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Hyperbolic Meta-Antennas Enable Full Control of Scattering and Absorption of Light.

Nano Letters 2019 Februrary 19
We introduce a novel concept of hybrid metal-dielectric meta-antenna supporting type II hyperbolic dispersion, which enables a full control of absorption and scattering of light in the visible/near-infrared spectral range. This ability lies on the different nature of the hyperbolic Bloch-like modes excited within the meta-antenna. The experimental evidence is corroborated by a comprehensive theoretical study. In particular, we demonstrate that two main modes, one radiative and one non-radiative, can be excited by direct coupling with the free-space radiation. We show that the scattering is the dominating electromagnetic decay channel, when an electric dipolar mode is induced in the system, whereas a strong absorption process occurs when a magnetic dipole is excited. Also, by varying the geometry of the system, the relative ratio of scattering and absorption as well their relative enhancement and/or quenching can be tuned at will over a broad spectral range, thus enabling a full control of the two channels. Importantly, both radiative and non-radiative modes supported by our architecture can be excited directly by the far-field radiation. This was observed to occur even when the radiative channels (scattering) are almost totally suppressed, thereby making the proposed architecture suitable for practical applications. Finally, the hyperbolic meta-antennas possess both angular and polarization independent structural integrity, unlocking promising applications as hybrid meta-surfaces or as solvable nanostructures.

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