arXiv · 2508.14450
Geometry-Driven Lattice of Photonic Spin-Meron Tubes in Free Space
Abstract
We theoretically demonstrate the first photonic spin-meron tube lattice in free space using spin-angular momentum vectors. Square-block diffraction creates $C_{4}$-symmetric beams with $\pi/2$ phase steps. Non-paraxial spin-orbit coupling then forms finite-length meron tubes ($N_{\mathrm{sk}} \approx \pm 1/2$, $> 25,\lambda$). Extending the formalism, we show that $C_{3}$ geometry of a triangular block yields a spin-skyrmion tube. Stratton-Chu theory and full-vectorial finite-difference time-domain calculations both support this material-agnostic, geometry-driven approach as a platform to explore symmetry-driven free-space topology.
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Anand Hegde, Komal Gupta, Yanan Dai, Chen-Bin Huang. 2025-08-20. Geometry-Driven Lattice of Photonic Spin-Meron Tubes in Free Space. https://arxiv.org/abs/2508.14450
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