Affiliation:
1. Peking University
2. Physics Department and Solid-State Institute
3. Taiyuan University of Technology
4. Tel Aviv University
5. Universidad de Tarapacá
6. Foshan University
Abstract
What we believe is a new scheme for producing semidiscrete self-trapped vortices (“swirling photon droplets”) in photonic crystals with competing quadratic (χ(2)) and self-defocusing cubic (χ(3)) nonlinearities is proposed. The photonic crystal is designed with a striped structure, in the form of spatially periodic modulation of theχ(2)susceptibility, which is imposed by the quasi-phase-matching technique. Unlike previous realizations of semidiscrete optical modes in composite media, built as combinations of continuous and arrayed discrete waveguides, the semidiscrete vortex “droplets” are produced here in the fully continuous medium. This work reveals that the system supports two types of semidiscrete vortex droplets,viz., onsite- and intersite-centered ones, which feature, respectively, odd and even numbers of stripes,N. Stability areas for the states with different values ofNare identified in the system’s parameter space. Some stability areas overlap with each other, giving rise to the multistability of states with differentN. The coexisting states are mutually degenerate, featuring equal values of the Hamiltonian and propagation constant. An experimental scheme to realize the droplets is outlined, suggesting new possibilities for the long-distance transmission of nontrivial vortex beams in nonlinear media.
Funder
National Natural Science Foundation of China
Israel Science Foundation
Ciuangdong-Hong Kong-Macao Joint l.aboratory for lntelligent Micro-Nano Optoelectroniclechnology
Subject
Atomic and Molecular Physics, and Optics
Cited by
11 articles.
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