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Gravitational orbital Hall effect of vortex light in Lense-Thirring metric

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arxiv 2407.06553 v3 pith:22XY5HC6 submitted 2024-07-09 gr-qc

classification gr-qc
keywords lightorbitalgravitationalvortexangularintrinsicmomentumgeodesic
verification ladder T0 review T1 audit T2 compute T3 formal
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Vortex light, characterized by an intrinsic orbital angular momentum aligned with its propagation direction, is described through vortex electromagnetic waves. Similar to the gravitational spin Hall effect (SHE), vortex light is expected to exhibit intrinsic orbital angular momentum dependent trajectories and deviations from the null geodesic plane when propagating through a gravitational field, a phenomenon termed the gravitational orbital Hall effect (OHE). In this work, we model the vortex light as vortex Laguerre-Gaussian electromagnetic wave packets and analyze its motion by solving covariant Maxwell equations within the Lense-Thirring metric. Our findings reveal that the trajectory of vortex light with an intrinsic orbital angular momentum deviates from the null geodesic in two ways. It deviates both perpendicular to, and within, the null geodesic plane. This behavior contrasts with the gravitational SHE, where spin-polarized light primarily deviates perpendicular to the null geodesic plane. Moreover, the relationship between the deviation and intrinsic orbital angular momentum differs significantly from that between the deviation and spin. These results suggest a unique interaction between intrinsic orbital angular momentum and gravity, distinct from the spin-gravity coupling, indicating that the gravitational OHE of light might not be precisely predicted by merely substituting spin with intrinsic orbital angular momentum in the gravitational SHE of light.

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Cited by 1 Pith paper

Reviewed papers in the Pith corpus that reference this work. Sorted by Pith novelty score. Full citation record

  1. Flyby Anomaly in the Variation Principle of General Relativity

    gr-qc 2024-11 reject novelty 3.0 of 10

    The claimed GR derivation of the flyby anomaly is invalid: the diagonalized metric is not the Lense-Thirring metric and the final formula is tuned to match the empirical law.

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