arXiv · 2604.21543
Unified Hydrodynamic Analogue of Aharonov-Bohm and Lense-Thirring Effects
Abstract
We show that surface waves in a draining-bathtub vortex provide a hydrodynamic realization of both Aharonov-Bohm phase shifts and Lense-Thirring frame dragging within a single system. A static time transformation maps the flat (2+1)-dimensional wave equation onto the convected shallow-water equation, yielding an effective vector potential set by the background flow. In this geometry, the circulation defines a global phase holonomy that controls wave structure. Traveling waves exhibit wavefront dislocations characteristic of Aharonov-Bohm scattering, while standing-wave superpositions produce nodal patterns that rotate at an angular velocity fixed by the circulation, providing a direct analogue of frame dragging. For noninteger circulation, the problem is naturally defined on the universal cover, ensuring single-valued partial-wave solutions. Experiments on a controlled vortex confirm these predictions and establish a laboratory platform in which topological phase and inertial effects, central to gauge and gravitational physics, emerge from a measurable velocity field.
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Aditya Singh, Joseph Samuel, Chien-chia Liu, Luiza Angheluta, Andrés Concha, Mahesh Bandi. 2026-04-23. Unified Hydrodynamic Analogue of Aharonov-Bohm and Lense-Thirring Effects. https://arxiv.org/abs/2604.21543
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