Square‐Shaping of Sturdy Optical Vortex Droplets in Quasi‐Phase‐Matched Photonic Crystals

ABSTRACT We elaborate a scheme for controllable shaping of self‐trapped vortex states in a quasi‐phase‐matched three‐dimensional photonic crystal with the combination of self‐focusing quadratic and defocusing cubic material nonlinearities. The setting gives rise to sturdy droplet‐like vortex modes, capable to adapt to externally imposed strong geometric constraints. The application of a square‐shaped modulation in the transverse plane and periodic quasi‐phase‐matching to the quadratic nonlinear coefficient along the propagation direction leads to the formation of square vortex droplets (VDs) with fourfold rotational symmetry (). These states preserve the vortical phase circulation and exhibit robust propagation in a broad parameter region. In the oversaturated regime dominated by the cubic self‐defocusing, the square‐shaped VDs obey the anti‐Vakhitov–Kolokolov stability criterion. The results, which are produced, chiefly, for the VDs with topological charge , and also, in a partial form, for and 4, reveal an unexpected universality: the vortex robustness is not contingent upon the circular symmetry. Thus, the combination of the competing nonlinearities and geometric confinement provides not only an effective method for the formation of self‐trapped vortex states, but also new insight into the generality of the topological protection in nonlinear optical fields.

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Publication Details

Journal
Laser & Photonics Review
Published
2026-09-24
DOI
https://doi.org/10.1002/lpor.71925
Primary Topic
Nonlinear Photonic Systems
Type
article
Field-Weighted Citation Impact
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article

Square‐Shaping of Sturdy Optical Vortex Droplets in Quasi‐Phase‐Matched Photonic Crystals

Qiu-Yi Ning, Hexiang He, Boris A. Malomed, Xuening Wang et al.
Laser & Photonics Review
Nonlinear Photonic Systems
article

Square‐Shaping of Sturdy Optical Vortex Droplets in Quasi‐Phase‐Matched Photonic Crystals

Qiu-Yi Ning, Hexiang He, Boris A. Malomed, Xuening Wang, Li Zhang, Yongyao Li, Yimin Zhang, Bin Liu
article en

Abstract

ABSTRACT We elaborate a scheme for controllable shaping of self‐trapped vortex states in a quasi‐phase‐matched three‐dimensional photonic crystal with the combination of self‐focusing quadratic and defocusing cubic material nonlinearities. The setting gives rise to sturdy droplet‐like vortex modes, capable to adapt to externally imposed strong geometric constraints. The application of a square‐shaped modulation in the transverse plane and periodic quasi‐phase‐matching to the quadratic nonlinear coefficient along the propagation direction leads to the formation of square vortex droplets (VDs) with fourfold rotational symmetry (). These states preserve the vortical phase circulation and exhibit robust propagation in a broad parameter region. In the oversaturated regime dominated by the cubic self‐defocusing, the square‐shaped VDs obey the anti‐Vakhitov–Kolokolov stability criterion. The results, which are produced, chiefly, for the VDs with topological charge , and also, in a partial form, for and 4, reveal an unexpected universality: the vortex robustness is not contingent upon the circular symmetry. Thus, the combination of the competing nonlinearities and geometric confinement provides not only an effective method for the formation of self‐trapped vortex states, but also new insight into the generality of the topological protection in nonlinear optical fields.

Laser & Photonics Review
Foshan University (CN), Tel Aviv University (IL), University of Tarapacá (CL)
National Natural Science Foundation of China, Natural Science Foundation of Guangdong Province
Sustainable cities and communities
Openalex Percentile: Top 14%
Nonlinear Photonic Systems
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Square‐Shaping of Sturdy Optical Vortex Droplets in Quasi‐Phase‐Matched Photonic Crystals — Qiu-Yi Ning, Hexiang He, et al. · Laser & Photonics Review (2026) | TGRS Research Map | TGRS