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Topologically constrained high intensity light propagation in air

Optics 2026-03-11 v1 Plasma Physics

Abstract

We experimentally demonstrate how spatiotemporal optical vortices (STOVs) control long-range atmospheric filamentation of intense laser pulses. High-power pulses long enough to overlap with the delayed rotational nonlinearity of air molecules undergo periodic collapse arrest events, each of which generates toroidal STOV pairs with +/- topological charge that separate and accumulate into increasingly squeezed arrays of +1 charges at the front of the pulse and -1 charges at the back. These dynamics manifest as periodic energy deposition peaks along the propagation path and a pulse envelope modulated into a temporal intensity comb. Filamentation in this regime can be understood in terms of self-organized, topologically constrained defect dynamics embedded within nonlinear wave propagation.

Keywords

Cite

@article{arxiv.2603.09847,
  title  = {Topologically constrained high intensity light propagation in air},
  author = {A. Goffin and L. Railing and G. Babic and H. M. Milchberg},
  journal= {arXiv preprint arXiv:2603.09847},
  year   = {2026}
}
R2 v1 2026-07-01T11:13:18.216Z