Accessing the Optical Magnetic Near-Field through Babinet’s Principle

Honghua Yang, Robert L. Olmon, Kseniya S. Deryckx, Xiaoji G. Xu, Hans A. Bechtel, Yuancheng Xu, Brian A. Lail, Markus B. Raschke

ACS Photonics · 2014 · 44 citations · 50 references

Abstract

Engineering the optical magnetic field with optical antennas or metamaterials extends the ways to control light-matter interaction. The slot antenna, as the electromagnetic dual of the linear rod antenna, provides the simplest form of a magnetic resonator tunable through its length. Using combined far- and near-field spectroscopy and imaging, and theory, we identify magnetic dipole and higher order bright and dark magnetic resonances at mid-infrared frequencies. From resonant length scaling and spatial near-field distribution, we confirm the applicability of Babinetʼs principle over the mid-infrared spectral region. Babinet's principle thus provides access to spatial and spectral magnetic field properties, leading to the targeted design of magnetic optical antennas.

References

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