Flexible but Refractory Single-Crystalline Hyperbolic Metamaterials
Abstract
The fabrication of flexible single-crystalline plasmonic or photonic components in a scalable way is fundamentally important to flexible electronic and photonic devices with high speed, high energy efficiency, and high reliability. However, it remains to be a big challenge so far. Here, we have successfully synthesized flexible single-crystalline optical hyperbolic metamaterials by directly depositing refractory nitride superlattices on flexible fluoro phlogopite-mica substrates with magnetron sputtering. Interestingly, these flexible hyperbolic metamaterials show dual-band hyperbolic dispersion of dielectric constants with low dielectric losses and high figure-of-merit in the visible to near-infrared ranges. More importantly, the optical properties of these nitride-based flexible hyperbolic metamaterials show remarkable stability under either heating or bending. Therefore, the strategy developed in this work offers an easy and scalable route to fabricate flexible, high-performance, and refractory plasmonic or photonic components, which can significantly expand the applications of current electronic and photonic devices.
Cite
@article{arxiv.2304.13387,
title = {Flexible but Refractory Single-Crystalline Hyperbolic Metamaterials},
author = {Ruyi Zhang and Ting Lin and Shaoqin Peng and Jiachang Bi and Shunda Zhang and Guanhua Su and Jie Sun and Junhua Gao and Hongtao Cao and Qinghua Zhang and Lin Gu and Yanwei Cao},
journal= {arXiv preprint arXiv:2304.13387},
year = {2023}
}
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15 pages