Plasmonic-cavity Modulator for the Mid-IR with a Semi-transparent and Nonlinear Heavily-doped Semiconductor Mirror
Abstract
We present a free-space plasmonic modulator based on a single heavily-doped semiconductor layer. We investigate its ability to modulate both the linear and nonlinear response at mid-infrared frequencies slightly below the plasma frequency of the semiconductor. We demonstrate electric control of the linear transmittance and reflectance, and of the efficiency of third-harmonic generation with a field-effect gate structure. We discuss further performance optimization of the device in terms of modulation speed and depth towards a fast modulator with very simple active material requirements. Our results establish a viable route toward practical plasmonic modulators and mixers operating in the mid-infrared atmospheric window available for free-space communications at wavelengths between 8 and 12 um.
Keywords
Cite
@article{arxiv.2606.31438,
title = {Plasmonic-cavity Modulator for the Mid-IR with a Semi-transparent and Nonlinear Heavily-doped Semiconductor Mirror},
author = {Tommaso Venanzi and Raffaella Polito and Andrea Rossetti and Markus Ludwig and Daniele Brida and Adel Bousseksou and Isabelle Sagnes and Gregoire Beaudoin and Raffaele Colombelli and Antonio Valletta and Andrea Notargiacomo and Francesco Mattioli and Gonzalo Alvarez-Pérez and Cristian Ciracì and Valeria Giliberti and Marialilia Pea and Michele Ortolani and Huatian Hu},
journal= {arXiv preprint arXiv:2606.31438},
year = {2026}
}
Comments
9 pages, 5 figures