Electro-optically Modulated Nonlinear Metasurfaces.

Nano Lett

The Key Laboratory of Weak-Light Nonlinear Photonics, Ministry of Education, School of Physics and TEDA Applied Physics Institute, Nankai University, Tianjin 300071, People's Republic of China.

Published: November 2024

AI Article Synopsis

  • Electrically reconfigurable nonlinear metasurfaces allow for dynamic control of second-harmonic generation (SHG), leading to innovative uses in signal processing, light switching, and sensing.
  • Traditional methods have limitations due to weak SHG responses in metals and constraints in quantum well systems.
  • A new approach using lithium niobate (LN) combines the electro-optic effect with SHG, achieving an 11.3% modulation depth, which enhances the potential for tunable nonlinear light sources and advanced photonic applications.

Article Abstract

Electrically reconfigurable nonlinear metasurfaces provide dynamic control over nonlinear phenomena such as second-harmonic generation (SHG), unlocking novel applications in signal processing, light switching, and sensing. Previous methods, like electric-field-induced SHG in plasmonic metasurfaces and Stark-tuned nonlinearities in quantum well metasurfaces, face limitations due to weak SHG responses from metals and mid-infrared constraints of quantum wells, respectively. Addressing the need for efficient SHG control in the visible and near-infrared ranges, we present a novel approach using the electro-optic (EO) effect to modulate SHG. By leveraging the exceptional EO and SHG properties of lithium niobate (LN), we integrate the EO effect with SHG within a metasurface framework for the first time. Our LN metasurface achieves an 11.3% modulation depth in SHG amplitude under a ±50 V alternating voltage. These results open new avenues for reconfigurable photonic applications. including tunable nonlinear light sources, quantum optics, and nonlinear information processing.

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Source
http://dx.doi.org/10.1021/acs.nanolett.4c03369DOI Listing

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