Spin-Orbit Coupling in Helical Waveguides: A Local Duality Perspective and Emergent Gauge Fields
Spin-Orbit Coupling in Helical Waveguides: A Local Duality Perspective and Emergent Gauge Fields
Dual symmetry is an intrinsic property of Maxwell's equations, corresponding to a global U(1) symmetry in vacuum, with helicity as the associated conserved quantity. In this paper, we investigate light propagation in a spin-degenerate medium using a field-theoretical approach and introduce an effective gauge field A_s that emerges from the localization of dual symmetry. Within the geometric optics approximation, we show that the helical trajectory of light rays reveals this gauge field as a manifestation of spin-orbit coupling. Although orbital-orbit coupling also arises in such systems, the spin-orbit interaction possesses deeper physical significance, as it originates from the intrinsic dual symmetry embedded in Maxwell's equations.
Lili Yang、Longlong Feng、Pengming Zhang
物理学
Lili Yang,Longlong Feng,Pengming Zhang.Spin-Orbit Coupling in Helical Waveguides: A Local Duality Perspective and Emergent Gauge Fields[EB/OL].(2025-04-28)[2025-07-25].https://arxiv.org/abs/2504.19501.点此复制
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