Gravitational Waves from a Black Hole Falling Radially into a Thin-Shell Traversable Wormhole
Abstract
We compute the gravitational-wave signal generated by the radial infall of a stellar-mass black hole into a thin-shell Schwarzschild traversable wormhole. Modeling the black hole as a test particle, we derive analytic expressions for the emitted waveform, including contributions from the mass quadrupole and higher-order multipoles. The resulting signal exhibits a characteristic pulse-gap structure associated with repeated throat crossings. We further compute the amplitude spectral density and compare it with representative ground-based detector sensitivities, finding that such signals could lie within the sensitivity range for optimally oriented sources at distances of order ~500 Mpc. These results provide a potential observational signature of traversable wormholes in gravitational-wave data.
Cite
@article{arxiv.2605.01216,
title = {Gravitational Waves from a Black Hole Falling Radially into a Thin-Shell Traversable Wormhole},
author = {Mohammad Nosherwan Malik and James B. Dent and William E. Gabella and Thomas W. Kephart},
journal= {arXiv preprint arXiv:2605.01216},
year = {2026}
}
Comments
12 pages, 5 figures