4.8 Article

Bound vortex light in an emulated topological defect in photonic lattices

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LIGHT-SCIENCE & APPLICATIONS
卷 11, 期 1, 页码 -

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SPRINGERNATURE
DOI: 10.1038/s41377-022-00931-4

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  1. National Key R&D Program of China [2017YFA0303700, 2017YFA0303702, 2017YFA0205700]
  2. National Natural Science Foundation of China [12174187, 11690033, 92163216, 92150302, 61425018, 11621091]
  3. Fundamental Research Fund for the Central Universities, China [14380139, 14380191]

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Topology has been widely used in various branches of physics, and topological defects in cosmology can be simulated to achieve bound vortex light on optical chips.
Topology have prevailed in a variety of branches of physics. And topological defects in cosmology are speculated akin to dislocation or disclination in solids or liquid crystals. With the development of classical and quantum simulation, such speculative topological defects are well-emulated in a variety of condensed matter systems. Especially, the underlying theoretical foundations can be extensively applied to realize novel optical applications. Here, with the aid of transformation optics, we experimentally demonstrated bound vortex light on optical chips by simulating gauge fields of topological linear defects in cosmology through position-dependent coupling coefficients in a deformed photonic graphene. Furthermore, these types of photonic lattices inspired by topological linear defects can simultaneously generate and transport optical vortices, and even can control the orbital angular momentum of photons on integrated optical chips.

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