Topological Polarization Singularities in Metaphotonics
Wenzhe Liu, Wei Liu, Lei Shi, Yuri Kivshar

TL;DR
This paper reviews recent advances in the generation and observation of polarization singularities in metaphotonics, highlighting their topological properties and potential for manipulating light-matter interactions at the nanoscale.
Contribution
It provides a comprehensive overview of polarization singularities in metaphotonics, including their theoretical foundations, experimental observations, and connections to phase singularities and topological phenomena.
Findings
Polarization singularities are observed in Mie theory and photonic crystal structures.
Bound states in the continuum can generate optical vortices with various charges.
Polarization singularities offer new avenues for light-matter manipulation at the nanoscale.
Abstract
Polarization singularities of vectorial electromagnetic fields locate at the positions (such as points, lines, or surfaces) where properties of polarization ellipses are not defined. They are manifested as circular and linear polarization, for which respectively the semi-major axes and normal vectors of polarization ellipses become indefinite. First observed in conical diffraction in the 1830s, the field of polarization singularities has been systematically reshaped and deepened by many pioneers of wave optics. Together with other exotic phenomena such as non-Hermiticity and topology, polarization singularities have been introduced into the vibrant field of nanophotonics, rendering unprecedented flexibilities for manipulations of light-matter interactions at the nanoscale. Here we review the recent results on the generation and observation of polarization singularities in metaphotonics.…
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