Abstract
In this work, we employ scanning near-field optical microscopy, full-vector finite difference time domain numerical simulations and fractional Fourier transformation to investigate the near-field and propagation behavior of the electromagnetic energy scattered at 1.56 μm by dielectric arrays of silicon nitride nanopillars with chiral α1-Vogel spiral geometry. In particular, we experimentally study the spatial evolution of scattered radiation and demonstrate near-field coupling between adjacent nanopillars along the parastichies arms. Moreover, by measuring the spatial distribution of the scattered radiation at different heights from the array plane, we demonstrate a characteristic rotation of the scattered field pattern consistent with net transfer of orbital angular momentum in the Fresnel zone, within a few micrometers from the plane of the array. Our experimental results agree with the simulations we performed and may be of interest to nanophotonics applications. © IOP Publishing and Deutsche Physikalische Gesellschaft.
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CITATION STYLE
Intonti, F., Caselli, N., Lawrence, N., Trevino, J., Wiersma, D. S., & Dal Negro, L. (2013). Near-field distribution and propagation of scattering resonances in Vogel spiral arrays of dielectric nanopillars. New Journal of Physics, 15. https://doi.org/10.1088/1367-2630/15/8/085023
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