Index-symmetry breaking of polarization vortices in 2D random vector waves

Journal Article (2019)
Author(s)

Lorenzo De Angelis (Kavli institute of nanoscience Delft, Koninklijke Nederlandse Akademie van Wetenschap (KNAW), TU Delft - QN/Kuipers Lab)

Thomas Bauer (TU Delft - QN/Kuipers Lab, Kavli institute of nanoscience Delft)

F. Alpeggiani (Kavli institute of nanoscience Delft, TU Delft - QN/Kuipers Lab)

L. Kuipers (Kavli institute of nanoscience Delft, TU Delft - QN/Quantum Nanoscience)

Research Group
QN/Kuipers Lab
Copyright
© 2019 L. de Angelis, T.A. Bauer, F. Alpeggiani, L. Kuipers
DOI related publication
https://doi.org/10.1364/OPTICA.6.001237
More Info
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Publication Year
2019
Language
English
Copyright
© 2019 L. de Angelis, T.A. Bauer, F. Alpeggiani, L. Kuipers
Research Group
QN/Kuipers Lab
Issue number
9
Volume number
6
Pages (from-to)
1237-1243
Reuse Rights

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Abstract

When the positions of two generic singularities of equally signed topological index coincide, a higher-order singularity with twice the index is created. In general, singularities tend to repel each other when sharing the same topological index, preventing the creation of such higher-order singularities in 3D generic electromagnetic fields. Here, we demonstrate that in 2D random vector waves higher-order polarization singularities—known as polarization vortices—can occur, and we present their spatial correlation. These polarization vortices arise from the overlap of two points of circular polarization (C points) with the same topological index. We observe that polarization vortices of positive index occur more frequently than their negative counterparts, which results in an index-symmetry breaking unprecedented in singular optics. To corroborate our findings, we analyze the spatial correlation of C points in relation to their line classification and link the symmetry breaking to the allowed dipolar and quadrupolar moments of the field at a polarization vortex.

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