arXiv · 2605.15600
The role of Wigner rotation in estimating the specific angular momentum of a Kerr spacetime
Abstract
We study the rotation of the polarization due to the gravitational field in the Kerr spacetime and the possibility of estimating the specific angular momentum that parameterizes this metric. Our approach is based on a geodesic interferometer, that is, a Mach-Zehnder interferometer whose arms are defined by null geodesics, and a single photon propagating within it. We show that the detection probability at the output ports of the interferometer is a function of two phase differences, one arising from the gravitational time delay and the other from the polarization rotation, both computed under the slow rotation and weak field approximations. Thereby, the interferometric visibility is a signature of two relativistic effects. Using the detection probability, we obtain an estimate for the specific angular momentum and characterize its uncertainty.
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F. J. Lobo, M. Rivera-Tapia, G. Rubilar, A. Delgado. 2026-05-15. The role of Wigner rotation in estimating the specific angular momentum of a Kerr spacetime. https://arxiv.org/abs/2605.15600
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