and memory effects in the Brans-Dicke theory of gravity
- Memory effects in Kundt wave spacetimes
- Scalar scattering by black holes and wormholes
- Gravitational memory effects and higher derivative actions
- Scalar radiation from a source rotating around a regular black hole
- Source of black bounces in Rastall gravity