Photon Acceleration Using a Time-Varying Epsilon-near-Zero Metasurface

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Abstract

A light beam's frequency can blueshift when the beam travels through a medium that exhibits a time-dependent decrease in the refractive index. Here we show that a metasurface made of a plasmonic antenna array on a thin indium tin oxide (ITO), which exhibits epsilon-near-zero (ENZ) response, can behave as a time-varying medium and change the frequency of a sufficiently strong light beam through self-action effect. Specifically, we observe that a near-resonant optical excitation of the 92 nm thick metasurface leads to an intensity-dependent blueshift of the excitation pulse. We measured a maximum blueshift of ∼1.6 THz with ∼4 GW/cm2 incident intensity. The observed effect using an ITO-based ENZ metasurface has an energy requirement that is up to 200× lower than implementations using ITO alone.

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Liu, C., Alam, M. Z., Pang, K., Manukyan, K., Reshef, O., Zhou, Y., … Willner, A. E. (2021). Photon Acceleration Using a Time-Varying Epsilon-near-Zero Metasurface. ACS Photonics, 8(3), 716–720. https://doi.org/10.1021/acsphotonics.0c01929

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